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SARS-CoV-2 contains four main structural proteins: spike (S), membrane (M), envelope (E), and nucleocapsid (N) proteins. All the proteins and subcellular structures of CoVs are promising targets for SARS-CoV-2 research.
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The concept of ADC can be traced back to the early 1900s, It is a visionary magic bullet that could deliver a toxic drug to certain malignant cells without affecting other normal tissues. Now, it seems that a golden age of ADC drug development is coming.
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It's has been proved that p53, as a tumor suppressor gene and immune guardian, may become a destroyer through its own mutation. Moreover, the mechanism of p53 was found to be related to ferroptosis. This article mainly explores the mechanism between p53 and ferroptosis in detail.
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TME (Tumor microenvironment) is considered as a complex integrated system, composed of cellular components such as tumor cells and immune cells, as well as non-cellular components such as ECM and cytokines. According to the spatial distribution of immune cells in TME, "hot" and "cold" TME will be explained in this article.
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Mammalian cells can also photosynthesize like plants! Photosynthesis can improve cell anabolism and exhibit good clinical effect in degenerative diseases (osteoarthritis).
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Necroptosis, also known as necroptosis, is a form of regulated necrotizing cell death mediated by RIP1 and RIP3 kinases. Necroptosis is a process that prevents the self-destruction of activated cells that are blocked by apoptosis. Necroptosis plays a tumor suppressor role in most cases. It may provide benefits in the researches of a variety of human diseases involving immune inflammation and cell death.
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Structure of Lipid Droplets
2023-06-15
Huh? Lipid droplets? Organelles? In the past, biological data usually only show the traditional organelles, such as mitochondria, Golgi apparatus, endoplasmic reticulum, etc., lipid droplets are often not mentioned by people. Today, we will make a systematic explanation of lipid droplets, so that everyone has a clear understanding! -
HLA-E, A Novel Immune Checkpoint
2023-06-29
Immune checkpoints have immunosuppressive functions. It can be used in the research of tumor immunotherapy. In this article, we introduce a new paper entitled "Immune checkpoint HLA-E: CD94 - NKG2Amediates evasion of circulating tumor cells from NK cell surveillance "research paper. -
WHO's Q2 drug list has been updated. Let's take you through the list of the most noteworthy small molecule drugs that we should pay attention to.
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FDA Approved Drug List!
2023-09-14
In the first half of 2023 (as of June 27), the FDA approved 26 new drugs, let's take you learn about it through the article. -
IHC is an indispensable technique for studying tissue morphology and in situ antigen expression, but usually only one or two antigens in tissues can be stained for analysis. It cannot judge the results more intuitively. Today, Little M will introduce you to the upgraded version mlHC.
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A suitable model is crucial in drug screening experiments. Organs can mimic the three-dimensional functional structure of internal organs, have similar spatial organization to corresponding organs, maintain some key characteristics, and reproduce some physiological functions. They are widely used for modeling and personalized drug screening of diseases such as cancer, infectious diseases, and rare diseases.
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FDA Annual Review | Record-breaking number of new drug approvals in 2023!
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KRAS, a gene we've heard so much about, has quickly risen to fame after shedding its "undruggable" label. After reading numerous articles, it's easy to feel overwhelmed and wonder: What exactly should we know about this often-discussed but previously "undruggable" target KRAS?
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Compound Screening Guide!
2024-03-15
How to use compound library? How to design an experiment if you buy a compound library? Want a specific experimental protocol? This article will introduce popular experimental techniques and provide new ideas for publishing high level literature. -
Wnt/β-catenin and tumor EMT
2024-03-18
Epithelial-Mesenchymal Transition (EMT) is closely related to the plasticity of tumor cells and is a necessary process for tumor metastasis. Wnt/β-catenin is one of the main actors involved in the EMT process. Today, we’re here to popularize the tumor EMT and Wnt/β-catenin pathway~ -
The 2024 AACR meeting concluded successfully in California, USA. Which antitumor drugs stole the show at this conference?
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Katalin Karikó and Drew Weissman were awarded the Nobel Prize in Physiology or Medicine in 2023 for their groundbreaking work in nucleoside modification, which paved the way for the creation of successful mRNA vaccines to fight against COVID-19. Let's now delve into the complete process of mRNA vaccine development.
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STZ Induced Diabetes Models
2024-06-13
Spotlight: How can STZ Help Diabetes Research? -
Exosomes, which won the Nobel Prize in 2013, are still a research hotspot in the national natural sciences, and their popularity has only increased over the past decade (in 2022, they still rank 5th in the national natural sciences hotspots!). Why have exosomes become the darling of scientific research? Let's take a look together~
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How important is the compound library? It connects to drug screening on one end and leads to lead compound modifications on the other, serving as one of the sources of new drug development.
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Antibodies!
2024-07-26
Today, We introduce antibodies for everyone! -
Science’s 2023 Breakthrough: GLP-1R Agonists
2024-08-13
GLP-1RAs, which achieved great success in 2023 and draws people’s attention back to obesity treatments and GLP-1 therapies worldwide, was chosen as the breakthrough of year 2023 by Science [2]. -
What Are Popular Anti-tumor Drug Targets?
2024-08-20
The rapid development of targeted anti-cancer drugs has spurred diverse research across various modalities. These include small molecules, monoclonal antibodies (mAbs), cell immunotherapies, antibody-drug conjugates (ADCs), and PROTACs (proteolysis targeting chimeras). -
Virtual Screening and New Uses for Old Drugs
2024-09-17
With the advancement of medical science, drug screening against various disease targets has become the fundamental strategy for drug development. Currently, computer-based virtual screening techniques are emerging in the field of new drug research due to their efficiency and low cost. Let's explore it today! -
2024 Nobel Prize Announcements! Curious about the details? Click to dive into the exciting developments!
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Unlocking the Power of Intermittent Fasting: The 16+8 Method
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We are thrilled to share the latest advancements in AI technology as highlighted in this insightful article. From groundbreaking innovations to transformative applications, the future of AI is brighter than ever!
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This article will tell you about the common methods of modeling liver disease in animal models.
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This article will walk you through the remarkable impacts of anti-payload antibodies, delving into how these molecules are revolutionizing drug development and biological research!
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This article introduces some common cardiovascular disease models, inducers, modeling protocols and successful modeling cases in the research.
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Cell Migration vs. Invasion: Differences Revealed by Scratch Assays and Transwell Experiments
2025-05-30
In scientific research, cell migration and invasion are crucial for understanding many important biological processes. This article delves into commonly used detection methods: the scratch assay and Transwell migration/invasion assay. -
How should drug screening experiments be conducted? How can we ensure the accuracy of the lead compounds identified? This article will take you through how MCE's clients conduct drug screening experiments.
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In this issue, we will conduct an in-depth interpretation from the dimensions of nanoparticle design, mechanism of action, in vivo and in vitro efficacy, and immune regulation, revealing how this research brings new hope for the treatment of invasive tumors through interdisciplinary innovation!
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IHC, ICC, IF Techniques: A Practical Guide
2025-07-25
Confused About IHC/ICC/IF? Why Does Immunostaining Seem So Complicated? Read This Now! Master Immunostaining with Confidence! -
HTS Breakthroughs Powered by MCE Libraries
2025-08-13
Key High-Throughput Screening Breakthroughs of 2024 Featuring MCE -
Have you ever noticed that after staying up late, your appetite—especially for high-calorie foods—gets out of control? If this sounds familiar, today’s article might offer some good news.
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Encountering challenges with the high costs and long timelines of drug screening? Have a defined target but remain uncertain how to efficiently identify active molecules? Unsure how to validate hits generated from virtual screening? The ‘Winning Combination’ of drug screening offers a powerful solution to address these critical obstacles.
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This detailed guide outlines the standardized experimental protocols for multiplex immunohistochemistry (mIHC), systematically summarizes common technical issues encountered during sample preparation, staining and imaging processes, and provides practical troubleshooting solutions to ensure reliable and reproducible results in biomedical research and clinical sample analysis.
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Finding adipogenic induction media too expensive and tricky to prepare? This comprehensive guide to 3T3-L1 adipogenic differentiation simplifies the process, helping you achieve great results!
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Exosomes—natural nanoscale carriers—are revolutionizing targeted therapy. This article uncovers the science behind their precision in drug delivery.
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Cracking the PROTAC Permeability Barrier: CD36-Mediated Endocytosis as a Potential Breakthrough
2025-12-03
This article provides an in-depth analysis of cutting-edge literature revealing CD36 as a key mediator of cellular uptake for PROTACs and bRO5 compounds. By structurally optimizing PROTAC molecules to enhance their affinity for CD36, membrane permeability can be markedly improved, leading to significantly enhanced antitumor efficacy. -
This paper elaborates on cytokines for culturing major immune cells, their regulatory roles, recombinant cytokines' merits and MCE’s related high-quality products.
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In the hunt for the next ‘GLP-1,’ amylin therapeutics, which have shown strong weight-loss results in clinical trials, have become a major focus for both multinational pharma and the scientific community.
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This article walks you through the experimental design and workflow of flow cytometry, delivering a clear, dynamic, and professional overview to elevate your research.
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Molecular glue degraders have evolved from a serendipitous observation to one of the most dynamic and transformative fields in biomedical research.
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GLP-1 and Obesity Research
2026-08-14
Obesity substantially increases the risk of chronic diseases such as T2D and cardiovascular disease. The breakout success of GLP-1 therapies has spotlighted GLP-1R and a wave of emerging obesity targets. -
Research Solution for Breast Cancer TME
2025-05-21
This review examines the complex interactions within the breast cancer tumor microenvironment, emphasizing how understanding these dynamics is essential for developing effective therapies and overcoming immune resistance. -
Research Progress of Type-2-Diabetes
2025-07-09
This review comprehensively analyzes the pathophysiological mechanisms underlying T2D, surveys current therapeutic strategies, and introduces commonly used disease modeling approaches to support translational research. -
This review discusses the fundamentals of lipid biology and lipid metabolism, examines dysregulated lipid metabolism in cancer, and summarizes therapeutic strategies targeting lipid metabolic pathways.
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This review provides an overview of GLP-1 biology and physiological functions, summarizes the development and clinical applications of GLP-1 receptor agonists, and discusses next-generation GLP-1–based therapeutic strategies.
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This review presents an overview of antibody–drug conjugates from design principles and antitumor mechanisms to structural innovations, clinical progress, and future development prospects.
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This review explores mechanisms and strategies for modulating the gut microbiota to enhance cancer immunotherapy, providing insights to improve therapeutic efficacy.
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Combating Immune Evasion in Cancer
2025-10-15
This review summarizes the mechanisms by which tumors evade immune surveillance and discusses therapeutic strategies to restore antitumor immunity. -
This review summarizes the mechanisms of drug resistance in triple-negative breast cancer and highlights emerging therapeutic strategies.
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Bispecific Antibodies in Cancer Therapy
2025-10-29
This review highlights the mechanisms, technology platforms, and clinical progress of bispecific antibodies, and discusses emerging strategies to guide future development. -
This review provides insights into the pancreatic ductal adenocarcinoma tumor microenvironment, highlighting its cellular composition, stromal heterogeneity, and immune-targeting strategies.
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Understanding In Vivo CAR-T Cell Therapy
2026-01-22
This review provides a comprehensive overview of in vivo CAR-T therapy, covering technical platforms, clinical translation, and key challenges such as gene delivery and immunogenicity. -
Explore next-generation obesity therapies from three perspectives: GLP-1-based multi-receptor agonists, oral GLP-1 strategies, and novel obesity targets.
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Highlight single-cell metabolomics and stable isotope tracing (SIT) in uncovering metabolic heterogeneity and nutrient flux dynamics in tumors.
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Explore ADC evolution, immune combination strategies, and clinical advances at the intersection of targeted therapy and immunotherapy.
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Tumor Organoid-Immune Cell Co-Culture Models: Advances, Applications, and Future Directions
2026-05-07
Summarize technical strategies, application advances, and future directions of tumor organoid–immune co-culture systems. -
Review mechanisms, major challenges, and efficacy-enhancing strategies of TCR-T therapy in solid tumors, with implications for future research and clinical translation.
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The Dual Role of Cellular Senescence in Cancer: Mechanisms, Microenvironment, and Therapeutics
2026-05-21
Explore the dual role of cellular senescence in cancer, including tumor suppression, SASP-driven tumor promotion, senescence heterogeneity and plasticity, and advances in senescence-targeted therapies. -
Breaking Immune Resistance in Colorectal Cancer: From Molecular Mechanisms to Precision Therapy
2026-06-25
Explore CRC molecular subtypes, immune landscapes, resistance mechanisms, and emerging precision strategies for improving outcomes across distinct subtypes. -
Explore the evolution from GLP-1 mono-agonists to multi-receptor therapeutics and the expanding role of incretin-based therapies in precision metabolic medicine.
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Evolution of PCSK9 Inhibitors Modalities: From Monoclonal Antibodies to Oral Macrocyclic Peptides
2026-08-27
Review the biological basis of PCSK9, key therapeutic modalities, cardiovascular evidence, and future directions, including insights from the CORALreef clinical program. -
Explore the mechanisms of tumor immune evasion, dynamic checkpoint regulation, and the evolution of mechanism-driven combinations and patient stratification.
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Exosomes are nano-sized biovesicles released into surrounding body fluids after the fusion of multivesicular bodies with the plasma membrane. In this article, we will briefly introduce isolation, labeling and identification of exosomes. And the specific application of exosomes will also be mentioned.
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EC0489, a SMDC for Cancer Therapy
2019-03-25
EC0489, a conjugate of folic acid and desacetyl vinblastine hydrazide, is a SMDC under development for the treatment of solid tumours. -
R916562, a dual Axl/VEGF-R2 inhibitor, could be a potential anti-angiogenic and anti-metastatic drug for cancer chemotherapy.
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Role of PRMT7 Probe SGC3027 in Cancer
2019-03-27
SGC3027 is the first potent, selective and cell active chemical probe for PRMT7. SGC3027 is also a pro-drug, which converts to the active compound SGC8158 -
Alofanib, An Allosteric Inhibitor of FGFR2
2019-03-28
Alofanib is an allosteric inhibitor of FGFR2 and inhibits FGF-mediated proliferation with GI50s of 16-370 nM, showing pronounced antitumor activity. -
A Novel and Efficacious RAF Inhibitor RAF709
2019-03-30
RAF709, a novel and efficacious RAF inhibitor, activates the MAPK pathway and shows antitumor activity in tumor cells harboring BRAF or RAS mutations. -
CF53 is a highly potent, selective and orally active inhibitor of BET protein, with anti-tumor activity in acute leukemia and breast cancer cell lines.
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AZD3229 is a Potent Pan-KIT Mutant Inhibitor
2019-04-04
AZD3229 is a potent, pan-KIT mutant inhibitor with potent single digit nM growth inhibition against a diverse panel of mutant KIT driven Ba/F3 cell lines. -
BR351 is a Brain Penetrant MMP Inhibitor
2019-04-05
BR351 is a brain penetrant MMP inhibitor, and a potential tool for the molecular imaging of activated MMPs with PET, with an IC50 in the nanomolar range. -
A Lead PROTAC BRD9 Chemical Degrader
2019-04-06
PROTAC BRD9 Degrader-1 is a lead PROTAC BRD9 chemical degrader and a selective probe useful for the study of BAF complex biology. -
SGC-GAK-1 is a potent, selective, and cell-active GAK inhibitor and shows potent anti-proliferative activity in LNCaP and 22Rv1 cells.
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COH000 is an allosteric, covalent and irreversible inhibitor of SUMO-activating enzyme, with an IC50 of 0.2 μM for SUMOylation in vitro.
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Nevanimibe is a selective and potent ACAT1 inhibitor. An excellent drug candidate in the treatment of adrenocortical cancer.
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MK-0429 is An Oral Integrin (αvβ3) Inhibitor
2019-04-11
MK-0429, an orally active αvβ3 inhibitor, is a potential therapeutic agent for the prevention of kidney fibrosis, melanoma and osteoporosis. -
AZ304, a Dual BRAF Inhibitor Against Cancer
2019-04-12
AZ304 is a potent BRAF inhibitor, blocks both wild type BRAF and V600E mutant BRAF activity, with IC50s in the nanomolar range. -
Erteberel is a Selective ERβ Agonist
2019-04-16
Erteberel (LY500307) is a synthetic, nonsteroidal estrogen which acts as a selective ERβ agonist and under development for the treatment of schizophrenia. -
MBQ-167 is a dual Rac/Cdc42 inhibitor in in metastatic cancer, with IC50s of 103 nM for Rac 1/2/3 and 78 nM for Cdc42 in MDA-MB-231 cells, respectively.
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PRN1008 is a Reversible Covalent and Oral Active Inhibitor of Bruton’s Tyrosine Kinase (BTK)
2019-04-18
PRN1008 is a selective, reversible covalent and oral active inhibitor of Bruton’s Tyrosine Kinase (BTK), with an IC50 of 1.3 nM. -
Multiple Tyrosine Kinases Inhibitor TAS-115
2019-04-19
TAS-115 is a potent VEGFR and c-Met/HGFR-targeted kinase inhibitor with IC50s of 30 and 32 nM for rVEGFR2 and rMET, respectively. -
Y06036 is a potent and selective BET inhibitor for potential treatment of castration-resistant prostate cancer. With nanomolar inhibition.
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JNJ-64619178 is a selective and pseudo-irreversible PRMT5 inhibitor with an IC50 of 0.14 nM. Has potent Activity In Lung Cancer.
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(E)-AG 99 is an EGFR inhibitor and shows a growth-inhibition on not only serum-starved cells but also normally grown cells. Treatment for Bladder cancer.
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TAK-828F is a potent, selective and orally active retinoic acid receptor-related orphan receptor γt (RORγt) inverse agonist. TAK-828F inhibits IL-17A cytokine expression and reduces symptoms of autoimmune encephalomyelitis mice.
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Y06137 is a potent and selective BET inhibitor, which binds to the BRD4(1) bromodomain with a Kd of 81 nM. Antitumor activity.
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Borussertib is a covalent-allosteric and first-in-class inhibitor of protein kinase Akt, with an IC50 of 0.8 nM and a Ki of 2.2 nM for Akt-wt.
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NRX-252262 is a β-catenin:β-TrCP interaction enhancer, and its cognate E3 ligase, SCFβ-TrCP, induces mutant β-catenin degradation, with an EC50 of 3.8 nM
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TAK-981 is a selective inhibitor of the SUMOylation enzymatic cascade, with potential immune-activating and antineoplastic activities
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TD-428 is a Highly Specific BRD4 Degrader
2019-04-29
TD-428, a immunomodulatory drug analog, is a highly specific BRD4 degrader with a DC50 of 0.32 nM. TD-428 reduces c-Myc levels more efficiently than JQ1. -
SLLN-15 is an oral activ enhancer of autophagy that activates cytostatic macroautophagy/autophagy in triple-negative breast cancer (TNBC).
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A1874 is a nutlin-based and BRD4-degrading PROTAC with a DC50 of 32 nM. Effective in inhibiting many cancer cell lines proliferation
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BAY-8002 is a selective and orally active inhibitor of monocarboxylate transporter 1 (MCT1), with an IC50 of 85 nM. Has potential to treat lymphoma.
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MRTX-1257 is a selective, irreversible, covalent and oral active KRAS G12C inhibitor, with an IC50 of 900 pM for KRAS dependent ERK phosphorylation.
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USL311 is a selective CXCR4 antagonist, which prevents the binding of stromal-cell derived factor-1 (SDF-1 or CXCL12) to CXCR4. Anti-tumor activity.
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TX1-85-1, a ATP-competitive ligand of Her3, covalent modification of Her3 to inhibit Her3 signaling
2019-06-01
TX1-85-1 is a Her3 (ErbB3) inhibitor with an IC50 of 23 nM. TX1-85-1 induces partial degradation of Her3 protein and attenuates Her3-dependent signaling. -
IWP-O1, a Highly Potent Porcupine Inhibitor, Functions by Preventing the Secretion of Wnt Proteins
2019-06-03
IWP-O1 is a Porcupine (Porcn) inhibitor, with an EC50 of 80 pM in L-Wnt-STF cells. IWP-O1 functions by preventing the secretion of Wnt proteins[ -
PF-06465469 is a Covalent Inhibitor of ITK
2019-06-08
PF-06465469 is a potent and covalent inhibitor of ITK with an IC50 of 2 nM. PF-06465469 inhibits MEK1/2 or AKT phosphorylation. -
Olutasidenib is a highly potent, selective inhibitor of mutant IDH1 that could be used in the treatment of AML or myelodysplastic syndrome (MDS).
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JMS-17-2 is a CX3CR1 Antagonist
2019-06-12
JMS-17-2 is a potent and selective CX3CR1 antagonist with an IC50 of 0.32 nM. Has potential to treat cancers such as breast cancer. -
S18-000003 is a potent, selective and orally active inhibitor of retinoic acid receptor-related orphan receptor-gamma-t (RORγt). S18-000003 ameliorates psoriasis-like lesions in vivo. S18-000003 can be used for the research of skin inflammatory diseases.
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PTC299 is a dual and orally active DHODH and VEGF inhibitor, has broad and potent activity against hematological cancer cells.
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AMG 487 is an orally active and selective antagonist of CXC chemokine receptor 3 (CXCR3). AMG 487 has potential to treat metastatic cancer.
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FGTI-2734 is a dual farnesyl and geranylgeranyl transferase-1 inhibitor. FGTI-2734 prevents membrane localization of KRAS and mutant KRAS pancreatic tumors.
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LSN 3213128 is a selective, nonclassical, orally bioavailable antifolate with anti-cancer activity. LSN 3213128 potently and specifically inhibits AICARFT.
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BI-882370 is a potent RAF kinase inhibitor with IC50s of 0.4, 0.8, and 0.6 nM for oncogenic BRAFV600E-mutant, the WT BRAF and CRAF kinases , respectively.
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MSX-122 is an orally active partial antagonist of CXCR4, inhibiting CXCR4/CXCL12 actions. MSX-122 has both anti-tumor and anti-metastasis activities.
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ZT-12-037-01 is a ATP-competitive and specific STK19 inhibitor and inhibits oncogenic NRAS-driven melanocyte malignant transformation.
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NXT629 is a potent, selective, and competitive PPAR-α antagonist and shows high selectivity over other nuclear hormone receptor.
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PT2977 is an orally active and selective HIF-2α inhibitor with an IC50 of 9 nM. PT2977 is a potential treatment for ccRCC and VHL disease.
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BI-2852 is a potent KRAS inhibitor with nanomolar affinity and reduces pERK and pAKT levels in a dose-dependent manner in a KRAS mutant cell line NCI-H358.
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BI-4924 is a Selective PHGDH Inhibitor
2019-08-23
BI-4924 is a lipophilic and highly plasma protein bound selective phosphoglycerate dehydrogenase (PHGDH) inhibitor (IC50=3 nM) with excellent microsomal. -
BAY-293 is a potent inhibitor of Son of Sevenless 1 (SOS1) and blocks RAS activation via disruption of the KRAS-SOS1 interaction with an IC50 of 21 nM.
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FT113 is a potent and orally active fatty acid synthase inhibitor, with an IC50 of 213 nM for full-length recombinant human FAS, with anti-tumor activity.
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WZ811 is an Orally Active CXCR4 Antagonist
2019-09-07
WZ811 is an orally active, highly potent competitive antagonist of CXCR4, which inhibits chronic lymphocytic leukemia progression and tumorigenesis. -
RU-302 is a pan-TAM inhibitor that blocks the TAM Ig1 ectodomain and the Gas6 Lg domain interaction. RU-302 blocks Gas6-inducible Axl receptor activation.
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BAY 61-3606 is an orally available, ATP-competitive, reversible and highly selective Syk inhibitor and sensitizes apoptosis by in breast cancer.
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UPGL00004 is a allosteric glutaminase C inhibitor which strongly inhibits the proliferation of highly aggressive triple-negative breast cancer cell lines.
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IDH889 is an orally available, brain penetrant, allosteric and mutant specific inhibitor of isocitrate dehydrogenase 1 (IDH1) R132 mutations.
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IPR-803 is a potent inhibitor of the uPAR•uPA protein-protein interaction, and binds directly to uPAR with sub-micromolar affinity.
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TVB-3166 is an orally-available, reversible, and selective FASN inhibitor and it induces apoptosis, and inhibits in-vivo xenograft tumor growth.
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Vorolanib is an orally active, multikinase VEGF/PDGF receptor inhibitor with antitumor activity and is expected to disrupt tumor angiogenesis.
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CCG-222740 is a potent and selective MRTF pathway inhibitor. It effectively reduces fibrosis in the skin and blocks melanoma metastasis.
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ASLAN003 is an orally active and potent inhibitor of hDHODH with antitumor activity, and it has the potential to be a first-in-class drug candidate in AML.
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IACS-8803 is a highly potent cyclic dinucleotide stimulator of interferon genes (STING) agonist with robust systemic antitumor efficacy.
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DS18561882 is a highly potent, sozyme-selective methylenetetrahydrofolate dehydrogenase 2 (MTHFD2) inhibitor with a good oral pharmacokinetic profile.
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AC-73 is a first specific, orally active the cluster of differentiation 147 (CD147) inhibitor and specifically disrupts CD147 dimerization.
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GNE-618 is a Orally Active NAMPT Inhibitor
2019-11-28
GNE-618 is an orally active NAMPT inhibitor and reduces tumor growth. GNE-618 depletes NAD levels and induces tumor cell death. -
Telaglenastat is a first-in-class, reversible, orally bioavailable glutaminase 1 splice variants (KGA and GAC) inhibitor. It shows antitumor activity.
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CH6953755 is a potent, orally active and selective YES1 kinase inhibitor leading to antitumor activity against YES1 Gene -amplified cancers.
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CA-4948 is a Selective and Orally Bioavailable IRAK4 Kinase Inhibitor for Lymphoma Treatment
2020-01-05
CA-4948 is a potent, selective and orally bioavailable IRAK4 kinase inhibitor. CA-4948 can be used for the treatment of lymphoma. -
GPP78 is a potent Nampt inhibitor. GPP78 is cytotoxic to neuroblastoma cell line SH-SY5Y cells. GPP78 has anti-cancer and anti-tumor activity.
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ADH-503 is an orally active and allosteric CD11b agonist and leads to the repolarization of tumor-associated macrophages.
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Balixafortide is a potent, selective peptidic CXCR4 antagonist with anti-cancer effects, and blocks β-arrestin recruitment and calcium flux.
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CM10 is a potent and selective aldehyde dehydrogenase 1A family inhibitor and regulates metabolism and has anti-cancer activity.
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CCT365623, an Orally Active LOX Inhibitor, Supresses EGFR (pY1068) and AKT Phosphorylation
2020-04-16
CCT365623 is an orally active LOX inhibitor, suppresses EGFR (pY1068) and AKT phosphorylation driven by EGF. CCT365623 has good pharmacokinetic properties. -
DC-5163 is a potent GAPDH inhibitor, can inhibit glycolysis pathway partially. DC-5163 selectively inhibits cancer cell proliferation and induces apoptosis.
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RBN-2397 is an orally active accross species NAD+ competitive inhibitor of PARP7. RBN-2397 binds to PARP7 and restores interferon (Type I) signaling.
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OT-82 is a selective inhibitor of NAMPT. Selectively toxic to cells of hematopoietic origin. OT-82 is a promising antineoplastic agent.
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TNP-351, an Antifolate, is a Dihydrofolate Reductase (DHFR) Inhibitor. Antifolates serve medical science well in neoplastic and non-neoplastic diseases.
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GSK143 is an orally active and highly selective spleen tyrosine kinase (SYK) inhibitor. GSK143 reduces inflammation in the intestinal muscularis in mice.
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EW-7195 is a potent and selective ALK5 inhibitor, and efficiently inhibits TGF-β1-induced Smad signaling, EMT and breast tumour metastasis to the lung.
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JX06 is a potent, selective and covalent inhibitor of PDK via covalently binding to a cysteine residue in an irreversible manner.
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IPI-9119 is an orally active, selective and irreversible FASN inhibitor with potent anti-cancer activity. IPI-9119 induces cell cycle arrest, apoptosis.
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MSA-2 is an orally available non-nucleotide STING agonist. MSA-2 shows antitumor activity and stimulates interferon-β secretion in tumors.
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SP-8356, an orally active CD147inhibitor, exerts anti-breast cancer effects by inhibiting NF-κB signaling. Anti-atherosclerotic effects.
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CB-1158, a potent and orally bioavailable inhibitor of arginase, blocks myeloid cell-mediated immune suppression in the tumor microenvironment.
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SRX3207 is an orally active and first-in-class dual Syk/PI3K inhibitor. SRX3207 possesses effective anti-tumor activity in vitro and in vivo.
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Verucopeptin inhibits v-ATPase activity by directly targeting the v-ATPase ATP6V1G subunit but not ATP1V1B2 or ATP6V1D. Also a potent HIF-1 inhibitor.
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E7820, sulfonamide derivative, is a unique angiogenesis inhibitor suppressing an expression of integrin alpha2 subunit on endothelium.
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Cyclo(-RGDfK) is a selective inhibitor of the αvβ3 integrin. Cyclo(-RGDfK) potently targets cancer cells through binding to the cell surface αvβ3 integrin.
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Cilengitide is a compound targeting angiogenesis, the cornerstone of tumor growth and metastasis. ανβ3 and ανβ5 are the target of Cilengitide.
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Tetrac inhibits the cellular actions of thyroid hormone initiated at the hormone receptor on plasma membrane integrin alphavbeta3.
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CTPI-2 is a SLC25A1 inhibitor. CTPI-2 inhibits glycolysis, PPARγ, and its downstream target the glucose transporter GLUT4. Antitumor activity.
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BI99179 is a Selective Type I FASN Inhibitor
2021-01-28
FASN is a key enzyme for lipogenesis and highly expressed in lipogenic tissues. BI99179 is a Selective Type I FASN Inhibitor. -
Fasentin inhibits GLUT-1 and GLUT-4 transporters. Fasentin blocks glucose uptake in cancer cell lines and has anti-angiogenic activity.
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ML390 is a Potent DHODH Inhibitor
2021-02-24
ML390 is a potent dihydroorotate dehydrogenase (DHODH) inhibitor and is an inducer of myeloid differentiation. -
ENMD-1198 is an orally active microtubule-targeting agent with antiproliferative and antiangiogenic activity.
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TPP-1 is a potent inhibitor of the PD-1/PD-L1 interaction. TPP-1 binds specifically to PD-L1 with a high affinity (KD=95 nM).
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FAPI-46 is a quinoline-based FAP-targeted radiotracer. FAPI-46 has higher tumor uptake and prolonged tumor accumulation.
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BMSpep-57 is a potent and competitive macrocyclic peptide inhibitor of PD-1/PD-L1 interaction. It induces high levels of IL-2.
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ML339 is a Selective CXCR6 Antagonist
2021-05-12
ML339 is a small molecule antagonist would block Prostate cancer cell trafficking; hence mediate a metastatic event and disease progression. -
Sitravatinib (MGCD516) is an Orally Bioavailable RTK Inhibitor with PD-1 Blockade Activity
2021-06-03
Sitravatinib, a small molecule RTK inhibitor, shows potent anti-tumor activity in preclinical models of sarcoma. -
Vorasidenib is an orally available, brain penetrant second-generation dual mutant isocitrate dehydrogenases 1 and 2 (mIDH1/2) inhibitor.
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Motesanib (AMG 706) is an orally active VEGFR inhibitor. Potently inhibits angiogenesis and induces regression in tumor xenografts.
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EMD527040 is a highly selective αvβ6 antagonist with antifibrotic activities.
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Inupadenant is an orally active, highly selective A2A receptor antagonist with potent anti-tumor activity.
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UK122 is a potent and selective urokinase-type plasminogen activator (uPA) inhibitor with anti-cancer activity.
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AZD4635 is a potent, selective and orally active antagonist of A2AR that reverses adenosine-mediated immune suppression.
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Nintedanib a potent and orally active triple vascular kinase inhibitor for VEGFR1/2/3, FGFR1/2/3 and PDGFRα/β.
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Axitinib is a multi-targeted tyrosine kinase inhibitor and potently inhibitor VEGFR1, VEGFR2, VEGFR3 and PDGFRβ.
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Lonidamine, an antitumor agent and an indazole derivative, interferes with energy-yielding processes in cancer cells.
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CL097 is a TLR7/8 agonist. CL097 induces pro-nflammatory cytokines. CL097 induces NADPH oxidase priming and efficient diabetogenic cytotoxic T lymphocyte (CTL) function in NOD mice.
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Indoximod, an immunometabolic adjuvant, is an orally active IDO pathway inhibitor. Indoximod acts as a Trp mimetic in regulating mTOR.
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Tanomastat is an orally active, non-peptidic biphenyl MMPs inhibitor, with antiangiogenic, anti-invasive and antimetastatic activities.
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BM213 is a selective C5aR1 agonist. It’s a useful research tool to study C5aR1 function
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Telatinib is an orally active inhibitor of VEGFR2, VEGFR3, PDGFα, and c-Kit.
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Marimastat (BB2516) is a broad spectrum and orally bioavailable inhibitor of MMPs (Matrix metalloproteinases).
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Gardiquimod is a TLR7/8 agonist and can inhibit HIV-1 infection.
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Vatalanib is an inhibitor of VEGFR2/KDR. Vatalanib induces inhibition of the angiogenic response to VEGF and PDGF.
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Toceranib is a selective and orally active inhibitor of RTK and has the potential for the research of canine mast cell tumors.
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Tiragolumab is an immune checkpoint inhibitor binding to TIGIT. Tiragolumab is effective against multiple solid malignancies.
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Henatinib is an orally active small-molecule multikinase inhibitor that has demonstrated broad and potent antitumor activities.
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KGP94 is a selective inhibitor of cathepsin L. KGP94 has antitumor activity and improves survival of bone metastases bearing mice.
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Certepetide is a Tumor-penetrating Enhancer via RGD Motif Interaction with Alphav-integrins
2022-09-01
Certepetide is a tumor-penetrating enhancer and has the potential for the research of metastatic pancreatic ductal adenocarcinoma. -
BSP16 is a potent, orally active stimulator of interferon genes (STING) agonist. BSP16 has potent anti-cancer activity.
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Parsatuzumab (RG 7414) is a humanized monoclonal antibody, that acts as an immunomodulator, and binds to EGFL7.
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Serplulimab is a humanized monoclonal anti-PD-1 antibody and has the potential for the research of small cell lung cancer.
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ABT-510, a peptide analog of thrombospondin-1 (TSP-1), can block angiogenesis in vitro and in vivo, and slow tumor growth.
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STF-31 is a potent ans selective inhibitor of GLUT1 that inhibit glucose uptake in renal cell carcinoma (RCC) 4 cells.
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Mogamulizumab is an Anti-CCR4 monoclonal antibody. It enhances antibody-dependent cellular cytotoxicity and is effective against leukemia.
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Olutasidenib (FT-2102) is an orally active, brain penetrant inhibitor of mutant IDH1. Olutasidenib is used for AML or MDS Research.
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Bapotulimab (BAY-1905254) is an ILDR2 IgG antibody that blocks the immunosuppressive effects of ILDR2 on T-cell activation.
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Nanrilkefusp alfa is a selective and strong IL-15 agonist. It inhibits tumor metastasis and viability by activating natural killer (NK) cells.
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Urabrelimab (SRF231) is an anti-CD47 monoclonal antibody, blocking the CD47-SIRPα interaction. It has the potential to research anticancer.
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Efineptakin alfa (NT-17) is a Long-Acting Recombinant Human IL-7 for Glioblastoma Research
2023-02-07
Efineptakin alfa (NT-17) is a long-acting recombinant human IL-7. Efineptakin alfa can be used for glioblastoma research. -
Pegdinetanib (BMS-844203) is a selective VEGFR-2 inhibitor with antitumor activity.
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Talotrexin (PT523), a classic antifolate, is an RFC (reduced folate carrier) specific inhibitor and selectively inhibits RFC transport.
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Tifcemalimab, a Humanized anti-BTLA monoclonal antibody, blocks the interaction of HVEM-BTLA by binding to BTLA and activates lymphocytes.
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Geptanolimab (CBT-501) is a programmed death-1 (PD-1) monoclonal antibody. Geptanolimab can be used in research forsolid tumor research.
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Dazostinag is a STING Agonist and Can be used for Antibody-Drug Conjugates (ADCs) Synthesis
2023-03-13
Dazostinag is a STING agonist and a playload, to synthesis antibody-drug conjugates (ADCs). It has antitumor activity in vivo. -
BBO-11818 is a potent, selective, orally bioavailable, and noncovalent pan-KRAS inhibitor targeting multiple clinically relevant KRAS mutants in both ON and OFF states.
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Natural Products
| Cat. No. | Product Name | Information | Application | Publication |
|---|---|---|---|---|
| HY-13966 | 2-Deoxy-D-glucose |
2-Deoxy-D-glucose is a glucose analog that acts as a competitive inhibitor of glucose metabolism, inhibiting glycolysis via its actions on hexokinase.
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390
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| HY-B0345A | ATP disodium salt |
ATP disodium salt (Adenosine 5'-triphosphate disodium salt) is a central component of energy storage and metabolism in vivo, provides the metabolic energy to drive metabolic pumps and serves as a coenzyme in cells. ATP disodium salt is an important endogenous signaling molecule in immunity and inflammation.
Source: Widespread |
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175
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| HY-L025 | Anti-Cancer Compound Library |
Cancer is the second leading cause of death globally and seriously threatens human health. A neoplasm and malignant tumor are other common names for cancer. Disruption of the normal regulation of cell-cycle progression and division lies at the heart of the events leading to cancer. Target therapy, which targets proteins that control how cancer cells grow, divide and spread, plays an important role in cancer treatment. Recent studies mainly focus on targeting the key proteins for cancer surviving, cancer stem cells, the tumor microenvironment, tumor immunology, etc.
MCE designs a unique collection of 11,237 anti-cancer compounds that target kinases, cell cycle key components, tumorigenesis related signaling pathways, etc. MCE Anti-cancer compound library is a useful tool for anti-cancer drug screening.
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100
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| HY-L012 | Metabolism/Protease Compound Library |
Metabolism is the set of life-sustaining chemical reactions in organisms. Metabolic pathways are enzyme-mediated biochemical reactions that lead to biosynthesis (anabolism) or breakdown (catabolism) of natural product small molecules within a cell or tissue. Acting as catalysts, enzymes are crucial to metabolism - they allow a reaction to proceed more rapidly - and they also allow the regulation of the rate of a metabolic reaction. Proteases are used throughout an organism for various metabolic processes. Proteases control a great variety of physiological processes that are critical for life, including the immune response, cell cycle, cell death, wound healing, food digestion, and protein and organelle recycling. Imbalances in metabolic activities have been found to be critical in a number of pathologies, such as cardiovascular diseases, inflammation, cancer, and neurodegenerative diseases.
MCE designs a unique collection of 7,360 Metabolism/Protease-related small molecules that act as a useful tool for drug discovery of metabolism-related diseases.
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89
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| HY-L031 | Small Molecule Immuno-Oncology Compound Library |
Immuno-Oncology is a type of immunotherapy that has the specific purpose of treating cancer. It works by stimulating our immune system to fight back. Normally, our immune system is able to destroy cancer cells in our body, however sometimes cancer cells can adapt and mutate, effectively hiding from our immune system. This is when tumors can develop and become a threat to our health. Immuno-oncology involves mobilizing lymphocytes to recognize and eliminate cancer cells using the body’s immune system. There are several immuno-oncology treatments available, including Immune cell therapy (CAR-T), monoclonal antibodies (mABs) and checkpoint inhibitors, cytokines and cancer vaccines.
MCE Small Molecule Immuno-Oncology Compound Library offers 831 bioactive tumor immunology compounds that target some important checkpoints such as PD1/PD-L1, CXCR, Sting, IDO, TLR, etc. This library is a useful tool for Immuno-oncology research.
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88
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| HY-L058 | Glycolysis Compound Library |
Glycolysis is a series of metabolic processes by which one molecule of glucose is catabolized to two molecules of pyruvate with a net gain of two ATP. Glycolysis takes place in 10 steps and catalyzed by a series of enzyme, such as hexokinase, Glucose-6-phosphate isomerase, Phosphofructokinase, etc. Glycolysis is used by all cells in the body for energy generation.
Most cancer cells exhibit increased glycolysis and use this metabolic pathway for generation of ATP as a main source of their energy supply. This phenomenon is known as the Warburg effect and is considered as one of the most fundamental metabolic alterations during malignant transformation. Because increased aerobic glycolysis is commonly seen in a wide spectrum of human cancers, development of novel glycolytic inhibitors as a new class of anticancer agents is likely to have broad therapeutic applications.
MCE provides a unique collection of 1,379 glycolysis compounds that mainly target hexokinase, glucokinase, enolase, pyruvate kinase, PDHK, etc. MCE Glycolysis Compound Library is a useful tool for glucose metabolism research and anti-cancer drug discovery.
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86
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| HY-L092 | Glucose Metabolism Compound Library |
Glucose homeostasis is tightly regulated to meet the energy requirements of the vital organs and maintain an individual’s health. Glucose metabolism includes glycolysis, tricarboxylic acid cycle, pentose phosphate pathway, oxidative phosphorylation and other metabolic pathways. Glucose is the major carbon source that provides the main energy for life. Glucose metabolism dysregulation is also implicated in many diseases such as diabetes, heart disease, neurodegenerative diseases and even cancer.
MCE offers a unique collection of 1,777 compounds related to glucose metabolism, which target glucose metabolism related targets, such as GLUT, Hexokinase, Pyruvate Kinase, IDH, etc. MCE glucose metabolism library is a powerful tool for studying glucose metabolism and drug discovery of diseases related to glucose metabolism.
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85
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| HY-L070 | Neuroprotective Compound Library |
Neurodegenerative diseases are characterised by progressive dysfunction and death of neurons, such as Alzheimer’s disease, Parkinson’s disease, and multiple sclerosis (MS). Neuroprotection is an approach to preserve neurons so that neurons cannot be hurt by different pathological factors in neurodegenerative diseases. Neuroprotectors are some agonists and antagonists targeting some key targets in neuroprotactive signal pathways, such as calcium and sodium channel blockers, GABA receptor agonists, NMDA receptor Antagonists, etc. Current neuroprotectors cannot reverse existing damage, but they may protect against further nerve damage and slow down any degeneration of the central nervous system (CNS) and still play important roles in the treatment of neurodegenerative diseases.
MCE offers a unique collection of 1,851 compounds with potential neuroprotective activities. These compounds mainly act on some key targets in neuroprotetive signal pathways, such as calcium channel, sodium channel, adenosine A1 receptor, etc. MCE Neuroprotective Compopund Library is a useful tool in neuroprotective drug discovery.
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84
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| HY-L083 | Anti-Cancer Metabolism Compound Library |
Mutations in oncogenes and tumor suppressor genes can modify multiple signaling pathways and in turn cell metabolism, which facilitates tumorigenesis. The paramount hallmark of tumor metabolism is “aerobic glycolysis” or the Warburg effect, coined by Otto Warburg in 1926, in which cancer cells produce most of energy from glycolysis pathway regardless of whether in aerobic or anaerobic condition. Usually, cancer cells are highly glycolytic (glucose addiction) and take up more glucose than do normal cells from outside. The increased uptake of glucose is facilitated by the overexpression of several isoforms of membrane glucose transporters (GLUTs). Likewise, the metabolic pathways of glutamine, amino acid and fat metabolism are also altered. Recent trends in anti-cancer drug discovery suggests that targeting the altered metabolic pathways of cancer cells result in energy crisis inside the cancer cells and can selectively inhibit cancer cell proliferation by delaying or suppressing tumor growth.
MCE provides a unique collection of 3,806 compounds which cover various tumor metabolism-related signaling pathways. These compounds can be used for anti-cancer metabolism targets identification, validation as well anti-cancer drug discovery.
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84
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| HY-L045 | Oxygen Sensing Compound Library |
Oxygen homeostasis regulation is the most fundamental cellular process for adjusting physiological oxygen variations, and its irregularity leads to various human diseases, including cancer. Hypoxia is closely associated with cancer development, and hypoxia/oxygen-sensing signaling plays critical roles in the modulation of cancer progression.
Hypoxia-inducible factor 1 (HIF-1) is a transcription factor that functions as a master regulator of oxygen homeostasis. A variety of HF-1 target genes have been identified thus far which encode proteins that play key roles in critical developmental and physiological processes including angiogenesis/vascular remodeling, erythropoiesis, glucose transport, glycolysis, iron transport, and cell proliferation/survival.
HIF-1 is a heterodimeric transcription factor consisting of a constitutively expressed β-subunit and an oxygen-regulated α-subunit. The unique feature of HIF-1 is the regulation of HIF-1α expression and activity based upon the cellular O2 concentration. Under normoxic conditions, hydroxylation of HIF-1α on these different proline residues is essential for HIF proteolytic degradation by promoting interaction with the von Hippel-Lindau tumor-suppressor protein (pVHL) through hydrogen bonding to the hydroxyproline-binding pocket in the pVHL β-domain. As oxygen levels decrease, hydroxylation of HIF decreases; HIF-1α then no longer binds pVHL, and becomes stabilized, allowing more of the protein to translocate to the cell’s nucleus, where it acts as a transcription factor, upregulating (often within minutes) the production of proteins that stimulate blood perfusion in tissues and thus tissue oxygenation.
MCE offers a unique collection of 4,317 oxygen sensing related compounds targeting HIF/HIF Prolyl-Hydroxylase, MAPK/ERK, PI3K/AKT signaling pathways, etc. MCE Oxygen Sensing Compound Library is a useful tool to study hypoxia, oxidative stress and discover new anti-cancer drugs.
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83
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| HY-L064 | Glutamine Metabolism Compound Library |
Glutamine is an important metabolic fuel that helps rapidly proliferating cells meet the increased demand for ATP, biosynthetic precursors, and reducing agents. Glutamine Metabolism pathway involves the initial deamination of glutamine by glutaminase(GLS), yielding glutamate and ammonia. Glutamate is converted to the TCA cycle intermediate α-ketoglutarate (α-KG) by either glutamate dehydrogenase (GDH) or by the alanine or aspartate transaminases (TAs), to produce both ATP and anabolic carbons for the synthesis of amino acids, nucleotides and lipids. During periods of hypoxia or mitochondrial dysfunction, α-KG can be converted to citrate in a reductive carboxylation reaction catalyzed by IDH2. The newly formed citrate exits the mitochondria where it is used to synthesize fatty acids and amino acids and produce the reducing agent, NADPH.
Cancer cells display an altered metabolic circuitry that is directly regulated by oncogenic mutations and loss of tumor suppressors. Mounting evidence indicates that altered glutamine metabolism in cancer cells has critical roles in supporting macromolecule biosynthesis, regulating signaling pathways, and maintaining redox homeostasis, all of which contribute to cancer cell proliferation and survival. Thus, intervention in glutamine metabolic processes could provide novel approaches to improve cancer treatment.
MCE owns a unique collection of 1,827 compounds targeting the mainly proteins and enzymes involved in glutamine metabolism pathway. Glutamine Metabolism compound library is a useful tool for intervention in glutamine metabolic processes.
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83
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| HY-L132 | Chemokine Compound Library |
Chemokines, or chemotactic cytokines, are small cytokines or signaling proteins secreted by cells. They are a component of intercellular communication, controlling the directional movement of immune cells especially leukocytes, as well as other cell types, for instance, endothelial and epithelial cells, which are essential to maintain human health and the function of the immune system.
The biological effects of chemokines are achieved by binding to chemokine receptors, which are G protein-coupled receptors found on the surface of leukocytes. Some chemokine receptors are involved in directing tumor metastasis and over-expression by certain tumors. So inhibiting the interaction between chemokine and chemokine receptors on the surface of tumor cells may be a new possible therapeutic approach. Some chemokine receptors are coreceptors for HIV entry, and related inhibitors have been approved by the FDA to treat patients with HIV. Obviously, chemokines and chemokine receptors have become new targets for studying cancer, HIV, inflammation, and other diseases.
MCE supplies a unique collection of 257 chemokine or chemokine receptor inhibitors and activators, all of which have the identified inhibitory or activated effect on chemokine or chemokine receptors. MCE Chemokine Library is a useful tool for drug research related to cancer, AIDS, and wound therapy.
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83
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| HY-L133 | Cuproptosis Compound Library |
Copper is an important co-factor of all biological enzymes, but if the concentration exceeds the threshold of maintaining the homeostasis mechanism, copper will lead to cytotoxicity. This death mechanism has been named "Cuproptosis".
The mechanism of cuproptosis distinct from all other known mechanisms of regulated cell death, including apoptosis, pyroptosis, necroptosis, and ferroptosis.
Copper combine with the lipoylated components of the tricarboxylic acid cycle (TCA), leading to lipoylated protein aggregation and subsequent loss of iron-sulfur cluster proteins, ultimately resulting in protein toxicity stress and cell death. Studies have shown that the necessary factors for cuproptosis include the presence of glutathione, mitochondrial metabolism of galactose and pyruvate, and glutamine metabolism.
Targeted regulation of cuproptosis is a potential choice to treat cancer, rheumatoid arthritis, and other diseases. For example, up-regulation of LIPT1 may inhibit the occurrence and development of tumors by destroying TCA in mitochondria and then inducing cuproptosis.
MCE supplies a unique collection of 446 cuproptosis-related compounds, all of which act on the targets or signaling pathways related to cuproptosis and may have in inhibitory or activated effect on cuproptosis. MCE Cuproptosis Library is a useful tool for drug research related to cancer, rheumatoid arthritis, and other diseases.
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83
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| HY-L172 | Immunopotentiator Compound Library |
Immunity refers to the ability of the body to resist the invasion of pathogenic microorganisms and resist a variety of diseases. Immunocompromised will inevitably lead to a series of diseases. Immunopotentiator are a class of compounds that enhance immune function and induce immune response. Immunopotentiator can activate the proliferation and differentiation of one or more kinds of immune active cells in the body, promote the secretion of lymphocytes, and then enhance the immune function of the body. Immunopotentiator are mainly used in the treatment of tumors, infectious diseases and immunodeficiency diseases. In addition, immunopotentiator are often used as adjuvants in combination with vaccine antigens to enhance the immunogenicity of vaccines.
MCE designs a unique collection of 150 compounds with definite or potential Immunopotentiating effect, mainly targeting the NOD-like Receptor (NLR), Toll-like Receptor (TLR), NF-κB, etc. It is an effective tool for development and research of anti-cancer, anti-infectious diseases and anti-immunodeficiency diseases compounds.
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83
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| HY-L174 | Macrophage Related Compound Library |
Macrophages are effector cells of the innate immune system, engulfing bacteria and secreting pro-inflammatory and antibacterial mediators. They are an important component of the first line defense against pathogens and tumor cells. In addition, macrophages play an important role in eliminating damaged cells through programmed cell death. Like all immune cells, macrophages originate from pluripotent hematopoietic stem cells in the bone marrow. Macrophages play key functions in many physiological processes beyond homeostasis and innate immunity, including metabolic function, cell debris clearance, tissue repair, and remodeling. In order to fulfill their different functional roles, macrophages can polarize into a series of phenotypes, including classic (pro inflammatory, M1) and alternative (anti-inflammatory, healing promoting, M2) activation states, as well as a wide range of regulatory phenotypes and subtypes. Macrophages exist in all vertebrate tissues and have a dual function in host protection and tissue damage, maintaining a good balance.
MCE designs a unique collection of 276 macrophage related compounds. It is a good tool to be used for research on Inflammation, cancer and other diseases.
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83
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| HY-L189 | Amino Acid Metabolism Compound Library |
Amino acids, as one of the most fundamental organic compounds in living organisms, serve not only as the basic building blocks of proteins but also but also undertake the functions of energy supply, neurotransmitter synthesis, and maintenance of internal environment stability.Amino acid metabolic enzymes are a class of enzymes involved in the metabolic processes of amino acids, catalyzing their synthesis, breakdown, transformation, and interactions with other metabolic pathways. Abnormalities in amino acid metabolic enzymes can lead to various metabolic diseases, such as phenylketonuria and hyperammonemia, etc. Therefore, actively exploring and regulating the processes of amino acid metabolism is crucial for the development of drugs related to these diseases.
MCE designs a unique collection of 352 small molecules target amino acid metabolizing enzymes, which is an important tool for studying studying amino acid metabolism processes or metabolism-related drug development.
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83
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| HY-L204 | Lactic Acid Metabolic Compound Library |
Lactic acid metabolism is one of the key metabolic pathways within living organisms. It plays a crucial role not only in cellular energy conversion but is also closely related to a variety of physiological and pathological processes. The production and clearance of lactic acid are important indicators of cellular metabolic balance, and its abnormal regulation may lead to conditions such as lactic acidosis, muscle fatigue, and hereditary metabolic diseases. Moreover, lactic acid is closely related to the malignancy of tumors and is considered a biomarker for malignant tumors and poor prognosis. Lactic acid can serve as a metabolic substrate to support the metabolic needs of tumor cells under hypoxic conditions, and it can also cause acidification of the tumor microenvironment, suppress immune cell function to promote immune evasion, and induce drug resistance in tumor cells. Currently, targeting lactic acid-lactylation and its related metabolic pathways has become a new research avenue for cancer treatment. In-depth exploration of the molecular mechanisms of lactic acid metabolism can help in screening lead compounds that regulate the lactic acid metabolism.
MCE contains 582 small molecule compounds targeting enzymes involved in lactic acid metabolism. This library is of significant value for researching the role of lactate metabolism in the mechanisms of diseases.
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83
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| HY-L213 | Anti-Cancer Approved Drug Library |
The anti-cancer drug library meticulously collects all drugs approved by FDA and other major national drug regulatory authorities for cancer treatment. These drugs cover a variety of cancer types, including but not limited to lung cancer, breast cancer, colorectal cancer, leukemia, and other common cancers. The library includes a wide range of drugs, from classic chemotherapeutic agents to cutting-edge targeted therapies and immunotherapies. It contains various types of drug compounds with different mechanisms of action. There are cytotoxic drugs that directly kill cancer cells, as well as drugs that work by modulating the tumor microenvironment, inhibiting tumor angiogenesis, and activating the immune system. This diversity provides researchers with a broad range of perspectives and options for intervention strategies.
This library can be used for basic research on cancer treatment, exploring new targets and new mechanisms of drug action; Conducting drug reuse research to look for potential therapeutic effects of existing drugs on other cancer types or diseases; Or conducting research into combination drugs to optimize cancer treatment.
MCE has collected 265 small-molecule compounds with cancer indications, which are good tools for drug repurposing.
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83
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| HY-L219 | Antimicrobial Peptides Library |
Antimicrobial Peptides (AMPs), also known as antimicrobial peptides or antibiotic peptides, are a class of polypeptides encoded by specific genes in various biological cells and induced by external stimuli. They exhibit broad-spectrum bioactivity against bacteria, fungi, viruses, protozoa, and even tumor cells. AMPs serve as crucial effector molecules in the host's innate immune system.Due to their wide antimicrobial spectrum, low toxicity to normal cells of higher animals, high safety profile, low tendency to induce resistance, and additional benefits such as immune enhancement and antioxidant effects, antimicrobial peptides hold significant promise in new drug development.
MCE offers 58 types of antimicrobial peptides, which can be applied in high-throughput screening for research in anti-infection therapies, immunotherapy, anticancer drug development, and agricultural disease control.
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83
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| HY-L227 | Amino Acid Metabolite Compound Library |
Amino acids are the fundamental components that sustain life activities, playing roles in ATP generation, promoting nucleotide synthesis, and maintaining cellular redox balance. Moreover, dysregulation of amino acid consumption is a significant potential regulatory mechanism leading to impaired anti-tumor immunity in immune cells. The normal functioning of immune cells relies on amino acid metabolic pathways to obtain energy and materials, and upon activation, they reprogram their metabolism to support growth, proliferation, and effector functions. Additionally, metabolic disorders of specific amino acids (such as branched-chain amino acids, glutamine, and arginine) can exacerbate mitochondrial dysfunction and oxidative stress, thereby promoting myocardial fibrosis and cardiac cell damage. Therefore, conducting research related to amino acid metabolism holds promise for discovering potential drugs for diseases related to cancer, immunity, and metabolism.
MCE can provide 195 kinds of metabolites of amino acid metabolic pathways, which can be used for drug screening in various diseases such as cancer, immune disorders, metabolic diseases, mitochondrial-targeted diseases
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83
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| HY-L234 | Nucleotide Metabolite Compound Library |
Nucleotide metabolism is central to cancer aggressiveness, underpinning uncontrolled proliferation, chemotherapy resistance, immune evasion, and metastasis. It is transcriptionally regulated by oncogenes (e.g., MYC) and tumor suppressors (e.g., pRb). Nucleotide imbalance and nucleoside degradation further regulate cell state transitions, especially following replication stress. Additionally, secretion of nucleotides/nucleosides into the tumor microenvironment modulates immune responses and influences treatment efficacy. Therefore, nucleotide metabolites have roles in disease response and indication in cancer research, and can be utilized to develop cancer-related mechanisms and drugs.
MCE can provide 83 metabolites produced by nucleotide metabolic pathways, which can be used for disease mechanism research and drug research.
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83
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| HY-L239 | Steroid Hormones Library |
Steroid hormones (also known as steroidal hormones) are a class of tetracyclic aliphatic hydrocarbon compounds derived from cholesterol. Typical representatives of steroid hormones include cortisol, aldosterone, testosterone, estradiol, among others. These hormones serve diverse regulatory functions within the body. For instance, aldosterone helps maintain the homeostasis of extracellular fluid volume and circulating blood volume; testosterone and estradiol primarily promote the development and maturation of male and female reproductive organs and regulate reproductive functions.
MCE designs a unique collection of 71 steroid hormones. This library can be used for research related to metabolic or immune diseases, investigations into the mechanisms of action of nuclear receptor signaling pathways, as well as identification and quantitative analysis in metabolomics studies.
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83
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| HY-L249 | Lactylation Compound Library |
Protein lactylation, an emerging post-translational modification identified in recent years, plays a critical role in linking cellular metabolic reprogramming, epigenetic regulation, and signaling networks. Based on a systematic framework encompassing lactate metabolism, lactylation, and downstream signaling pathways, this compound library comprehensively targets multiple regulatory layers, including histone modification enzymes (such as p300 and HDACs), key glycolytic enzymes (such as PKM2, LDHA, and GAPDH), transcriptional regulators (such as STAT3, HMGB1, and p53), as well as central signaling pathway nodes including HIF-1α, NF-κB, and PI3K-AKT-mTOR. This integrated design enables a comprehensive representation of the regulatory roles of lactylation across the “metabolism–epigenetics–signaling” axis.
MCE has assembled a collection of 6,182 known bioactive compounds and potential functional molecules, making this library suitable for a wide range of applications, including high-throughput drug screening, inhibitor identification, and mechanistic studies. It can be used to systematically evaluate the functional roles of lactylation in biological processes such as tumor metabolism, immune regulation, and inflammatory responses, and to efficiently identify small-molecule candidates with regulatory potential, thereby facilitating the development of innovative therapeutics targeting the interplay between metabolism and epigenetic regulation.
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83
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| HY-L250 | Lactic Acid Metabolite Compound Library |
In the progression of various diseases, metabolic reprogramming has emerged as a key hallmark. Lactate, as an important metabolic signaling molecule, is widely involved in tumorigenesis, immune regulation, and inflammatory responses. Particularly within the tumor microenvironment, the abnormal accumulation of lactate not only affects cellular energy metabolism but also promotes disease progression by modulating immune cell functions and mediating protein lactylation, thereby participating in epigenetic regulation and signaling networks. Therefore, systematic investigation of lactate metabolic pathways and their associated metabolites is of great significance for understanding disease mechanisms and developing novel therapeutic strategies.
The MCE lactic acid metabolite compound library contains 61 compounds and is constructed around key metabolic pathways involving lactate production, transport, and utilization. This library systematically includes core intermediates from glycolysis, the tricarboxylic acid (TCA) cycle, and the lactate cycle. Focusing on disease-associated metabolic reprogramming, it is suitable for research in oncology, inflammation, and metabolic disorders. The library can be used to elucidate the roles of lactate in tumor microenvironment regulation, immune evasion, and epigenetic modifications (such as protein lactylation). In addition, it provides high-quality small-molecule resources for drug screening, facilitating the discovery of potential modulators targeting key enzymes (such as LDH) or transporters (such as MCTs) involved in lactate metabolism.
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83
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| HY-L252 | Carbohydrate Metabolite Compound Library |
Carbohydrate metabolism serves as a central hub for energy supply and biosynthesis in living organisms and plays a critical role in the onset and progression of various diseases. In recent years, studies have shown that tumor cells reprogram their energy metabolism through aerobic glycolysis (the Warburg effect) to support rapid proliferation. Immune cells also rely on specific carbohydrate metabolic pathways to regulate their activation and differentiation states, while disorders such as diabetes and metabolic syndrome arise directly from dysregulation of carbohydrate metabolism. In addition, enzymes and key metabolic nodes involved in carbohydrate metabolism have become important targets for drug discovery, and therapeutic strategies targeting glycolysis, the pentose phosphate pathway, and energy metabolism are continuously advancing the treatment of cancer and metabolic diseases. Therefore, systematic analysis of carbohydrate metabolic networks and their associated metabolites is of great significance for elucidating disease mechanisms and developing novel therapeutic approaches.
The MCE Carbohydrate Metabolism Metabolite Library is constructed based on classical carbohydrate metabolic pathways and contains 76 metabolites. It systematically integrates key metabolic networks, including glycolysis, the pentose phosphate pathway, the tricarboxylic acid (TCA) cycle, monosaccharide metabolism, and sugar acid interconversions. The library comprehensively covers core metabolic nodes from glucose uptake and utilization to energy production and biosynthesis, while also incorporating important upstream and downstream intermediates. It enables accurate representation of intracellular metabolic flux dynamics and is well suited for applications such as metabolic flux analysis, target validation, and mechanistic studies. Furthermore, it provides robust support for multi-omics integration and the development of precision intervention strategies.
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83
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| HY-L253 | Fungal-Sourced Compound Library |
For thousands of years, natural products have always been an important source for drug discovery. Fungi, due to their unique and diverse secondary metabolic capabilities, have become a valuable resource for natural active molecules. Since the discovery of penicillin, natural products derived from fungi have demonstrated significant application value in areas such as anti-infection, anti-tumor, immune regulation, and metabolic disease research. A large number of clinical drugs, such as antibiotics, immunosuppressants, and lipid-lowering drugs, are derived from fungal metabolites or their structurally optimized derivatives.
MCE fungal-derived compound library contains 91 structurally diverse and bioactive fungal natural products and their derivatives. It can be widely applied in various research fields such as antibacterial, anti-tumor, anti-inflammatory, immune regulation, epigenetics, and cell signaling pathways, providing high-quality tools for natural product drug development and high-throughput screening.
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83
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| HY-L263 | Energy Metabolites Library |
Energy metabolism is the most fundamental biochemical process in living organisms, encompassing glycolysis, the TCA cycle, oxidative phosphorylation, the pentose phosphate pathway, and fatty acid oxidation. These core pathways directly regulate cell survival, proliferation, differentiation, and apoptosis. Dysregulation of energy metabolism is closely linked to major diseases including cancer, diabetes, obesity, cardiovascular diseases, neurodegenerative disorders, and ischemia‑reperfusion injury. Targeting these metabolic pathways has become a frontier in drug discovery and mechanistic research.
The MCE Energy Metabolite Compound Library features 89 structurally defined small‑molecule compounds. It covers energy substrates, pathway intermediates, coenzymes and redox carriers, nucleotide derivatives, and microenvironmental modulators. This library is applicable to research areas including tumor metabolism, insulin resistance, mitochondrial dysfunction, oxidative stress, neuroprotection, and cardiometabolic diseases, providing a high‑quality tool for mechanistic studies, biomarker discovery, and high‑throughput drug screening.
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83
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| HY-16141 | Cilengitide |
Cilengitide (EMD 121974) is an integrin (integrin) inhibitor with blood-brain barrier permeability, with IC50 values against human targets as follows: 0.61 nM for αvβ3, 8.4 nM for αvβ5, 14.9 nM for α5β1, 5400 nM for αIIbβ3, 2050 nM for αvβ6, 2350 nM for αvβ8. Cilengitide inhibits the binding of integrins to vitronectin, fibronectin, fibrinogen and LAP (TGF-β), and serves as an internal standard for solid-phase integrin binding assays. Cilengitide inhibits tumor cell viability, induces apoptosis, reduces the phosphorylation levels of STAT3, AKT and mTOR, downregulates the expression of PD-L1, inhibits cell viability and angiogenesis, regulates anti-tumor immune responses and slows tumor growth. Cilengitide can be used in research related to glioblastoma, melanoma, advanced solid tumors and refractory brain tumors.
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75
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| HY-W013032 | Oxamic acid |
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73
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| HY-W013032A | Oxamic acid sodium |
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73
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| HY-18234A | Leupeptin hemisulfate |
Leupeptin hemisulfate is a broad-spectrum protease inhibitor. By inhibiting the activation of the PTEN/PI3K/Akt/NF-κB/ERK1/2/p38 signaling pathway, Leupeptin hemisulfate significantly reduces LPS-induced NO and ROS production, mitochondrial membrane potential hyperpolarization, phagocytic activity, pro-inflammatory cytokine release, and M1 polarization in mouse peritoneal macrophages, and reverses autophagic flux impairment. It also decreases Concanavalin A (HY-P2149)-induced proliferation index of mouse splenic lymphocytes and the Th1/IL-10 and Th2/IL-10 cytokine ratios, thereby modulating innate and adaptive immune responses. Leupeptin hemisulfate inhibits blood coagulation and tumorigenesis in mouse skin. Leupeptin hemisulfate can be used in research on chronic inflammatory diseases and skin tumorigenesis.
Source: Streptomyces roseus MB-26-AI |
Ser/Thr Protease
Cathepsin
Autophagy
SARS-CoV
Atg8/LC3
NO Synthase
COX
p62
Arginase
PTEN
NF-κB
PI3K
Akt
p38 MAPK
ERK
Reactive Oxygen Species (ROS)
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68
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| HY-B2227 | Lactic acid |
Lactic acid (DL-Lactic acid) is a hydroxycarboxylic acid receptor 1 (HCAR1) activator and an epigenetic modulator inducing lysine residues lactylation. Lactic acid is a glycolysis end-product, bridging the gap between glycolysis and oxidative phosphorylation. Lactic acid is an oncometabolite and has immune protective role of lactate in anti-tumor immunity. Lactic acid also has antimicrobial activity, which can be used as a food preservative.
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67
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| HY-100017 | BAY-876 |
BAY-876, a chemical probe, is an orally active and selective glucose transporter 1 (GLUT1) inhibitor with an IC50 of 2 nM. BAY-876 is >130-fold more selective for GLUT1 than GLUT2, GLUT3, and GLUT4. BAY-876 is also a potent blocker of glycolytic metabolism and ovarian cancer growth. In addition, BAY-876 can induce the formation of disulfide bonds in actin cytoskeletal proteins, leading to the occurrence of cellular disulfidptosis.
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60
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| HY-15947A | Ravoxertinib hydrochloride |
Ravoxertinib hydrochloride (GDC-0994 hydrochloride) is an orally active ERK1/2 inhibitor. Ravoxertinib hydrochloride inhibits the ERK1/2 MAPK signaling pathway and reduces the expression levels of c-Myc, HK2 and LDHA. Ravoxertinib hydrochloride decreases mammosphere formation, and exerts additive and/or superadditive cytotoxicity when combined with Ipatasertib (HY-15186) in 3D tumor sphere models. Ravoxertinib hydrochloride can be used in research related to various cancers including breast cancer, melanoma, head and neck cancer, non-small cell lung cancer, ovarian cancer and Merkel cell carcinoma.
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52
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| HY-15947 | Ravoxertinib |
Ravoxertinib (GDC-0994) is an orally active ERK1/2 inhibitor. Ravoxertinib inhibits the ERK1/2 MAPK signaling pathway and reduces the expression levels of c-Myc, HK2 and LDHA. Ravoxertinib decreases mammosphere formation, and exerts additive and/or superadditive cytotoxicity when combined with Ipatasertib (HY-15186) in 3D tumor sphere models. Ravoxertinib can be used in research related to various cancers including breast cancer, melanoma, head and neck cancer, non-small cell lung cancer, ovarian cancer and Merkel cell carcinoma.
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52
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| HY-100681 | GSK2837808A |
GSK2837808A is a potent and selective lactate dehydrogenase A (LDHA) inhibitor with IC50s of 2.6 and 43 nM for hLDHA and hLDHB, respectively.
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50
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| HY-P9904 | Atezolizumab |
Colorectal Cancer
Liver Cancer
Non-Small Cell Lung Cancer
Triple-Negative Breast Cancer
Metastatic Breast Cancer
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42
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| HY-P9902 | Pembrolizumab |
Pembrolizumab (MK-3475) is a humanized IgG4 antibody inhibiting the programmed cell death 1 (PD-1) receptor, used in cancer immunotherapy.
Species: Human |
Non-Small Cell Lung Cancer
Lung Adenocarcinoma
HER-2 Positive Breast Cancer
Triple-Negative Breast Cancer
Metastatic Breast Cancer
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37
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| HY-19992 | 3-Bromopyruvic acid |
3-Bromopyruvate (Bromopyruvic acid) is an analogue of pyruvate and a potent hexokinase (HK)-II inhibitor with high tumor selectivity. 3-Bromopyruvate inhibits cell growth and induces apoptosis through interfering with glycolysis. 3-Bromopyruvate induces autophagy by stimulating ROS formation in breast cancer cells. Antimicrobial activities.
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36
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| HY-19991 | BMS-1 |
BMS-1 is an inhibitor of the PD-1/PD-L1 protein/protein interaction (IC50 between 6 and 100 nM).
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Lung Cancer
Breast Cancer
Colorectal Cancer
Gastric Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Ovarian Cancer
Digestive System Inflammation
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34
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| HY-16214 | FX-11 |
FX-11 is a potent, selective, reversible and competitive lactate dehydrogenase A (LDHA) inhibitor, with a Ki of 8 μM. FX-11 reduces ATP levels and induces oxidative stress, ROS production and cell death. FX-11 shows antitumor activity in lymphoma and pancreatic cancer xenografts.
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33
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| HY-B1511A | Cyclic AMP sodium |
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30
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| HY-B1511 | Cyclic AMP |
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30
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| HY-W250119 | Calcium disodium edetate hydrate |
Calcium disodium edetate hydrate (EDTA disodium calcium salt hydrate) is a metal chelator and antifungal agent. Calcium disodium edetate hydrate chelates Mn2+, damages mitochondria, and interferes with carbohydrate metabolic pathways, particularly the synthesis of pyruvate in glycolysis. Calcium disodium edetate hydrate inhibits Penicillium digitatum and delays conidial germination. Calcium disodium edetate (hydrate) enhances the host defense system of citrus fruits. Calcium disodium edetate hydrate is applicable to research related to citrus green mold.
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29
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| HY-N0142 | Phloretin |
Phloretin (NSC 407292; RJC 02792) is a flavonoid extracted from Malus pumila Mill.,has anti-inflammatory activities. Phloridzin is a specific,competitive and orally active inhibitor of sodium/glucose cotransporters in the intestine (SGLT1) and kidney (SGLT2). Phloretin inhibits Yeast-made GLUT1 as well as Human erythrocyte GLUT1 with IC50values of 49 μM and 61 μM,respectively.Phloretin has the potential for the treatment of rheumatoid arthritis (RA) and allergic airway inflammation.
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29
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| HY-19745 | BMS-202 |
BMS-202 is a potent and nonpeptidic PD-1/PD-L1 complex inhibitor with an IC50 of 18 nM and a KD of 8 μM. BMS-202 binds to PD-L1 and blocks human PD-1/PD-L1 interaction. BMS-202 has antitumor activity.
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Neurological, Eye or Ear Disease
Lung Cancer
Breast Cancer
Colorectal Cancer
Gastric Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Ovarian Cancer
Digestive System Inflammation
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27
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| HY-P99144 | Anti-Mouse PD-1 Antibody (RMP1-14) |
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27
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| HY-125286 | AB-680 |
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24
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| HY-N0171A | Beta-Sitosterol (purity>98%) |
Beta-Sitosterol (purity>98%) is orally active. Beta-Sitosterol exhibits multiple activities, including anti-inflammatory, anticancer, antioxidant, antimicrobial, antidiabetic, antioxidant enzyme, and analgesic. Beta-Sitosterol inhibits inflammation and impaired adipogenesis in bovine mammary epithelial cells by reducing levels of ROS, TNF-α, IL-1β, and NF-κB p65 and restoring the activity of the HIF-1α/mTOR signaling pathway. Beta-Sitosterol induces apoptosis in cancer cells through ROS-mediated mitochondrial dysregulation and p53 activation. Beta-Sitosterol exerts its anticancer effects in cancer cells by activating caspase-3, caspase-8, and caspase-9, mediating PARP inactivation, MMP loss, altered Bcl-2-Bax ratio, and cytochrome c release. Beta-Sitosterol modulates macrophage polarization and reduces rheumatoid inflammation in mice. Beta-Sitosterol inhibits tumor growth in multiple mouse cancer models. Beta-Sitosterol can be used in the research of arthritis, lung cancer, breast cancer and other cancers, diabetes, etc.
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Bacterial
Apoptosis
Reactive Oxygen Species (ROS)
MDM-2/p53
Caspase
PARP
MMP
Bcl-2 Family
HIF/HIF Prolyl-Hydroxylase
TNF Receptor
Interleukin Related
NF-κB
mTOR
Lactate Dehydrogenase
CDK
Glutathione Peroxidase
SOD
Lung Cancer
Breast Cancer
Prostate Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Pancreatic Cancer
Ovarian Cancer
Bacterial Infection
Depression
Pain
Digestive System Inflammation
Cardiovascular Disease
Glucose Metabolism
Obesity
Lung Fibrosis
Rheumatoid Arthritis
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24
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| HY-19331 | WZB117 |
WZB117 is a glucose transporter 1 (Glut1) inhibitor, which downregulates glycolysis, induces cell-cycle arrest, and inhibits cancer cell growth in vitro and in vivo.
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23
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| HY-P9903 | Nivolumab |
Nivolumab is a programmed death receptor-1 (PD-1) blocking human IgG4 antibody to treat advanced (metastatic) non-small cell lung cancer.
Species: Human |
Non-Small Cell Lung Cancer
Lung Adenocarcinoma
Triple-Negative Breast Cancer
Metastatic Breast Cancer
SARS-CoV-2 Infection
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23
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| HY-A0181A | Adenosine 5'-monophosphate monohydrate |
Cancer
Neurological, Eye or Ear Disease
Metabolic or Endocrine Disease
Viral Infection
SARS-CoV-2 Infection
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22
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| HY-W011012 | Adenosine 5'-monophosphate disodium |
Adenosine 5'-monophosphate disodium is an orally active purine nucleotide, and participates in ATP metabolism. Adenosine 5'-monophosphate disodium is also a ligand for adenosine 2B receptor. Adenosine 5'-monophosphate disodium can activate AMPK in skeletal muscle, and ameliorates insulin resistance and impaired glucose metabolism. Adenosine 5'-monophosphate disodium can be used for research of diabetes.
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22
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| HY-A0181 | Adenosine monophosphate |
Cancer
Neurological, Eye or Ear Disease
Metabolic or Endocrine Disease
Viral Infection
SARS-CoV-2 Infection
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22
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| HY-W000450 | 5-Aminolevulinic acid |
5-Aminolevulinic acid (5-ALA; δ-Aminolevulinic acid; 5-Amino-4-oxopentanoic acid) is an orally active heme precursor. 5-Aminolevulinic acid promotes aerobic energy metabolism and increases ATP levels by enhancing the activity of cytochrome c oxidase. 5-Aminolevulinic acid enhances LPS-induced proinflammatory cytokine production and gene activation, and restores the phagocytic activity and ROS generation capacity of neutrophils. 5-Aminolevulinic acid selectively accumulates protoporphyrin IX in tumor cells; as a photosensitizer and radiosensitizer, it induces ROS burst upon light or X-ray irradiation to inhibit tumor growth. 5-Aminolevulinic acid can be applied to the research of septic shock, melanoma, and cancer radiotherapy.
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21
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| HY-N0305 | 5-Aminolevulinic acid hydrochloride |
5-Aminolevulinic acid (5-ALA; δ-Aminolevulinic acid; 5-Amino-4-oxopentanoic acid) hydrochloride is an orally active heme precursor. 5-Aminolevulinic acid hydrochloride promotes aerobic energy metabolism and increases ATP levels by enhancing the activity of cytochrome c oxidase. 5-Aminolevulinic acid hydrochloride enhances LPS-induced proinflammatory cytokine production and gene activation, and restores the phagocytic activity and ROS generation capacity of neutrophils. 5-Aminolevulinic acid hydrochloride selectively accumulates protoporphyrin IX in tumor cells; as a photosensitizer and radiosensitizer, it induces ROS burst upon light or X-ray irradiation to inhibit tumor growth. 5-Aminolevulinic acid hydrochloride can be applied to the research of septic shock, melanoma, and cancer radiotherapy.
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Metabolic or Endocrine Disease
Colorectal Cancer
Melanoma
Digestive System Inflammation
Glioblastoma
Alzheimer's Disease
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21
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| HY-B2227D | Calcium 2-hydroxypropanoate pentahydrate |
Calcium 2-hydroxypropanoate (pentahydrate) is a hydroxycarboxylic acid receptor 1 (HCAR1) activator and an epigenetic modulator inducing lysine residues lactylation. Calcium 2-hydroxypropanoate (pentahydrate) is a glycolysis end-product, bridging the gap between glycolysis and oxidative phosphorylation. Calcium 2-hydroxypropanoate (pentahydrate) is an oncometabolite and has immune protective role of lactate in anti-tumor immunity.
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20
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| HY-W010968 | 5'-Adenylic acid sodium hydrate |
5'-Adenylic acid (sodium hydrate) (A-5'-P (sodium hydrate); AMP (sodium hydrate); Adenosine 5'-monophosphate (sodium hydrate)) is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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20
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| HY-100742A | (R)-GNE-140 |
(R)-GNE-140 is a potent inhibitor of lactate dehydrogenase (LDH) A, B and C, with IC50 values of 3, 5 and 5 nM against LDHA, LDHB, LDHC, respectively. (R)-GNE-140 blocks the conversion of pyruvate to lactate, reduces lactate production and histone lysine lactylation, and inhibits glycolysis. (R)-GNE-140 attenuates cardiac hypertrophy, alleviates PM2.5-induced pulmonary inflammation and fibrosis, blocks MRSA-induced Arg1 expression. (R)-GNE-140 is applicable to research related to pathological cardiac hypertrophy, pulmonary fibrosis, MRSA infection and pancreatic cancer.
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Inflammation or Immune System Disease
Blood or Cardio-cerebrovascular Disease
Breast Cancer
Bacterial Infection
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20
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| HY-P99145 | Anti-Mouse PD-L1/B7-H1 Antibody (10F.9G2) |
Anti-Mouse PD-L1/B7-H1 Antibody (10F.9G2) is an anti-mouse PD-L1/B7-H1 IgG2b antibody inhibitor derived from host rat. Anti-Mouse PD-L1/B7-H1 Antibody (10F.9G2) blocks PD-1 signaling. Anti-Mouse PD-L1/B7-H1 Antibody (10F.9G2) can be used for the research of cancer, such as colon cancer.
Species: Mouse |
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20
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| HY-B0486 | Lonidamine |
Lonidamine (AF-1890) is a hexokinase and mitochondrial pyruvate carrier inhibitor (Ki: 2.5 μM). Lonidamine also inhibits aerobic glycolysis in cancer cells. Lonidamine can be used in the research of mitochondrial metabolism and inflammation, such as pulmonary fibrosis.
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19
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| HY-N0143 | Phlorizin |
Phlorizin (Floridzin) is an orally active non-selective sodium-glucose cotransporter (SGLT) inhibitor, with an IC50 of 0.04 μM and a Ki of 39 nM against hSGLT2, and an IC50 of 0.17 μM and a Ki of 0.31 μM against hSGLT1. Phlorizin promotes GLUT4 translocation, inhibits gluconeogenesis and promotes glycogen synthesis by activating the PI3K/Akt/mTOR pathway. Phlorizin reduces DNA damage and apoptosis (apoptosis) by inhibiting the NF-κB inflammatory pathway. Phlorizin induces apoptosis via activating the Caspase pathway by antagonizing the JAK/STAT3 and PCK pathways. Phlorizin also exhibits antibacterial, anti-inflammatory and neuroprotective activities.
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18
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| HY-19533 | SCH 58261 |
SCH 58261 is a potent, selective and competitive antagonist of adenosine A2A receptor with an IC50 of 15 nM, and displays 323-, 53- and 100-fold more selective for A2A receptor than A1, A2B, and A3 receptors, respectively.
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18
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| HY-W040118 | Galloflavin |
Galloflavin is a potent lactate dehydrogenase (LDH) inhibitor. The calculated Kis for pyruvate are 5.46 μM (LDH-A) and 15.06 μM (LDH-B). Galloflavin hinders the proliferation of cancer cells by blocking glycolysis and ATP production.
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18
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| HY-W015913 | Pyruvic acid sodium |
Sodium 2-oxopropanoate (Sodium pyruvate), a three-carbon metabolite of Glucose, is a compound produced in the glycolytic pathway. Sodium 2-oxopropanoate is a free radical scavenger that can scavenge ROS.
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18
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| HY-B0228 | Adenosine |
Adenosine (Adenine riboside), a ubiquitous and BBB-permeable endogenous autacoid, acts through the enrollment of four G protein-coupled receptors: A1, A2A, A2B, and A3. Adenosine affects almost all aspects of cellular physiology, including neuronal activity, vascular function, platelet aggregation, and blood cell regulation.
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18
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| HY-10888 | Istradefylline |
Istradefylline is a very potent, selective and orally active adenosine A2A receptor antagonist with Ki of 2.2 nM in experimental models of Parkinson's disease.
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16
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| HY-19532 | ZM241385 |
ZM241385 is a potent, high affinity and selective adenosine A2a receptor (A2AR) antagonist with a Ki value of 1.4 nM.
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16
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| HY-N0092 | Inosine |
Cancer
Neurological, Eye or Ear Disease
Inflammation or Immune System Disease
Viral Infection
SARS-CoV-2 Infection
Lung Fibrosis
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16
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| HY-13201A | CGS 21680 Hydrochloride |
CGS 21680 Hydrochloride is a selective adenosine A2A receptor agonist with a Ki of 27 nM.
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14
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| HY-B0809 | Theophylline |
Theophylline (1,3-Dimethylxanthine) is a potent phosphodiesterase (PDE) inhibitor, adenosine receptor antagonist, and histone deacetylase (HDAC) activator. Theophylline (1,3-Dimethylxanthine) inhibits PDE3 activity to relax airway smooth muscle. Theophylline (1,3-Dimethylxanthine) has anti-inflammatory activity by increase IL-10 and inhibit NF-κB into the nucleus. Theophylline (1,3-Dimethylxanthine) induces apoptosis. Theophylline (1,3-Dimethylxanthine) can be used for asthma and chronic obstructive pulmonary disease (COPD) research.
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Phosphodiesterase (PDE)
Adenosine Receptor
HDAC
Apoptosis
Interleukin Related
TNF Receptor
Endogenous Metabolite
Breast Cancer
Colorectal Cancer
Cervical Cancer
Bladder Cancer
Depression
Digestive System Inflammation
Non-Small Cell Lung Cancer
Castration-Resistant Prostate Cancer
SARS-CoV-2 Infection
Alzheimer's Disease
Parkinson's Disease
Chronic Obstructive Pulmonary Disease
Asthma
Lung Fibrosis
Rheumatoid Arthritis
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14
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| HY-N0430 | Coptisine |
Coptisine is an orally active and brain-penetrant alkaloid found in Coptis chinensis. Coptisine is a reversible, uncompetitive IDO inhibitor with a Ki of 5.8 μM and an IC50 of 6.3 μM. Coptisine suppresses neuroinflammation, reduces Aβ plaque burden and shows neuroprotective activity. Coptisine shows anti-inflammation activity by blocking NF-κB, MAPK, and PI3K/Akt activation. Coptisine inhibits cancer cells proliferation, induces DNA damage, G2/M phase cell cycle arrest, apoptosis, ROS production and mitochondrial dysfunction. Coptisine inhibits Rho/ROCK pathway activation, reduces arrhythmia, limits cardiac injury marker release, reduces infarct size, and preserves cardiac function in rat myocardial ischemia/reperfusion models. Coptisine downregulates HMGCR and upregulates LDLR and CYP7A1 to modulate cholesterol metabolism, reduces abnormal serum lipid levels, and promotes fecal bile acid excretion. Coptisine can be used for the research of cancer, hypercholesterolemia, Alzheimer’s disease, inflammatory disorders and cardiovascular disease.
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Indoleamine 2,3-Dioxygenase (IDO)
NF-κB
p38 MAPK
PI3K
Akt
Apoptosis
Reactive Oxygen Species (ROS)
Mitochondrial Metabolism
DNA/RNA Synthesis
ROCK
LDLR
Cancer
Neurological, Eye or Ear Disease
Inflammation or Immune System Disease
Blood or Cardio-cerebrovascular Disease
Metabolic or Endocrine Disease
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12
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| HY-101979A | Numidargistat dihydrochloride |
Numidargistat (CB-1158) dihydrochloride is a potent and orally active inhibitor of arginase, with IC50s of 86 nM and 296 nM for recombinant human arginase 1 and recombinant human arginase 2, respectively. Immuno-oncology agent.
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12
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| HY-101979 | Numidargistat |
Numidargistat (CB-1158) is a potent and orally active inhibitor of arginase, with IC50s of 86 nM and 296 nM for recombinant human arginase 1 and recombinant human arginase 2, respectively. Immuno-oncology agent.
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12
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| HY-N0517 | Erianin |
Erianin, often used as an antipyretic and analgesic agent, could inhibit IDO-induced tumor angiogenesis.
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12
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| HY-N0110A | Palmatine |
Palmatine is an orally active and irreversible indoleamine 2,3-dioxygenase 1 (IDO-1) inhibitor with IC50s of 3 μM and 157μM against HEK 293-hIDO-1 and rhIDO-1, respectively. Palmatine can also inhibit West Nile virus (WNV) NS2B-NS3 protease in an uncompetitive manner with an IC50 of 96 μM. Palmatine shows anti-cancer, anti-oxidation, anti-inflammatory, neuroprotection, antibacterial, anti-viral activities.
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Infection
Neurological, Eye or Ear Disease
Inflammation or Immune System Disease
Metabolic or Endocrine Disease
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11
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| HY-N0110 | Palmatine chloride |
Palmatine chloride is an orally active and irreversible indoleamine 2,3-dioxygenase 1 (IDO-1) inhibitor with IC50s of 3 μM and 157μM against HEK 293-hIDO-1 and rhIDO-1, respectively. Palmatine chloride can also inhibit West Nile virus (WNV) NS2B-NS3 protease in an uncompetitive manner with an IC50 of 96 μM. Palmatine chloride shows anti-cancer, anti-oxidation, anti-inflammatory, neuroprotection, antibacterial, anti-viral activities.
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Neurological, Eye or Ear Disease
Metabolic or Endocrine Disease
Digestive System Disease
Leukemia/Lymphoma/Myeloma
Viral Infection
Bacterial Infection
Parasitic Infection
Digestive System Inflammation
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11
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| HY-W074143 | Tris(4,7-diphenyl-1,10-phenanthroline)ruthenium(II) dichloride |
Tris(4,7-diphenyl-1,10-phenanthroline)ruthenium(II) dichloride ([Ru(dpp)3]2+) is an electrochemiluminescent (ECL) probe and oxygen-sensitive sensor. Tris(4,7-diphenyl-1,10-phenanthroline)ruthenium(II) dichloride can be used to modify electrode surfaces for the detection of sulfates (S2O82-) and oxalates, based on electrochemical reactions that generate excited-state species, releasing photons through irreversible redox reactions. Tris(4,7-diphenyl-1,10-phenanthroline)ruthenium(II) dichloride utilizes the oxygen quenching of fluorescence mechanism, where fluorescence intensity reflects the metabolic rate of living microorganisms or oxygen levels within cells/tumors, allowing for real-time detection. Tris(4,7-diphenyl-1,10-phenanthroline)ruthenium(II) dichloride's main applications include microbial detection, antibacterial activity studies, and tumor microenvironment research.
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11
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| HY-D0199 | Adenosine 5'-diphosphate disodium |
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10
|
|
| HY-B1352 | L-Ornithine |
L-Ornithine ((S)-2,5-Diaminopentanoic acid) is a non-proteinogenic amino acid, is mainly used in urea cycle removing excess nitrogen in vivo. L-Ornithine shows nephroprotective.
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10
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| HY-16938 | 5'-Methylthioadenosine |
5'-Methylthioadenosine (5'-(Methylthio)-5'-deoxyadenosine) is a nucleoside generated from S-adenosylmethionine (SAM) during polyamine synthesis. 5'-Methylthioadenosine suppresses tumors by inhibiting tumor cell proliferation, invasion, and the induction of apoptosis while controlling the inflammatory micro-environments of tumor tissue. 5'-Methylthioadenosine and its associated materials have striking regulatory effects on tumorigenesis.
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Cancer
Metabolic or Endocrine Disease
Digestive System Disease
Parasitic Infection
Digestive System Inflammation
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10
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| HY-W010918 | Adenosine 5'-diphosphate |
Adenosine 5'-diphosphate (Adenosine diphosphate) is a nucleoside diphosphate. Adenosine 5'-diphosphate is the product of ATP dephosphorylation by ATPases. Adenosine 5'-diphosphate induces human platelet aggregation and inhibits stimulated adenylate cyclase by an action at P2T-purinoceptors.
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10
|
| HY-N6653 | Lentinan |
Lentinan is an orally active biocompatible multifunctional polysaccharide with biological activities such as anti-inflammatory, antioxidant, immune regulation, anti-tumor, hypoglycemic, and lipid-lowering.
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9
|
| HY-100937 | DPCPX |
DPCPX (PD 116948), a xanthine derivative, is a highly potent and selective Adenosine A1 receptor antagonist, with a Ki of 0.46 nM in 3H-CHA binding to A1 receptors in rat whole brain membranes.
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9
|
| HY-15775 | Arginase inhibitor 1 |
Arginase inhibitor 1 is a potent inhibitor of human arginases I and II with IC50s of 223 and 509 nM, respectively.
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8
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| HY-147216 | AXKO-0046 |
AXKO-0046, indole derivative, is an uncompetitive Lactate dehydrogenase B (LDHB) selective inhibitor.AXKO-0046 has LDHB inhibitory activity with an EC50 value of 42 nM.AXKO-0046 can be used for the research of cancer metabolism.
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8
|
| HY-N0002 | (-)-Epicatechin gallate |
Cancer
Digestive System Disease
Viral Infection
Digestive System Inflammation
SARS-CoV-2 Infection
Rheumatoid Arthritis
|
8
|
|
| HY-103173 | 5'-N-Ethylcarboxamidoadenosine |
5'-N-Ethylcarboxamidoadenosine (NECA) is a nonselective adenosine receptor agonist.
|
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8
|
| HY-112885B | nor-NOHA monoacetate |
nor-NOHA monoacetate is a selective and reversible arginase inhibitor. nor-NOHA monoacetate induces apoptosis in ARG2-expressing cells under hypoxia. nor-NOHA monoacetate has anti-leukemic activity. nor-NOHA monoacetate can used in study of endothelial dysfunction, immunosuppression and metabolism.
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Cancer
Infection
Inflammation or Immune System Disease
Metabolic or Endocrine Disease
Cardiovascular Disease
|
7
|
| HY-P9919 | Durvalumab |
Gastric Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Non-Small Cell Lung Cancer
Lung Adenocarcinoma
Triple-Negative Breast Cancer
Metastatic Breast Cancer
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7
|
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| HY-N9933 | Tauro-β-muricholic acid |
Tauro-β-muricholic acid (TβMCA) is an orally active trihydroxylated bile acid and a competitive, reversible FXR antagonist (IC50=40 μM). Tauro-β-muricholic acid inhibits bile acid-induced hepatocyte apoptosis by maintaining mitochondrial membrane potential, while simultaneously inhibiting intestinal FXR signaling, affecting bile acid synthesis, hepatic lipid metabolism, and insulin sensitivity. Accumulation of tauro-β-muricholic acid disrupts metabolic homeostasis, promoting cancer stem cell proliferation and tumor progression. The mechanisms of tauro-β-muricholic acid involve two aspects: first, inhibiting the translocation of the pro-apoptotic protein Bax to mitochondria and maintaining mitochondrial membrane potential (MMP); and second, blocking the FXR signaling pathway to regulate bile acid metabolism, reduce serum ceramide production, and downregulate the hepatic SREBP1C/CIDEA pathway. Tauro-β-muricholic acid possesses anti-hepatocyte apoptosis, bile acid homeostasis regulation, and liver fat accumulation reduction properties, and also functions as a biomarker, making it useful in the study of diseases such as bile acid metabolism disorders, non-alcoholic fatty liver disease, colorectal cancer, and liver fibrosis.
Source: rat |
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6
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| HY-N0587 | Demethylzeylasteral |
Demethylzeylasteral is an orally active triterpenoid compound isolated from Tripterygium wilfordii, which has functions such as anti-inflammatory, anti-tumor, anti fertility, estrogen metabolism regulation, immune suppression, and immune system regulation .
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Colorectal Cancer
Prostate Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Pancreatic Cancer
Ovarian Cancer
Depression
Pain
Digestive System Inflammation
Cardiovascular Disease
Triple-Negative Breast Cancer
Obesity
Lung Fibrosis
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6
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| HY-145597 | KL-11743 |
KL-11743 is a potent, orally active, and glucose-competitive inhibitor of the class I glucose transporters, with IC50s of 115, 137, 90, and 68 nM for GLUT1, GLUT2, GLUT3, and GLUT4, respectively. KL-11743 specifically blocks glucose metabolism. KL-11743 can synergize with electron transport inhibitors to induce cell death. In addition, KL-11743 can induce the formation of disulfide bonds in actin cytoskeletal proteins, leading to the occurrence of cellular disulfidptosis.
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6
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| HY-N0717 | L-Valine |
L-Valine ((S)-Valine) is a nonlinear semiorganic material. L-Valine causes lipid peroxidation and accumulation of malondialdehyde (MDA), exhibits inhibitory activity against cyanobacteria. L-Valine inhibits multidrug-resistant bacteria through activation of PI3K/Akt signaling pathway and inhibition of arginase.
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Breast Cancer
Pancreatic Cancer
Bacterial Infection
Depression
Pain
Digestive System Inflammation
SARS-CoV-2 Infection
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6
|
| HY-100747 | PSB-12379 |
PSB-12379, a nucleotide analogue, is a potent Ecto-5'-Nucleotidase (CD73) inhibitor with Kis of 9.03 nM (rat) and 2.21 nM (human).
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5
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| HY-P2764 | Apyrase |
Apyrase is an Nucleoside triphosphate diphosphohydrolase (NTPDase). Apyrase can hydrolyze extracellular adenosine triphosphate (ATP) and adenosine diphosphate (ADP). Apyrase can inhibit Stx2 toxin release of enterohemorrhagic Escherichia coli (EHEC) infection and protect the intestinal barrier function. Apyrase can be used for the research of infection and inflammation, such as hemorrhagic colitis.
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|
5
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| HY-103265D | ARL67156 triethylamine |
ARL67156 (FPL 67156) triethylamine is a selective small is a selective samll molecular inhibitor, targeting to ecto-ATPase, CD39, and CD73. ARL67156 triethylamine is also a competitive inhibitor of NTPDase1 (CD39), NTPDase3 and NPP1, with Kis of 11, 18 and 12 μM, respectively. ARL67156 triethylamine can be used in the research of disease like calcific aortic valve disease, asthma.
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4
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| HY-103265B | ARL67156 trisodium hydrate |
ARL67156 (FPL 67156) trisodium hydrate is a selective small is a selective samll molecular inhibitor, targeting to ecto-ATPase, CD39, and CD73. ARL67156 trisodium hydrate is also a competitive inhibitor of NTPDase1 (CD39), NTPDase3 and NPP1, with Kis of 11, 18 and 12 μM, respectively. ARL67156 trisodium hydrate can be used in the research of disease like calcific aortic valve disease, asthma.
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4
|
| HY-P99129 | Anti-Mouse CD8a Antibody (53-6.7) |
Anti-Mouse CD8a Antibody (53-6.7) is an anti-mouse CD8a IgG2a antibody inhibitor derived from host Rat. Anti-Mouse CD8a Antibody (53-6.7) binds to CD8αβ stabilizes a conformation with a higher affinity for interaction with MHC class I. Anti-Mouse CD8a Antibody (53-6.7) induces the phosphorylation and activation of TCR proximal signaling pathway components Lck and ZAP70 in polyclonal memory T cells. Anti-Mouse CD8a Antibody (53-6.7) depletes CD8+ T cells and neutralizes cytokine in mice.
Species: Mouse |
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4
|
| HY-116522 | AR420626 |
AR420626 is a selective agonist of free fatty acid receptor 3 (FFAR3) (IC50=117 nM). AR420626 has anti-inflammatory, anticancer and antidiabetic activities. AR420626 improves neurogenic diarrhea by inhibiting nAChR mediated neural pathways. AR420626 inhibits the growth of HepG2 xenografts and inhibits the proliferation of hepatoma cells by inducing apoptosis. AR420626 also suppresses allergic asthma and eczema and has the ability to activate GPR41 to increase Ca2+ signal-mediated glucose uptake and improve diabetes.
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Free Fatty Acid Receptor
Histone Methyltransferase
HDAC
mTOR
CaMK
p38 MAPK
Epigenetic Reader Domain
GLUT
nAChR
TNF Receptor
Lung Cancer
Breast Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Pancreatic Cancer
Depression
Pain
Autoimmune Disease
Digestive System Inflammation
Glucose Metabolism
Parkinson's Disease
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4
|
| HY-103265 | ARL67156 trisodium |
ARL67156 (FPL 67156) trisodium is a selective small molecular inhibitor, targeting to ecto-ATPase, CD39, and CD73. ARL67156 trisodium is also a competitive inhibitor of NTPDase1 (CD39), NTPDase3 and NPP1, with Kis of 11, 18 and 12?μM, respectively. ARL67156 trisodium can be used in the research of calcific aortic valve disease, asthma.
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|
4
|
| HY-113081 | 1-Methyladenosine |
1-Methyladenosine is an RNA modification that can serve as a tumor marker, with elevated levels in the body associated with cancer development. Following 1-methyladenosine methylation, upregulation of PPARδ expression regulates cholesterol metabolism and activates Hedgehog signaling pathway, driving liver tumorigenesis.
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4
|
| HY-P0073 | Tyr-Gly-Gly-Phe-Met-OH |
Tyr-Gly-Gly-Phe-Met-OH regulates human immune function and inhibits tumor growth via binding to the opioid receptor.
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4
|
| HY-N5034 | Phosphorylethanolamine |
Phosphorylethanolamine (Monoaminoethyl phosphate) is a membrane phospholipid and an important precursor of Phosphatidylcholine (HY-N18891). It is found in most animal tissues and various human extracranial tumors, playing a critical role in membrane integrity, cell division, mitochondrial respiratory function, and more. Studies have shown that changes in the abundance of Phosphorylethanolamine are associated with Alzheimer's disease and Parkinson's disease. Lowering the ratio of Phosphorylethanolamine to Phosphatidylcholine in the liver can improve insulin signaling. Phosphorylethanolamine holds promise for research in the fields of cancer, neurodegenerative disorders, and metabolic diseases.
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4
|
| HY-Y0520 | Itaconic acid |
Itaconic acid, a precursor of polymers, chemicals, and fuels, can be synthesized by many fungi. Itaconic acid also is a macrophage-specific metabolite. Itaconic acid mediates crosstalk between macrophage metabolism and peritoneal tumors. Itaconic acid has anti-inflammatory, anti-microbial and immunomodulatory effect.
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4
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| HY-112537A | D-Glucose 6-phosphate dipotassium |
D-Glucose 6-phosphate dipotassium is a key central node metabolite in glucose metabolism. It serves as the initiating metabolite for glycolysis and the pentose phosphate pathway, as well as a substrate for glycogen synthesis. D-Glucose 6-phosphate dipotassium acts as a metabolic stress signal, which activates the mTOR pathway to promote protein synthesis, especially when phosphoglucose isomerase (PGI) is inhibited, thereby participating in cardiac remodeling processes. D-Glucose 6-phosphate dipotassium can be used in research related to non-insulin-dependent diabetes mellitus and heart failure.
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3
|
| HY-B1180 | Vinburnine |
Vinburnine ((-)-Eburnamonine; (-)-Vincamone) is an orally active, blood-brain barrier permeable immunomodulator and apoptosis inducer. Vinburnine drives the secretion of IL-24 by activating the P38/MAPK/ATF3 signaling axis. Vinburnine induces reactive oxygen species production and DNA damage in cancer cells, thereby inhibiting cancer cell proliferation, activating the apoptotic cascade, and enhancing CD8+ T cell function to remodel the tumor immune microenvironment. Vinburnine can be used in the research of diseases such as melanoma.
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3
|
| HY-B0153A | Ticlopidine hydrochloride |
Ticlopidine (PCR 5332) hydrochloride, an antithrombotic proagent, acts as an allosteric, noncompetitive inhibitor of CD39 with the IC50 of 81.7 μM. Ticlopidine hydrochloride blocks several NTPDase isoenzymes with IC50s of 170 μM and 149 μM for NTPDase2 and NTPDase3, respectively. Ticlopidine hydrochloride is an inhibitor of CYP2C19 human liver cytochrome. Ticlopidine hydrochloride inhibits CYP2C9 and CYP3A4 with IC50s of 26.0 and 32.3 μM, respectively.
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3
|
| HY-113486 | Lathosterol |
Lathosterol is a plant sterol and cholesterol-like molecule. Lathosterol increases antioxidant enzymes (such as SOD, CAT, and GSH) and decreases LDH. Lathosterol has a hepatoprotective effect on mice with acetaminophen (HY-66005)-induced liver injury[1].
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3
|
| HY-100386 | Ticlopidine |
Ticlopidine (PCR 5332), an antithrombotic proagent, acts as an allosteric, noncompetitive inhibitor of CD39 with the IC50 of 81.7 μM. Ticlopidine blocks several NTPDase isoenzymes with IC50s of 170 μM and 149 μM for NTPDase2 and NTPDase3, respectively. Ticlopidine is an inhibitor of CYP2C19 human liver cytochrome. Ticlopidine inhibits CYP2C9 and CYP3A4 with IC50s of 26.0 and 32.3 μM, respectively.
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3
|
| HY-W010936 | Nitrobenzylthioinosine |
Nitrobenzylthioinosine is an ENT1 transporter inhibitor that binds to ENT1 transporter with high affinity. Nitrobenzylthioinosine is a photoaffinity probe for adenosine uptake sites in brain. Nitrobenzylthioinosine can cross the blood-brain barrier.
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3
|
| HY-P1723A | Spexin TFA |
Spexin (Neuropeptide Q) TFA is a selective agonist of galanin receptors GAL2 and GAL3, and is a conserved peptide that functions as a neurotransmitter/neuromodulator and endocrine factor. Spexin TFA can function through both central and peripheral actions. Spexin TFA upregulates Beclin 1 to inhibit ferroptosis induced by excessive autophagy, reduces the uptake of long-chain fatty acids by adipocytes, and regulates energy metabolism by increasing lipid oxidation (e.g., reducing the respiratory exchange ratio in rodents). Spexin TFA improves cardiac function in the Doxorubicin hydrochloride (HY-15142)-induced cardiotoxicity model, protects mitochondrial membrane potential, and reduces iron accumulation and lipid peroxidation. Spexin TFA can be used to study obesity and its related metabolic disorders, cardiovascular diseases (e.g., cardioprotection), and side effects of tumor chemotherapy.
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2
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| HY-113049A | Phosphoenolpyruvic acid trisodium |
Phosphoenolpyruvic acid (Phosphoenolpyruvate) trisodium is a glycolysis metabolite with a high-energy phosphate group. Phosphoenolpyruvic acid trisodium is involved in glycolysis and gluconeogenesis, and used as energy source to produce ATP, under the energy-limited conditions. Phosphoenolpyruvic acid trisodium also exhibits cytoprotective and anti-oxidative properties.
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2
|
| HY-111334 | Brassinin |
Brassinin is an indole derivative found in cruciferous plants. Brassinin acts as an IDO inhibitor (Ki = 97.7 μM). Brassinin inhibits angiogenesis and induces apoptosis, autophagy, paraptosis, ROS production, and ER stress. Brassinin selectively stimulates lysosomal degradation of Tie2 and promotes lysosomal and proteasomal degradation of FGFR1 in endothelial cells, downregulating AKT and ERK phosphorylation. Brassinin inhibits endothelial cell proliferation, migration, tube formation, spheroid sprouting, and angiogenesis. Brassinin inhibits PI3K/Akt/mTOR/S6K1 signaling, upregulates p21 and p27, and induces G1 phase cell cycle arrest through RB hypophosphorylation. Brassinin inhibits tyrosinase catalytic activity, reduces tyrosinase mRNA, and inhibits MITF nuclear translocation. Brassinin is used for research on triple-negative breast cancer, chronic myeloid leukemia, colon cancer, glioma, atherosclerosis, and skin cancer.
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Endogenous Metabolite
Indoleamine 2,3-Dioxygenase (IDO)
Apoptosis
Autophagy
Paraptosis
Reactive Oxygen Species (ROS)
Tie
Akt
PERK
PI3K
mTOR
Ribosomal S6 Kinase (RSK)
Colorectal Cancer
Glioma
Skin Disease
Triple-Negative Breast Cancer
Chronic Myelogenous Leukemia
Atherosclerosis
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2
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| HY-W011704 | Phosphoenolpyruvic acid cyclohexylammonium salt |
Phosphoenolpyruvic acid (Phosphoenolpyruvate) cyclohexylammonium salt is a glycolysis metabolite with a high-energy phosphate group. Phosphoenolpyruvic acid cyclohexylammonium salt is involved in glycolysis and gluconeogenesis, and used as energy source to produce ATP, under the energy-limited conditions. Phosphoenolpyruvic acid cyclohexylammonium salt also exhibits cytoprotective and anti-oxidative properties.
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2
|
| HY-N2237 | Piceatannol 3'-O-glucoside |
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2
|
|
| HY-P1723 | Spexin |
Spexin (Neuropeptide Q) is a selective agonist of galanin receptors GAL2 and GAL3, and is a conserved peptide that functions as a neurotransmitter/neuromodulator and endocrine factor. Spexin can function through both central and peripheral actions. Spexin upregulates Beclin 1 to inhibit ferroptosis induced by excessive autophagy, reduces the uptake of long-chain fatty acids by adipocytes, and regulates energy metabolism by increasing lipid oxidation (e.g., reducing the respiratory exchange ratio in rodents). Spexin improves cardiac function in the Doxorubicin hydrochloride (HY-15142)-induced cardiotoxicity model, protects mitochondrial membrane potential, and reduces iron accumulation and lipid peroxidation. Spexin can be used to study obesity and its related metabolic disorders, cardiovascular diseases (e.g., cardioprotection), and side effects of tumor chemotherapy.
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2
|
| HY-P99463 | Batiraxcept |
Batiraxcept (AVB-500; AVB-S6-500) is a selective, soluble AXL receptor and GAS6 inhibitor that targets the GAS6-AXL signaling axis. Batiraxcept is orally inactive and does not cross the blood-brain barrier. Batiraxcept competitively binds to GAS6 ((KD <1 nM), preventing its interaction with the AXL receptor tyrosine kinase, thereby inhibiting downstream PI3K/AKT and MAPK signaling pathways, reducing tumor cell glycolysis, angiogenesis, and metastatic potential. Batiraxcept has demonstrated antitumor activity in preclinical models of endometrial, cholangiocarcinoma, and ovarian cancer by inhibiting tumor growth, invasion, and metastasis.
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2
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| HY-N6985 | Baccatin III |
Baccatin III is an orally available, selective inhibitor of the TGF-β1 signaling pathway and myeloid-derived suppressor cell (MDSC) activation. Baccatin III targets the AKT/STAT6 and Smad2/3 pathways, blocking TGF-β1-induced fibroblast differentiation and MDSC-mediated immunosuppression. Baccatin III exerts anti-inflammatory and anti-fibrotic effects by inhibiting macrophage activation and extracellular matrix deposition, and shows potential in the treatment of pulmonary fibrosis and cancer in terms of regulating the tumor immune microenvironment.
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2
|
| HY-134929 | Benitrobenrazide |
Benitrobenrazide (BNBZ) is the orally active inhibitor for hexokinase 2 with an IC50 of 0.53 µM. Benitrobenrazide causes DNA damage, and exhibits antitumor effect.
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2
|
| HY-P99051 | Tinurilimab |
Tinurilimab (Bay 1834942) is an anti-CEACAM6 (carcinoembryonic antigen-related cell adhesion molecule 6) humanized IgG2 monoclonal antibody. CEACAM6 is an immune checkpoint regulator suppressing the activity of effector T-cells against tumors. Tinurilimab shows an increased tumor cell killing effect in the tumor-cell/T-cell co-culture system.
Species: Human |
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2
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| HY-155008 | PROTAC HK2 Degrader-1 |
PROTAC HK2 Degrader-1 is a PROTAC consisting of Lonidamine (HY-B0486) as a target protein Hexokinase 2 (HK2) inhibitor and Thalidomide (HY-14658) as a CRBN ligand-linked PROTAC. PROTAC HK2 Degrader-1 selectively inhibits the proliferation of breast cancer cells by forming a ternary complex through the ubiquitin-proteasome system to degrade Hexokinase 2 (HK2) protein leading to mitochondrial damage and cell death. PROTAC HK2 Degrader-1 effectively inhibits breast tumor growth and reduces the colonic side effects of cisplatin for breast cancer research.
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2
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| HY-P1925A | GO-203 TFA |
GO-203 TFA is a potent MUC1-C oncoprotein inhibitor. GO-203 TFA is an all D-amino acid peptide that consists of a poly-R transduction domain linked to a CQCRRKN motif that binds to the MUC1-C cytoplasmic tail and blocks MUC1-C homodimerization. GO-203 TFA downregulates TIGAR (TP53-induced glycolysis and apoptosis regulator) protein synthesis by inhibiting the PI3K-AKT-S6K1 pathway. GO-203 TFA induces the production of ROS and loss of mitochondrial transmembrane potential. GO-203 TFA inhibits the growth of colon cancer cells in vitro and as xenografts in nude mice.
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2
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| HY-N9470 | λ-Carrageenan |
λ-Carrageenan is a seaweed polysaccharide which has been generally used as proinflammatory agent in the basic research. λ-Carrageenan is a potent antitumor agent.
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2
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| HY-W145521 | β-1,3-Glucan |
β-1,3-Glucan (β Glucan) is an orally active polysaccharide composed of glucose polymers. β-1,3-Glucan increase the activity of IKKβ kinase, enhances the production of nitric oxide. β-1,3-Glucan improves resistance to Vibrio harveyi infection. β-1,3-Glucan enhances immune response, promotes blood pressure recovery, reduces lung, kidney and liver damage, inhibits the growth of syngeneic tumors.
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2
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| HY-W008807 | Phosphoenolpyruvic acid potassium |
Phosphoenolpyruvic acid (Phosphoenolpyruvate) potassium is a glycolysis metabolite with a high-energy phosphate group. Phosphoenolpyruvic acid potassium is involved in glycolysis and gluconeogenesis, and used as energy source to produce ATP, under the energy-limited conditions. Phosphoenolpyruvic acid potassium also exhibits cytoprotective and anti-oxidative properties.
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2
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| HY-148776 | PLGA-PEG-MAL (20kDA-5.0kDA, LA:GA ratio 50:50) |
PLGA-PEG-MAL (20kDA-5.0kDA, LA:GA ratio 50:50) is a degradable amphiphilic polymer nanocarrier of poly (lactic acid-co-glycolic acid)-block-poly (ethylene glycol) (PLGA-PEG-Mal) that allows covalent modification of functional molecules. PLGA-PEG-MAL (20kDA-5.0kDA, LA:GA ratio 50:50) serves as a core polymer for nanoparticle synthesis, and also acts as a nanoparticle component for site-specific antibody conjugation to construct artificial antigen-presenting cells. PLGA-PEG-MAL (20kDA-5.0kDA, LA:GA ratio 50:50) is applicable for drug delivery-related research.
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1
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| HY-145334 | CD73-IN-5 |
CD73-IN-5 is a potent and selective non-nucleotide small molecule inhibitor of CD73 (IC50 = 19 nM).
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1
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| HY-16467 | Squalamine lactate |
Squalamine lactate is an aminosterol compound discovered in the tissues of the dogfish shark, with antimicrobial activity, and used for the treatment of neovascular age-related macular degeneration.
Source: Squalus acanthias |
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1
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| HY-A0181S | Adenosine monophosphate-13C10,15N5 dilithium |
Adenosine monophosphate-13C10,15N5(AMP-13C10,15N5) is the 13C-labeled and 15N-labeled Adenosine monophosphate (HY-A0181). Adenosine monophosphate is an adenosine A1 receptor agonist. Adenosine monophosphate has significant antiviral activity against HSV-1 and HSV-2. Adenosine monophosphate is a key cellular metabolite regulating energy homeostasis and signal transduction.
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1
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| HY-13966S | 2-Deoxy-D-glucose-d1 |
2-Deoxy-D-glucose-d is the deuterium labeled 2-Deoxy-D-glucose. 2-Deoxy-D-glucose is a glucose analog that acts as a competitive inhibitor of glucose metabolism, inhibiting glycolysis via its actions on hexokinase.
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1
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| HY-Y0479AS2 | L-Lactate-13C sodium (20% in water) |
L-Lactate-13C ((S)-2-Hydroxypropanoic acid-13C) sodium is the 13C-labeled L-Lactic acid sodium (HY-W040233). L-lactate Sodium is a buildiing block which can be used as a precursor for the production of the bioplastic polymer poly-lactic acid. L-Lactic acid Sodium has antiproliferative activity.
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1
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| HY-D0976 | NF279 |
NF279 is a selective P2X1 receptor antagonist and NTPDase inhibitor, with a P2X1 IC50 value of 19 nM. NF279 suppresses GABA-evoked currents, reduces ATP-excited respiratory activity, alters hypoglossal nerve burst parameters, and blocks CXCR4, CCR5, CXCR3, and CXCR7-mediated calcium responses. NF279 arrests HIV-1 fusion downstream of CD4 binding, inhibits R5- and X4-tropic HIV-1 strains. NF279 can be used for the research of HIV-1 infection.
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1
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| HY-N0717S | L-Valine-15N |
L-Valine-15N ((S)-Valine-15N) is the 15N-labeled L-Valine (HY-N0717). L-Valine ((S)-Valine) is a nonlinear semiorganic material. L-Valine causes lipid peroxidation and accumulation of malondialdehyde (MDA), exhibits inhibitory activity against cyanobacteria. L-Valine inhibits multidrug-resistant bacteria through activation of PI3K/Akt signaling pathway and inhibition of arginase.
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1
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| HY-N0910 | Notoginsenoside Ft1 |
Notoginsenoside Ft1 is an orally active bioactive saponin. Notoginsenoside Ft1 inhibits the PI3K/AKT/mTOR signaling pathway, activates the p38 MAPK and ERK1/2 signaling pathways, and increases the proportion of CD8+ T cells, thereby inducing apoptosis and lysosomal cell death in various cancer cells, and promoting angiogenesis. Notoginsenoside Ft1 causes vasodilation by activating glucocorticoid receptors (GR) and estrogen receptor beta (ERβ) in endothelial cells. Notoginsenoside Ft1 increases intracellular Ca2+ accumulation, reduces cAMP levels by activating a signaling network mediated through P2Y12 receptors, and promotes platelet aggregation, thereby exerting a procoagulant effect. Notoginsenoside Ft1 inhibits ferroptosis (ferroptosis) in renal tubular epithelial cells by activating the TGR5 receptor, thereby demonstrating a renal protective effect. Notoginsenoside Ft1 acts as a TGR5 agonist and an FXR antagonist to combat obesity and insulin resistance.
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PI3K
mTOR
Akt
Apoptosis
p38 MAPK
ERK
Transmembrane Glycoprotein
Glutathione Reductase (GR)
Estrogen Receptor/ERR
Calcium Channel
Ferroptosis
G protein-coupled Bile Acid Receptor 1
FXR
Lung Cancer
Breast Cancer
Colorectal Cancer
Prostate Cancer
Gastric Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Pancreatic Cancer
Ovarian Cancer
Neurodegenerative Disease
Depression
Pain
Digestive System Inflammation
Cardiovascular Disease
Glucose Metabolism
Obesity
Lung Fibrosis
Rheumatoid Arthritis
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1
|
| HY-P99732 | Minretumomab |
Minretumomab (CC-49) is a murine monoclonal antibody against TAG-72 (tumor-associated glycoprotein 72). Minretumomab is used in cancer and immunity research.
Species: Human |
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1
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| HY-P3448 | Certepetide |
Certepetide (CEND-1) is a bifunctional cyclic peptide (a.k.a. iRGD). Certepetide is a tumor-penetrating enhancer via RGD motif interaction with alphav-integrins and via activating NRP-1, and transforms the solid tumor microenvironment into a temporary agent conduit. Certepetide accumulates in tumors, and is used in the research of pancreatic cancer and other solid tumors.
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1
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| HY-16938S1 | 5'-Methylthioadenosine-d3 |
5'-Methylthioadenosine-d3 is the deuterium labeled 5'-Methylthioadenosine. 5'-Methylthioadenosine (5'-(Methylthio)-5'-deoxyadenosine) is a nucleoside generated from S-adenosylmethionine (SAM) during polyamine synthesis. 5'-Methylthioadenosine suppresses tumors by inhibiting tumor cell proliferation, invasion, and the induction of apoptosis while controlling the inflammatory micro-environments of tumor tissue. 5'-Methylthioadenosine and its associated materials have striking regulatory effects on tumorigenesis.
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1
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| HY-P99039 | Oleclumab |
Oleclumab (MEDI9447) is a human IgG1λ monoclonal antibody targeting CD73 and inhibits the exonuclease activity of the extracellular enzyme CD73. Oleclumab can adjust the composition of bone marrow and lymphoid infiltrating leukocyte populations in the tumor microenvironment and has anti-tumor activity.
Species: Human |
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1
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| HY-P99742 | Mitazalimab |
Mitazalimab (ADC-1013; JNJ-64457107) is FcγR-dependent CD40 agonist with tumor-directed activity. Mitazalimab activates antigen-presenting cells, e.g. dendritic cells (DC), to initiate tumor-reactive T cells. Therefore, Mitazalimab induces tumor-specific T cells to infiltrate and kill tumors. Mitazalimab remodels the tumor-infiltrating myeloid microenvironment.
Species: Human |
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1
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| HY-W591424 | m-PEG2000-NHS ester |
m-PEG2000-NHS ester (mPEG2000-SC) is a reagent with both cell adhesion inhibition and peptide conjugation functions. The NHS ester group of m-PEG2000-NHS ester forms stable amide bonds with primary amine-containing molecules (e.g., the N-terminus of MMP-2-cleavable octapeptide) to generate mPEG-peptide intermediates for liposome surface modification. When m-PEG2000-NHS ester is immobilized on a cystamine-modified gold surface, it can construct an in vitro model for cell adhesion kinetic studies, and higher PEG density and thicker layers correlate with lower cell adhesion rates. m-PEG2000-NHS ester can synthesize MMP-2-responsive PEGylated lipid conjugates to achieve MMP-triggered dePEGylation in the tumor microenvironment. m-PEG2000-NHS ester can be used in studies related to colon cancer and other conditions.
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1
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| HY-N0819 | Raddeanin A |
Raddeanin A is an oleanane-type triterpenoid saponin with oral activity. Raddeanin A inhibits SRC, mTOR, JNK, VEGFR2, NLRP3 inflammasome, Wnt/β-catenin, Wee1, PI3K/AKT signaling pathway, MAPK/ERK signaling pathway, AR-FL, AR-Vs, and downregulates the expression of p-PI3K and p-AKT. Raddeanin A inhibits osteoclast formation, bone resorption, osteolysis, cancer cell invasion, migration, proliferation, angiogenesis and epithelial-mesenchymal transition, while induces apoptosis, cell cycle arrest, ROS production, immunogenic cell death and dendritic cell maturation. Raddeanin A improves blood-retinal barrier function, alleviates inflammation, regulates the tumor microenvironment, and enhances the activity of anti-PD-1 antibody. Raddeanin A is applicable to the research of breast cancer-associated osteolysis, human osteosarcoma, colorectal cancer, glioblastoma, Alzheimer's disease, cholangiocarcinoma, melanoma, non-small cell lung cancer, castration-resistant prostate cancer and multiple myeloma.
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Colorectal Cancer
Leukemia/Lymphoma/Myeloma
Cancer Immunology
Digestive System Inflammation
Non-Small Cell Lung Cancer
Immunotherapy for Melanoma
Alzheimer's Disease
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1
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| HY-N0717S6 | L-Valine-13C5 |
L-Valine-13C5 ((S)-Valine-13C5) is the 13C-labeled L-Valine (HY-N0717). L-Valine ((S)-Valine) is a nonlinear semiorganic material. L-Valine causes lipid peroxidation and accumulation of malondialdehyde (MDA), exhibits inhibitory activity against cyanobacteria. L-Valine inhibits multidrug-resistant bacteria through activation of PI3K/Akt signaling pathway and inhibition of arginase.
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1
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| HY-19548A | BEC hydrochloride |
BEC hydrochloride is a slow-binding and competitive Arginase II inhibitor with Ki of 0.31 μM and 30 nM at pH 7.5 and pH 9.5, respectively.
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1
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| HY-W014233 | L-Histidinol dihydrochloride |
L-Histidinol dihydrochloride is an orally active histidyl-tRNA synthetase inhibitor. L-Histidinol dihydrochloride interferes with the initiation stage of protein synthesis, thus affecting cell proliferation and metabolism. L-Histidinol dihydrochloride has the effect of modulating the sensitivity of tumor cells to chemotherapeutic agents. L-Histidinol dihydrochloride reduces the toxicity of certain chemotherapeutic agents to normal tissues and enhance the sensitivity of tumor cells to chemotherapeutic agents.
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1
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| HY-112868B | ABH hydrochloride |
ABH (hydrochloride) is an orally active arginase inhibitor (Ki = 8.5 nM). ABH hydrochloride promotes NO production and reduces the expression of inflammatory response-related molecules (ICAM-1, VCAM-1, MCP-1). ABH hydrochloride improves erectile function, reduces lung damage, promotes wound healing, reduces arterial blood pressure, and improves vascular fibrosis.
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1
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| HY-I1124 | L-Valine-d8 |
L-Valine-d8 is a deuterated form of L-Valine (HY-N0717). L-Valine ((S)-Valine) is a nonlinear semiorganic material. L-Valine causes lipid peroxidation and accumulation of malondialdehyde (MDA), exhibits inhibitory activity against cyanobacteria. L-Valine inhibits multidrug-resistant bacteria through activation of PI3K/Akt signaling pathway and inhibition of arginase.
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1
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| HY-Y0479AS | L-Lactic acid-13C3 sodium (20% w/w in water) |
L-Lactic acid-13C3 ((S)-2-hydroxypropanoic-13C3) sodium (20% in water) is the 13C labeled L-Lactic acid. L-Lactic acid-13C3 sodium (20% in water) can be used for lactate metabolism research.
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1
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| HY-P990790 | Anti-Mouse CD8α Antibody (2.43) |
Anti-Mouse CD8α Antibody (2.43) is an anti-mouse CD8α IgG2b monoclonal antibody. Anti-Mouse CD8α Antibody (2.43) can significantly deplete CD8+ T cells. Anti-Mouse CD8α Antibody (2.43) can prolong the survival time of liver cell transplantation. Anti-Mouse CD8α Antibody (2.43) can be used for research on immunology. The recommend isotype control of Anti-Mouse CD8α Antibody (2.43): Rat IgG2b kappa, Isotype Control (HY-P990682).
Species: Mouse |
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1
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| HY-W179181 | MSNBA |
MSNBA is a potent and selective GLUT5 fructose transport inhibitor with an IC50 of 0.10 mM. MSNBA does not affect the transport activity of human GLUT1, GLUT2, GLUT3, GLUT4 or bacterial GlcPSe. MSNBA competitively inhibits GLUT5 fructose uptake with a Ki of 3.2 μM in MCF7 cells. MSNBA can be used for the study of cancer or diabetes.
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Cancer
Digestive System Disease
Bacterial Infection
Digestive System Inflammation
Glucose Metabolism
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1
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| HY-N0755 | Rhoifolin |
Rhoifolin is a flavone glycoside can be isolated from Rhus succedanea. Rhoifolin has anti-diabetic effect acting through enhanced adiponectin secretion, tyrosine phosphorylation of insulin receptor-β and glucose transporter 4 (GLUT 4) translocation. Rhoifolin has an anti-inflammatory action via multi-level regulation of inflammatory mediators. Rhoifolin ameliorates titanium particle-stimulated osteolysis and attenuates osteoclastogenesis via RANKL-induced NF-κB and MAPK pathways. Rhoifolin also has cytotoxic activity against different cancer cell lines.
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Lung Cancer
Pancreatic Cancer
Neurodegenerative Disease
Pain
Digestive System Inflammation
Glucose Metabolism
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1
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| HY-N10574 | Queuine |
Queuine is a selective substrate for tRNA guanine transglycosylase (TGT) and can be incorporated into eukaryotic tRNA. Queuine promotes tRNA modification, affecting mitochondrial function and Warburg metabolic phenotype. If Queuine is deficient, aerobic glycolysis can be enhanced, oxidative phosphorylation can be inhibited, and Warburg metabolism can be promoted, accompanied by increased ammonia and lactate production and increased lactate dehydrogenase activity. Queuine can be used for autoimmune diseases (such as experimental models of multiple sclerosis) and cancer metabolic regulation, and its deficiency is associated with low tRNA modification in tumor cells.
Source: eubacteria |
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1
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| HY-Y0479S | L-Lactic acid-13C3 |
L-Lactic acid-13C3 is a 13C-labeled L-Lactic acid (HY-Y0479). L-Lactic acid-13C3 can be used for lactate metabolism research.
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1
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| HY-P99675 | Ivonescimab |
Ivonescimab (AK112) is a PD-1/VEGF bispecific antibody. Ivonescimab competitively inhibiting PD-1/PD-L1 interaction, reversing the immunosuppression mediated by it, and blocks the binding of VEGF-A to VEGFR2, inhibiting tumour angiogenesis in the tumour microenvironment. Ivonescimab also has significantly anticancer activity against EGFR-mutated locally advanced or metastatic non-squamous non-small cell lung cancer (NSCL).
Species: Human |
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1
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| HY-P71833 | Arginase-1/ARG1 Protein, Mouse (P.pastoris, His) |
Arginase-1 (ARG1) plays a key role in the urea cycle, converting L-arginine into urea and L-ornithine. This cycle maintains L-arginine homeostasis, which is critical for nitric oxide synthase to compete for arginine. Arginase-1/ARG1 Protein, Mouse (P.pastoris, His) is the recombinant mouse-derived Arginase-1/ARG1 protein, expressed by P. pastoris , with N-6*His labeled tag.
Species: Mouse; Source: P. pastoris |
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1
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| HY-P7541A | Arginase-1/ARG1 Protein, Human (N-His) |
Arginase-1 (ARG1) protein, crucial in the urea cycle, converts L-arginine to urea and L-ornithine. ARG1 also regulates L-arginine levels outside the liver, impacting immune responses. ARG1's release by granulocytes suppresses T cell and NK cell functions. In ILC2s, ARG1 promotes lung inflammation. However, ARG1's role in human monocytic/macrophage/dendritic cells is unclear. Arginase-1/ARG1 Protein, Human (N-His) is the recombinant human-derived Arginase-1/ARG1 protein, expressed by E. coli , with N-6*His labeled tag.
Species: Human; Source: E. coli |
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1
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| HY-P70265 | LDHB Protein, Human (His) |
The LDHB protein, also known as lactate dehydrogenase B, is an enzyme that plays a crucial role in cellular energy metabolism. References indicate that the LDHB protein effectively catalyzes the simultaneous, stereospecific interconversion of pyruvate and lactate. LDHB Protein, Human (His) is the recombinant human-derived LDHB protein, expressed by E. coli , with N-6*His labeled tag.
Species: Human; Source: E. coli |
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1
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| HY-P80223 | METTL3 Antibody (YA294) |
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1
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| HY-K0351 | Human CD8+ T Cells Negative Selection Kit |
MCE Human CD8+ T Cells Negative Selection Kit is designed to isolate CD8+ T cells from human peripheral blood mononuclear cells (PBMCs). |
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1
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| HY-13966S4 | 2-Deoxy-D-glucose-13C-1 |
2-Deoxy-D-glucose-13C-1 is the 13C labeled 2-Deoxy-D-glucose. 2-Deoxy-D-glucose is a glucose analog that acts as a competitive inhibitor of glucose metabolism, inhibiting glycolysis via its actions on hexokinase.
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| HY-P1120A | WKYMVm TFA |
WKYMVm (TFA) is a selective formylpeptide receptor 2 (FPR2) agonist. WKYMVm has a powerful anti-inflammatory effect that can reduce lung injury and spinal cord injury. WKYMVm ameliorates obesity by regulating lipid metabolism and leptin signaling. WKYMVm is involved in the regulation of immune cells by activating FPRs, and WKYMVm can promote the chemotactic migration of immune cells and inhibit the apoptosis of phagocytes. In addition, WKYMVm may play a favorable or unfavorable role in tumors, depending on the type of tumor.
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Cancer
Neurological, Eye or Ear Disease
Inflammation or Immune System Disease
Metabolic or Endocrine Disease
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| HY-18719S | Endoxifen-d5 (Z-isomer) |
Endoxifen-d5 (Z-isomer) is the deuterated-labeled Endoxifen (Z-isomer methanesulfonate) (HY-18719H). Endoxifen-d5 Z-isomer is an orally active selective PKCβ1 inhibitor with an IC50 of 360 nM against human PKCβ1. It also acts as an estrogen receptor modulator and antiestrogen. Endoxifen-d5 Z-isomer binds to and blocks ERα, ERβ and PKCβ1, inhibits estrogen and PI3K/AKT/mTORC1 signaling pathways, suppresses the expression of genes associated with cell cycle, cell proliferation and extracellular matrix remodeling, and induces apoptosis, reactive oxygen species (ROS) production and hypoxic features. Endoxifen-d5 Z-isomer inhibits tumor growth in breast tumor and glioblastoma models, reduces bone turnover and blood lipid levels, and does not require metabolism via CYP2D6. It can be used in research related to ER+ breast cancer, invasive breast cancer, glioblastoma multiforme, type I bipolar disorder, desmoid tumor, gynecological malignancies, melanoma and hormone receptor-positive solid tumors
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| HY-143959S | Fingolimod Mono-lactate-d4 hydrochloride |
Fingolimod Mono-lactate-d4 (hydrochloride) is the deuterium labeled Fingolimod Mono-lactate hydrochloride.
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| HY-B1511G | Cyclic AMP (GMP) |
Cyclic AMP (GMP) (Cyclic adenosine monophosphate (GMP)) is Cyclic AMP (HY-B1511) produced by using GMP guidelines. GMP small molecules works appropriately as an auxiliary reagent for cell therapy manufacture. Cyclic AMP (Cyclic adenosine monophosphate), adenosine triphosphate derivative, is an intracellular signaling molecule responsible for directing cellular responses to extracellular signals. Cyclic AMP is an important second messenger in many biological processes.
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| HY-P10663 | EBV EBNA3A (379-387) |
EBV EBNA3A (379-387) is an antigenic epitope that may elicit the latent-specific CD8+ T cell response in HLA-B*07:02+ individuals.
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| HY-128749AR | D-Glucaric acid tetrahydrate (Standard) |
D-Glucaric acid tetrahydrate (Standard) (Calcium D-glucarate tetrahydrate (Standard)) is the analytical standard of D-Glucaric acid tetrahydrate (HY-128749A). This product is intended for research and analytical applications. D-Glucaric acid tetrahydrate (Calcium D-glucarate tetrahydrate) is an orally active end product of the mammalian D-glucuronidation pathway. D-Glucaric acid tetrahydrate is found in a variety of fruits and vegetables. D-Glucaric acid tetrahydrate induces cell Apoptosis. D-Glucaric acid tetrahydrate reduces the expression of hippocampal myelin-related genes (Mbp, Plp1). D-Glucaric acid tetrahydrate has cholesterol-lowering and anti-tumor activities. D-Glucaric acid tetrahydrate can be used in the research of neurological diseases.
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Cancer
Neurological, Eye or Ear Disease
Inflammation or Immune System Disease
Metabolic or Endocrine Disease
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| HY-P990437 | Anti-IDO2 Antibody |
Anti-IDO2 Antibody is a CHO-expressed human antibody that targets IDO2. Anti-IDO2 Antibody has a huIgG4SP heavy chain and a huκ light chain, with a predicted molecular weight (MW) of 151.06 kDa. The isotype control for Anti-IDO2 Antibody can refer to Human IgG1 kappa, Isotype Control (HY-P99001).
Species: Human |
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| HY-P0073S | Tyr-Gly-Gly-{Phe-13C9,15N}-Met-OH TFA |
Tyr-Gly-Gly-{Phe-13C9,15N}-Met-OH TFA (Met-Enkephalin-13C9,15N TFA) is the 13C- and 15N-labeled Tyr-Gly-Gly-Phe-Met-OH TFA. Tyr-Gly-Gly-Phe-Met-OH regulates human immune function and inhibits tumor growth via binding to the opioid receptor.
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| HY-W105639A | Calcium L-lactate pentahydrate, meets USP testing specifications |
Calcium L-lactate pentahydrate, meets USP testing specifications (Calcium lactate pentahydrate, meets USP testing specifications) is a biochemical reagent and serves as one of the important sources of calcium. Compared to other organic calcium salts, Calcium L-lactate pentahydrate, meets USP testing specifications exhibits excellent solubility and bioavailability. Calcium L-lactate pentahydrate, meets USP testing specifications possesses remarkable moisture resistance, thermal stability, and chemical stability and can be used in medical implants and drug delivery systems .
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| HY-W016773S | 1,10-Decanediol-d20 |
1,10-Decanediol-d20 is the deuterium labeled 1,10-Decanediol. 1,10-Decanediol is a diol compound that can react with α-ketoglutarate (aKG) to generate polymeric microparticles (termed paKG MPs) for the sustained release of aKG, thereby promoting immunosuppressive regulation. Additionally, paKG MPs can bind to dendritic cells (DCs), reducing their glycolysis and mitochondrial respiration in vitro. These metabolic changes lead to the modulation of MHC-II and CD86 expression in DCs and alter the frequency of regulatory T cells (Tregs) as well as T-helper type 1/2/17 cells in vitro. 1,10-Decanediol can be used in research within the field of immunometabolism. can be used as a surfactant/stabilizer in the synthesis of nanomaterials.
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| HY-P99723 | Manelimab |
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| HY-155902D | Mal-PEG10000-OH |
Mal-PEG10000-OH (Maleimide-PEG10000-Hydroxy) is a linear heteroterminal bifunctional PEG product with maleimide and hydroxyl groups. Mal-PEG10000-OH can be used as a macroinitiator to obtain amphiphilic diblock copolymers through ring-opening polymerization of Lactate (Lactic Acid) (HY-B2227). Nanoparticles prepared using amphiphilic block copolymers can form active drug delivery systems.
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| HY-N0517R | Erianin (Standard) |
Erianin (Standard) is the analytical standard of Erianin. This product is intended for research and analytical applications. Erianin, often used as an antipyretic and analgesic agent, could inhibit IDO-induced tumor angiogenesis.
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| HY-178305S | L-Valine-d |
L-Valine-d is the deuterium labeled L-Valine (HY-N0717). L-Valine ((S)-Valine) is a nonlinear semiorganic material. L-Valine causes lipid peroxidation and accumulation of malondialdehyde (MDA), exhibits inhibitory activity against cyanobacteria. L-Valine inhibits multidrug-resistant bacteria through activation of PI3K/Akt signaling pathway and inhibition of arginase.
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| HY-N6776R | Penitrem A (Standard) |
Prenylamine (lactate) (Standard) is the analytical standard of Prenylamine (lactate). This product is intended for research and analytical applications. Prenylamine lactate is a calcium-modulating protein (CaM) antagonist that inhibits CaM-dependent enzymes and can slowly relax smooth muscle preparations. The effect of Prenylamine lactate on smooth muscle is not inhibited by the calcium agonist Bay K 8644 (HY-10588). Reports suggest that under low heart rate conditions, Prenylamine seems to enhance voltage-dependent transmembrane calcium currents.
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| HY-16938R | 5'-Methylthioadenosine (Standard) |
5'-Methylthioadenosine (Standard) is the analytical standard of 5'-Methylthioadenosine. This product is intended for research and analytical applications. 5'-Methylthioadenosine (5'-(Methylthio)-5'-deoxyadenosine) is a nucleoside generated from S-adenosylmethionine (SAM) during polyamine synthesis[1]. 5'-Methylthioadenosine suppresses tumors by inhibiting tumor cell proliferation, invasion, and the induction of apoptosis while controlling the inflammatory micro-environments of tumor tissue. 5'-Methylthioadenosine and its associated materials have striking regulatory effects on tumorigenesis[2].
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| HY-P11062 | M30 peptide |
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| HY-136450S | Triclabendazole sulfoxide-d3 |
Triclabendazole sulfoxide-d3 is the deuterium labeled Triclabendazole sulfoxide. Triclabendazole sulfoxide (TCBZ-SO) is an orally active ABCG2 inhibitor with antiparasitic activity. Triclabendazole sulfoxide inhibits ABCG2-mediated active efflux and ATPase activity. Triclabendazole sulfoxide increases the intracellular accumulation of Mitoxantrone (HY-13502). Triclabendazole sulfoxide reduces the apical-directed transepithelial transport of Nitrofurantoin and Danofloxacin, while increasing their basolateral-directed transepithelial transport. Triclabendazole sulfoxide elevates the plasma levels of sulfasalazine in wild-type mice. Triclabendazole sulfoxide decreases ABCG2-mediated secretion of Nitrofurantoin into milk in wild-type lactating mice. Triclabendazole sulfoxide can be used in the research of insecticidal agents and cancers such as breast cancer.
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| HY-P11061 | M27 peptide |
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| HY-P0073S1 | Tyr-{Gly-13C2,15N}-Gly-Phe-Met-OH TFA |
Tyr-{Gly-13C2,15N}-Gly-Phe-Met-OH TFA (Met-Enkephalin-13C2,15N TFA) is the 13C- and 15N-labeled Tyr-Gly-Gly-Phe-Met-OH TFA. Tyr-Gly-Gly-Phe-Met-OH regulates human immune function and inhibits tumor growth via binding to the opioid receptor.
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| HY-P992446 | PUR001 |
PUR001 is a monoclonal antibody targeting NTPDase 1 (CD39). PUR001 blocks the hydrolysis of extracellular ATP and ADP into AMP by inhibiting CD39, reduces the production of immunosuppressive adenosine, and increases extracellular ATP concentration to activate anti-tumor immune responses. PUR001 can be used in studies related to solid tumors.
Species: Human |
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| HY-P10378 | GPR10 agonist 1 |
GPR10 agonist 1 (compound 18-S4) is a potent GPR10 agonist with EC50 values of 80, 7.8 nM in the presence (10%) or absence (0%) of FBS, respectively. GPR10 agonist 1 has the potential for the research of chronic obesity.
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| HY-P10496 | MAGE-A1-derived peptide |
MAGE-A1-derived peptide is a short peptide sequence derived from MAGE-A1 protein. As a tumor-specific antigen, MAGE-A1-derived peptide can be recognized and activated by cytotoxic T lymphocytes (CTLs), thereby generating an immune response to tumor cells expressing MAGE-A1. This immune response can lead to the lysis and death of tumor cells. MAGE-A1-derived peptide can be used in the study of tumor immunity.
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| HY-P11739 | ZD2 peptide |
ZD2 peptide is an EDB-FN-binding peptide with a Kd value of 11 μM. ZD2 peptide binds specifically to the EDB protein fragment of extradomain B fibronectin, a tumor microenvironment biomarker. ZD2 peptide can be conjugated to imaging agents. ZD2 peptide can be used for the research of cancer.
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| HY-P10277 | Palopegteriparatide |
Palopegteriparatide (Transcon PTH) is a prodrug of parathyroid hormone PTH 1-34, which can maintain normal and stable calcium concentrations without the need for calcium and active vitamin D replacement. Palopegteriparatide can be used in research on hypoparathyroidism.
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| HY-N0717S5 | L-Valine-2-13C |
L-Valine-2-13C ((S)-Valine-2-13C) is the 13C-labeled L-Valine (HY-N0717). L-Valine ((S)-Valine) is a nonlinear semiorganic material. L-Valine causes lipid peroxidation and accumulation of malondialdehyde (MDA), exhibits inhibitory activity against cyanobacteria. L-Valine inhibits multidrug-resistant bacteria through activation of PI3K/Akt signaling pathway and inhibition of arginase.
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| HY-137404 | Adenosine 5'-O-thiomonophosphate dilithium |
Adenosine 5'-O-thiomonophosphate dilithium is a compound that inhibits phosphohydrolase activity and can also serve as a substrate for 5'-nucleotidase.
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| HY-N0717S8 | L-Valine-d1 |
L-Valine-d1 ((S)-Valine-d1) is the deuterium labeled L-Valine (HY-N0717). L-Valine ((S)-Valine) is a nonlinear semiorganic material. L-Valine causes lipid peroxidation and accumulation of malondialdehyde (MDA), exhibits inhibitory activity against cyanobacteria. L-Valine inhibits multidrug-resistant bacteria through activation of PI3K/Akt signaling pathway and inhibition of arginase.
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| HY-N21609 | Cassialoin |
Cassialoin is an orally active anthrone-C-glucoside natural product with antitumor activity, which is found in the heartwood of Cassia garrettiana. Cassialoin is metabolized to the active substance Chrysophanol‑9‑anthrone. Cassialoin does not directly inhibit the activities of VEGFR‑2 and MMP‑9 in vitro, nor does it directly inhibit vascular lumen formation and cell migration in vitro. Cassialoin increases the number of IFN-γ-positive CD8+ T cells and natural killer cells in the small intestine or spleen, and enhances IFN-γ production by splenocytes induced by Concanavalin A (HY-P2149). Cassialoin inhibits tumor growth and peritoneal invasion in colon cancer xenograft models. Cassialoin can be used for research on colon cancer.
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| HY-W778057 | Ethyl 3,4-Dihydroxybenzoate-13C3 |
Ethyl 3,4-Dihydroxybenzoate-13C3 (Protocatechuic acid ethyl ester-13C3) is the 13C-labeled Ethyl 3,4-dihydroxybenzoate (HY-W016409). Ethyl 3,4-dihydroxybenzoate (Protocatechuic acid ethyl ester) is an orally effective, blood-brain barrier-permeable, competitive prolyl hydroxylase (PHD) inhibitor that inhibits the hydroxylation modification of hypoxia-inducible factor (HIF) by PHD. Ethyl 3,4-dihydroxybenzoate stabilizes HIF-1α by inhibiting PHD, activates downstream pathways to induce autophagy and apoptosis of tumor cells, and regulates inflammatory responses, inhibits the NF-κB pathway, improves vascular permeability, and promotes osteoblast differentiation. Ethyl 3,4-dihydroxybenzoate has anti-tumor, anti-hypoxic injury, and bone metabolism regulation effects. It can also be used in the research of cardiovascular protection (such as reducing myocardial ischemic damage), bone tissue engineering (promoting osteogenesis/inhibiting osteoclast differentiation), and prevention and treatment of high-altitude cerebral edema.
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| HY-P0073S2 | Tyr-Gly-{Gly-13C2,15N}-Phe-Met-OH TFA |
Tyr-Gly-{Gly-13C2,15N}-Phe-Met-OH TFA (Met-Enkephalin-13C2,15N TFA-1) is the 13C- and 15N-labeled Tyr-Gly-Gly-Phe-Met-OH TFA. Tyr-Gly-Gly-Phe-Met-OH regulates human immune function and inhibits tumor growth via binding to the opioid receptor.
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| HY-P992362 | HBM1007 |
HBM1007 is a fully human monoclonal antibody targeting CD73. HBM1007 is an extracellular enzyme expressed on the surface of stromal cells and tumor cells, capable of converting extracellular adenosine monophosphate (AMP) into adenosine, and recognizing CD73 via a unique antigenic epitope. HBM1007 inhibits both CD73-dependent and CD73-independent enzyme activities.
Species: Human |
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| HY-Y0399R | L-Norvaline (Standard) |
L-Norvaline (Standard) is the analytical standard of L-Norvaline (HY-Y0399). This product is intended for research and analytical applications. L-Norvaline is the inhibitor for arginase, that promotes the production of NO, reduces oxidative stress, improves insulin resistance, and exhibits antioxidant and anti-hyperglycemic effects. L-Norvaline can be used in research of Alzheimer’s disease.
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| HY-180770 | Formyl-5-hydroxykynurenamine |
Formyl-5-hydroxykynurenamine is produced from serotonin catalyzed by the enzyme IDO1.
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| HY-P4149 | Imsamotide |
Imsamotide (IDO194-214) is a Indoleamine 2,3-Dioxygenase (IDO) peptide with sequences of DTLLKALLEIASCLEKALQVF, the IDO194-214. Imsamotide is also an immunological agent for active immunization, as well as an antineoplastic agent.
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| HY-N12537A | (2R,3S)-PD-1/PD-L1-IN-38 |
(2R,3S)-PD-1/PD-L1-IN-38 (Compound (±)-13e) is an orally active Ah receptor (AhR) antagonist with in vivo and in vitro anticancer activity. (2R,3S)-PD-1/PD-L1-IN-38 promotes the secretion of INF-γ by CD8+T cells and inhibits the signal transduction of PD-1/PD-L1.
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| HY-P10509 | IE1 peptide |
IE1 peptide refers to an antigenic peptide encoded by the immediate early (IE) gene of mouse cytomegalovirus (mCMV). IE1 peptide is one of the key antigenic peptides expressed during mCMV infection, plays a role in transcriptional activation in the life cycle of mCMV, and is one of the earliest genes expressed in the viral replication cycle. IE1 peptide is an important target for CD8+ T cell response and can be used to study the host immune response to mCMV infection.
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| HY-120993 | 1,N6-Ethenoadenosine 5'-monophosphate sodium |
1,N6-Ethenoadenosine 5'-monophosphate (1,N6-Etheno-AMP) sodium is a highly fluorescent analog of adenosine 5'-monophosphate (AMP). 1,N6-Ethenoadenosine 5'-monophosphate sodium is a powerful probe for systems involving adenosine 5'-monophosphate and can be detected at low concentration. 1,N6-Ethenoadenosine 5'-monophosphate sodium has long wavelength of excitation (250-300 nm), and emission at 415 nm.
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| HY-W251598I | Sodium bicarbonate, meets analytical specification of Ph. Eur., BP, USP, FCC, E500 |
Sodium bicarbonate, meets analytical specification of Ph. Eur., BP, USP, FCC, E500 is an inorganic salt that is neutral to slightly alkaline and easily decomposes when exposed to moisture in the air. Sodium bicarbonate can maintain the pH of the culture medium, thereby affecting the expression of inducible nitric oxide synthase (iNOS) and nitric oxide (NO) production in macrophages and reversing the acidosis of the tumor microenvironment. Sodium bicarbonate is widely used in the fields of food, medicine, cosmetics, etc. Its main uses include buffers, flavoring agents, disinfectants, pharmaceuticals, and proton gradient regulators. Sodium bicarbonate is also commonly used as an antacid to inhibit gastrointestinal diseases, neutralize gastric acid, and reduce gastric discomfort.
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| HY-W040073S | Nifurtimox-d4 |
Nifurtimox-d4 is deuterium labeled Nifurtimox. Nifurtimox, an antiprotozoal agent, which is generally used for the treatment of infections with Trypanosoma cruzi, has been used in the therapy of neuroblastoma. Nifurtimox affects enzyme activity of lactate dehydrogenase (LDH).
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| HY-W725496 | D-Fructose 6-phosphate dipotassium |
D-Fructose 6-phosphate dipotassium is an endogenous metabolite in saliva that affects cell growth and autophagy; it can be hydrolyzed by Fructose-1,6-bisphosphatase (FBPase). D-Fructose 6-phosphate dipotassium can be converted into D-glucose 6-phosphate (HY-112537) by the action of phosphoglucose isomerase. D-Fructose 6-phosphate dipotassium is a sugar intermediate in the glycolysis pathway and the pentose phosphate pathway. D-Fructose 6-phosphate dipotassium can be used to study Lewy body dementia.
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| HY-P3720 | YEQLRNSRA |
YEQLRNSRA is a MycC Peptide. MycC Peptide is encoded by c-myc proto-oncogene, the c-myc oncogene has been implicated in malignant progression in a variety of human tumors. MycC Peptide regulates fundamental cellular processes like growth control, metabolism, proliferation, differentiation, and apoptosis.
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| HY-16938S2 | 5'-Methylthioadenosine-13C5 |
5'-Methylthioadenosine-13C5 (5'-(Methylthio)-5'-deoxyadenosine-13C5) is the 13C--labeled 5'-Methylthioadenosine (HY-16938). 5'-Methylthioadenosine (5'-(Methylthio)-5'-deoxyadenosine) is a nucleoside generated from S-adenosylmethionine (SAM) during polyamine synthesis. 5'-Methylthioadenosine suppresses tumors by inhibiting tumor cell proliferation, invasion, and the induction of apoptosis while controlling the inflammatory micro-environments of tumor tissue. 5'-Methylthioadenosine and its associated materials have striking regulatory effects on tumorigenesis.
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| HY-P990038 | Eurestobart |
Eurestobart (ES002023) is a recombinant human IgG1 antibody against CD39. Eurestobart restores antitumor immunity by stabilizing the pro-inflammatory extracellular ATP (eATP) and interfering with synthesis of the immunosuppressive adenosine within the tumor microenvironment (TME). Eurestobart is used in the research of locally advanced and metastatic solid tumors.
Species: Human |
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| HY-P11798 | P-Selectin binding peptide |
P‑Selectin binding peptide is a short peptide that specifically targets P‑selectin. P‑Selectin binding peptide binds with high affinity to P‑selectin, which is highly expressed on activated platelets, inflamed endothelium, and in the tumor microenvironment. P‑Selectin binding peptide is used for precise targeted delivery and intervention in inflammation, thrombosis, and tumors.
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| HY-B1505G | Acefylline (GMP) |
Acefylline (Theophyllineacetic acid) (GMP), a xanthine derivative, is an Adenosine Receptor antagonist. Acefylline (GMP) is a peptidylarginine deiminase (PAD) activator. Acefylline (GMP) is also a bronchodilator and cardiac stimulant that inhibits rat lung cAMP phosphodiesterase isoenzymes. Acefylline (GMP) can be used in asthma research.
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Neurological, Eye or Ear Disease
Inflammation or Immune System Disease
Blood or Cardio-cerebrovascular Disease
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| HY-W062109S | Olopatadine-d6 |
Olopatadine-d6 is the deuterium labeled Olopatadine. Olopatadine hydrochloride (ALO4943A; KW4679) is an orally active histamine H1 receptor antagonist and mast cell stabilizer. Olopatadine hydrochloride exerts antiallergic effects by blocking histamine H1 receptor-mediated activities. Olopatadine hydrochloride inhibits exocytosis, chemokine release, F-actin polymerization, CXCL10-induced calcium influx, and T cell chemotactic activity. Olopatadine hydrochloride also reduces the expression levels of CXCR3 on the surface of CD4+ and CD8+ T cells. Olopatadine hydrochloride inhibits scratching behavior, improves dermatitis scores, and suppresses intraepidermal neurite outgrowth. Olopatadine hydrochloride simultaneously decreases the levels of inflammatory markers, growth factors, histamine, and specific IgE, while increasing the expression of ErbB3A/HER3A. Olopatadine hydrochloride can be used in research related to seasonal pollinosis, chronic rhinitis, urticaria, allergic conjunctivitis, alopecia areata, and atopic dermatitis.
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| HY-D1186 | 2-Aza-ε-adenosine |
2-Aza-ε-adenosine (2-Aza-1,N6-ethenoadenosine) is a multifunctional dye. Dyes are important tools in biological experiments. They can help researchers observe and analyze cell structures, track biomolecules, evaluate cell functions, distinguish cell types, detect biomolecules, study tissue pathology and monitor microorganisms. Their applications range from basic scientific research to clinical A wide range of diagnostics. Dyes are also widely used in traditional fields such as textile dyeing, as well as in emerging fields such as functional textile processing, food pigments and dye-sensitized solar cells.
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| HY-W770206 | IDO-IN-7-d10 |
IDO-IN-7-d10 (NLG-919 analogue-d10; GDC-0919 analogue-d10) is the deuterium labeled IDO-IN-7 (HY-13983). IDO-IN-7 (NLG-919 analogue) is a a potent IDO1 inhibitor with an IC50 of 38 nM.
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| HY-P3148 | Astin B |
Astin B is a orally active and potent cyclic pentapeptide, that can be isolated from Aster tataricus. Astin B has hepatotoxic effects in vitro and in vivo and that hepatic injury was primarily mediated by apoptosis in a mitochondria/caspase-dependent manner. Astin B induces autophagy in L-02 cells, increases LC3-II and decreases p62 expression.
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| HY-W064342S | L-Histidinol-d3 |
L-Histidinol-d3 ((S)-2-Amino-3-(1H-imidazol-5-yl)propan-1-ol-d3) is the deuterium labeled L-Histidinol (HY-W014233). L-Histidinol is an orally active histidyl-tRNA synthetase inhibitor. L-Histidinol interferes with the initiation stage of protein synthesis, thus affecting cell proliferation and metabolism. L-Histidinol has the effect of modulating the sensitivity of tumor cells to chemotherapeutic agents. L-Histidinol reduces the toxicity of certain chemotherapeutic agents to normal tissues and enhance the sensitivity of tumor cells to chemotherapeutic agents.
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| HY-B0426AS2 | Olopatadine-d6 hydrochloride |
Olopatadine-d6 (ALO4943A-d6; KW4679-d6) hydrochloride is deuterium-labeled Olopatadine (hydrochloride) (HY-B0426A). Olopatadine hydrochloride (ALO4943A; KW4679) is an orally active histamine H1 receptor antagonist and mast cell stabilizer. Olopatadine hydrochloride exerts antiallergic effects by blocking histamine H1 receptor-mediated activities. Olopatadine hydrochloride inhibits exocytosis, chemokine release, F-actin polymerization, CXCL10-induced calcium influx, and T cell chemotactic activity. Olopatadine hydrochloride also reduces the expression levels of CXCR3 on the surface of CD4+ and CD8+ T cells. Olopatadine hydrochloride inhibits scratching behavior, improves dermatitis scores, and suppresses intraepidermal neurite outgrowth. Olopatadine hydrochloride simultaneously decreases the levels of inflammatory markers, growth factors, histamine, and specific IgE, while increasing the expression of ErbB3A/HER3A. Olopatadine hydrochloride can be used in research related to seasonal pollinosis, chronic rhinitis, urticaria, allergic conjunctivitis, alopecia areata, and atopic dermatitis.
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| HY-W250153A | Adenosine 3'-phosphate 5'-phosphosulfate lithium, hydrate |
Adenosine 3'-phosphate 5'-phosphosulfate lithium hydrate, an adenine nucleotide derivative, is a selective P2Y1 antagonist with no effect on P2Y2, P2Y4, or P2Y6 receptors. Adenosine 3'-phosphate 5'-phosphosulfate lithium hydrate can competitive inhibit ADP-induced platelet aggregation, as well as the ability of ADP to cause shape change and increases in Ca2+ in platelets, but had no effect on the inhibition of stimulated adenylate cyclase by ADP. Adenosine 3'-phosphate 5'-phosphosulfate lithium hydrate is a co-substrate used for the sulfonation of glycans. Adenosine 3'-phosphate 5'-phosphosulfate lithium hydrate can be used for Golgi-resident PAP-specific 3'-phosphatase-coupled sulfotransferase assays, which as donor substrate to transfer a sulfonate group.
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| HY-N20707 | Castalagin |
Castalagin is an orally active natural product with multiple biological activities including antibacterial activity against bacteria and anti-leishmanial activity against Leishmania aethiopica. Castalagin exhibits inhibitory activity against PARP1 and DNA topoisomerase II, with an IC50 of 0.86 μM for bovine PARP1. Castalagin reduces poly (ADP-ribosyl) ation modification in cells. Castalagin binds to the cell envelope of Ruminococcus bromii, increases the ratio of CD8+/FOXP3+CD4+ T cells in the tumor microenvironment, and acts as a prebiotic to enhance the activity of anti-PD-1 therapy. Castalagin induces morphological changes in Leishmania aethiopica promastigotes and inhibits their proliferation. Castalagin inhibits PBP2a-mediated peptidoglycan layer stabilization, disrupts bacterial peptidoglycan assembly, and inhibits and disintegrates bacterial biofilms. Castalagin can be used in research related to diseases such as cancer, leishmaniasis, and bacterial infections.
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| HY-P5708 | Adenoregulin |
Adenoregulin (Dermaseptin b2) is an antimicrobial peptide antibiotic. Adenoregulin is active against Gram-negative and Gram-positive bacteria, yeast and fungi. Adenoregulin also enhances the binding of agonists to the A1 adenosine receptor.
Source: frog |
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| HY-P10295 | p53 (232-240) |
p53 (232-240) is a peptide segment of the 232-240 amino acid sequence of the human tumor suppressor protein p53. p53 (232-240) enhances its binding affinity to the Major histocompatibility complex (MHC), thereby enhancing the immunogenicity of this peptide to enhance the immune system's response to tumor antigens. p53 (232-240) can be used in the development of cancer vaccines and in the study of tumor cell recognition and clearance by the immune system.
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| HY-W753201 | 5'-Methylthioadenosine-13C |
5'-Methylthioadenosine-13C (5'-(Methylthio)-5'-deoxyadenosine-13C) is the 13C-labeled 5'-Methylthioadenosine (HY-16938). 5'-Methylthioadenosine (5'-(Methylthio)-5'-deoxyadenosine) is a nucleoside generated from S-adenosylmethionine (SAM) during polyamine synthesis. 5'-Methylthioadenosine suppresses tumors by inhibiting tumor cell proliferation, invasion, and the induction of apoptosis while controlling the inflammatory micro-environments of tumor tissue. 5'-Methylthioadenosine and its associated materials have striking regulatory effects on tumorigenesis.
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| HY-W011012R | Adenosine 5'-monophosphate disodium (Standard) |
Adenosine 5'-monophosphate (disodium) (Standard) is the analytical standard of Adenosine 5'-monophosphate (disodium). This product is intended for research and analytical applications. Adenosine 5'-monophosphate disodium is an orally active purine nucleotide, and participates in ATP metabolism. Adenosine 5'-monophosphate disodium is also a ligand for adenosine 2B receptor. Adenosine 5'-monophosphate disodium can activate AMPK in skeletal muscle, and ameliorates insulin resistance and impaired glucose metabolism. Adenosine 5'-monophosphate disodium can be used for research of diabetes.
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| HY-187305S | [U-15N]-PD-L1 |
[U-15N]-PD-L1 is the 15N-labeled PD-L1. PD-L1 is expressed on immune cells or aberrantly overexpressed on the surface of various tumor cells; it maintains immune tolerance and acts as a key molecule in tumor immune escape. This isotope can be used in NMR studies to investigate disease mechanisms and in mass spectrometry analysis.
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| HY-P991870 | Anti-Arginase-1 Antibody |
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| HY-W769991 | Lactate sodium-13C2 |
Lactic acid-13C2 (DL-Lactic acid-13C2) sodium is the 13C-labeled Lactic acid sodium . Lactic acid (DL-Lactic acid) sodium is a hydroxycarboxylic acid receptor 1 (HCAR1) activator and an epigenetic modulator inducing lysine residues lactylation. Lactic acid sodium is a glycolysis end-product, bridging the gap between glycolysis and oxidative phosphorylation. Lactic acid sodium is an oncometabolite and has immune protective role of lactate in anti-tumor immunity. Lactic acid sodium also has antimicrobial activity, which can be used as a food preservative.
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| HY-B0426AR | Olopatadine hydrochloride (Standard) |
Olopatadine (hydrochloride) (Standard) is the analytical standard of Olopatadine (hydrochloride). This product is intended for research and analytical applications. Olopatadine hydrochloride (ALO4943A; KW4679) is an orally active histamine H1 receptor antagonist and mast cell stabilizer. Olopatadine hydrochloride exerts antiallergic effects by blocking histamine H1 receptor-mediated activities. Olopatadine hydrochloride inhibits exocytosis, chemokine release, F-actin polymerization, CXCL10-induced calcium influx, and T cell chemotactic activity. Olopatadine hydrochloride also reduces the expression levels of CXCR3 on the surface of CD4+ and CD8+ T cells. Olopatadine hydrochloride inhibits scratching behavior, improves dermatitis scores, and suppresses intraepidermal neurite outgrowth. Olopatadine hydrochloride simultaneously decreases the levels of inflammatory markers, growth factors, histamine, and specific IgE, while increasing the expression of ErbB3A/HER3A. Olopatadine hydrochloride can be used in research related to seasonal pollinosis, chronic rhinitis, urticaria, allergic conjunctivitis, alopecia areata, and atopic dermatitis.
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| HY-W251598J | Sodium bicarbonate, United States Pharmacopeia (USP) Reference Standard |
Sodium bicarbonate, United States Pharmacopeia (USP) Reference Standard is an inorganic salt. Sodium bicarbonate, United States Pharmacopeia (USP) Reference Standard can maintain the pH of the culture medium, thereby affecting the expression of inducible nitric oxide synthase (iNOS) and nitric oxide (NO) production in macrophages and reversing the acidosis of the tumor microenvironment. Sodium bicarbonate, United States Pharmacopeia (USP) Reference Standard is widely used in the fields of food, cosmetics, etc. Its main uses include buffers, flavoring agents, disinfectants, pharmaceuticals, and proton gradient regulators. Sodium bicarbonate, United States Pharmacopeia (USP) Reference Standard is also commonly used as an antacid to inhibit gastrointestinal diseases, neutralize gastric acid, and reduce gastric discomfort.
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| HY-112175R | N-Acetylhistamine (Standard) |
Ethacridine (lactate monohydrate) (Standard) is the analytical standard of Ethacridine (lactate monohydrate). This product is intended for research and analytical applications. Ethacridine lactate (Acrinol) monohydrate is a widely used antiseptic and abortifacient. Ethacridine lactate monohydrate is effective against Staphylococcus aureus and other gram-positive cocci. Ethacridine lactate monohydrate is also a poly(ADP-ribose) glycohydrolase (PARG) inhibitor.
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Inflammation or Immune System Disease
Metabolic or Endocrine Disease
Staphylococcus Aureus Infection
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| HY-W739948 | Naltrexone-d3 |
Naltrexone-d3 is a deuterated labeled Naltrexone (HY-76711). Naltrexone is an antagonist of Opioid receptor. Naltrexone inhibits cell proliferation in vivo. Naltrexone reduces tumor growth by interfering with cell signalling and modifying the immune system.
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| HY-D3181 | CyGbPF |
CyGbPF is a granzyme B-specific near-infrared fluorescent probe. CyGbPF can be cleaved by granzyme B to remove the peptide cage group, restoring near-infrared fluorescence. CyGbPF passively accumulates in mouse tumors, and its activated fluorescence correlates with granzyme B expression, CD8+ cytotoxic T lymphocyte populations, and CD4+ helper T lymphocyte populations in tumor tissues. CyGbPF is efficiently cleared by the kidneys, enabling the assessment of immune activation via optical urine analysis. CyGbPF allows real-time non-invasive evaluation of cancer immunotherapeutic efficacy in living animals. CyGbPF can be used in research on cancers such as breast cancer. Excitation wavelength/emission wavelength: approximately 658 nm/approximately 717 nm.
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| HY-P991634 | IBI-325 |
IBI-325 is a humanized monoclonal antibody inhibitor targeting CD73. IBI-325 completely inhibits CD73 enzymatic activity without hook effect. IBI-325 reverses Adenosine monophosphate (HY-A0181)-mediated immune suppression and significantly inhibits T cell proliferation and cytokines (IL-2, IFN-γ and TNF-α) release. IBI-325 has potent antitumor activities in hPBMC-reconstituted mice model and hCD73 knock-in mice model. IBI-325 can be used for cancer immunotherapy research.
Species: Human |
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| HY-D3431 | CFSE-Tz |
CFSE-Tz is a fluorescent bioorthogonal probe constructed based on the IEDDA reaction, which is mainly used for visual tracing of amino acid uptake in living cells. The tetrazine group within the CFSE-Tz molecule quenches CFSE fluorescence via photoinduced electron transfer; after the probe specifically undergoes a bioorthogonal reaction with trans-cyclooctene-modified amino acids, the quenching effect is eliminated, and a green fluorescent signal is released, thereby dynamically monitoring the intracellular amino acid uptake process. CFSE-Tz can be applied to in vitro single-cell fluorescence imaging and studies related to amino acid metabolism in tumor cells (Ex = 495 nm, Em = 519 nm)[1][2]. |
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| HY-N12537 | PD-1/PD-L1-IN-38 |
PD-1/ PD-L1-in-38 is a PD-1/PD-L1 inhibitor, which can inhibit the proliferation of tumor cells, promote the secretion of INF-γ by CD8+ T cells, and inhibit the ability of PD-1/PD-L1 signal transduction. PD-1/PD-L1-IN-38 has antitumor activity.
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| HY-B1637S | Ditiocarb-d10 sodium |
Ditiocarb-d10 sodium (Sodium diethyldithiocarbamate-d10) is the deuterium labeled Ditiocarb sodium (HY-B1637). Ditiocarb sodium (Sodium diethyldithiocarbamate) is an orally active copper reagent. Ditiocarb sodium exhibits activities such as antioxidation, chelation, anti-tumor effects, immunomodulation, and anti-HIV properties. Ditiocarb sodium can be used in the research of tumors, inflammatory, and immune-related diseases.
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| HY-116620 | Benzomalvin C |
Benzomalvin C is a weak antagonist of the neurokinin-1 (NK1) receptor inhibiting binding of substance P by 46% when used at 100 μg/mL in vitro. It is also a weak inhibitor of indolamine 2,3-dioxygenase (IDO) with an IC50 value of 130 μM for recombinant IDO. It is isolated from Penicillium and contains an epoxide group at C-19 and C-20, which is not present in benzomalvins A, B, or E.
Source: Aspergillus sp. |
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| HY-P10535 | AAV-8 NSL epitope |
The AAV-8 NSL epitope is a specific CD8+ T cell epitope identified from the capsid of an adeno-associated virus (AAV) serotype 8. The AAV-8 NSL epitope has a high affinity for MHC I molecules and is able to bind to MHC I molecules, thereby activating CD8+ T cells. The AAV-8 NSL epitope can be used to study the impact of T cell-mediated immune responses on AAV-mediated gene transfer.
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| HY-P10794 | LH2 peptide |
LH2 peptide is a pH-responsive cell-penetrating peptide dimer with the amino acid sequence LHHLCHLLHHLCHLAG. It can increase its uptake in tumor cells under weakly acidic conditions (such as the tumor microenvironment) through the protonation of histidine residues (pKa approximately 6). When conjugated with the anticancer drug Paclitaxel (HY-B0015), the PTX-LH2 conjugate showed superior tumor suppression effects compared to paclitaxel alone in a subcutaneous breast tumor model. The LH2 peptide holds potential as a drug delivery vehicle in cancer research.
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| HY-N0707S | (S)-Indoximod-d3 |
(S)-Indoximod-d3 is the deuterium labeled (S)-Indoximod. (S)-Indoximod (1-Methyl-L-tryptophan) is an inhibitor of indoleamine 2,3-dioxygenase (IDO). (S)-Indoximod can be used for the research of cancer.
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| HY-P11280 | PRAME peptide (425-433) |
PRAME peptide (425-433) is a peptide corresponding to amino acids 425-433 of PRAME (preferentially expressed antigen) in melanoma. PRAME peptide (425-433) can be used to stimulate human PRAME-specific CD8+ T cells.
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| HY-155902C | Mal-PEG3400-OH |
Mal-PEG3400-OH (Maleimide-PEG3400-Hydroxy) is a linear heteroterminal bifunctional PEG product with maleimide and hydroxyl groups. Mal-PEG3400-OH can be used as a macroinitiator to obtain amphiphilic diblock copolymers through ring-opening polymerization of Lactate (Lactic Acid) (HY-B2227). Nanoparticles prepared using amphiphilic block copolymers can form active drug delivery systems.
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| HY-169232 | PCC16 chloride |
PCC16 chloride is a dual PROTAC degrader targeting DHHC3 and PD-L1, with a DC50 of 0.103 μM for PD-L1 degradation. PCC16 chloride induces DHHC3 degradation via the ubiquitin-proteasome pathway by recruiting the CRBN E3 ubiquitin ligase (E3 ubiquitin ligase). By targeting DHHC3-which is essential for PD-L1 palmitoylation and membrane stability-PCC16 chloride reduces PD-L1 levels, decreases PD-L1 membrane retention time, and impairs its immunosuppressive function. PCC16 chloride enhances anti-tumor immunity by disrupting PD-L1-mediated immunosuppression. PCC16 chloride can be used in the research of immune checkpoint blockade-resistant cancers.
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| HY-P991309 | ZM-008 |
ZM-008 is an anti-LLT1 monoclonal antibody. ZM-008 blocks the interaction between LLT1 and CD161 on the surface of NK cells and T cells. ZM-008 restores anti-tumor immune activity, shifts the tumor microenvironment to an immune-responsive state, and recovers NK cell-mediated cytotoxicity against tumor cells, thereby reversing immunosuppression in immune-resistant "cold" tumors. ZM-008 is applicable to the research of immune-resistant solid tumors.
Species: Human |
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| HY-13966S3 | 2-Deoxy-D-glucose-13C6 |
2-Deoxy-D-glucose-13C6 (2-DG-13C6) is 13C labeled 2-Deoxy-D-glucose. 2-Deoxy-D-glucose is a glucose analog that acts as a competitive inhibitor of glucose metabolism, inhibiting glycolysis via its actions on hexokinase.
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| HY-W250153 | Adenosine 3'-phosphate 5'-phosphosulfate lithium |
Adenosine 3'-phosphate 5'-phosphosulfate lithium, an adenine nucleotide derivative, is a selective P2Y1 antagonist with no effect on P2Y2, P2Y4, or P2Y6 receptors. Adenosine 3'-phosphate 5'-phosphosulfate lithium can competitive inhibit ADP-induced platelet aggregation, as well as the ability of ADP to cause shape change and increases in Ca2+ in platelets, but had no effect on the inhibition of stimulated adenylate cyclase by ADP. Adenosine 3'-phosphate 5'-phosphosulfate lithium is a co-substrate used for the sulfonation of glycans. Adenosine 3'-phosphate 5'-phosphosulfate lithium can be used for Golgi-resident PAP-specific 3'-phosphatase-coupled sulfotransferase assays, which as donor substrate to transfer a sulfonate group.
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| HY-P3448S | Certepetide-13C6,15N2 |
Certepetide-13C6,15N2 (CEND-1-13C6,15N2) is the 13C- and 15N-labeled Certepetide (HY-P3448). Certepetide (CEND-1) is a bifunctional cyclic peptide (a.k.a. iRGD). Certepetide is a tumor-penetrating enhancer via RGD motif interaction with alphav-integrins and via activating NRP-1, and transforms the solid tumor microenvironment into a temporary agent conduit. Certepetide accumulates in tumors, and is used in the research of pancreatic cancer and other solid tumors.
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| HY-W010510R | DL-Norvaline (Standard) |
DL-Norvaline (Standard) is the analytical standard of DL-Norvaline. This product is intended for research and analytical applications. DL-Norvaline, a derivative of L-norvaline, L-norvaline is a non-competitive inhibitor of arginase.
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| HY-B0426AS | Olopatadine-d3 hydrochloride |
Olopatadine-d3 hydrochloride (ALO4943A-d3) is the deuterium labeled Olopatadine hydrochloride. Olopatadine hydrochloride (ALO4943A; KW4679) is an orally active histamine H1 receptor antagonist and mast cell stabilizer. Olopatadine hydrochloride exerts antiallergic effects by blocking histamine H1 receptor-mediated activities. Olopatadine hydrochloride inhibits exocytosis, chemokine release, F-actin polymerization, CXCL10-induced calcium influx, and T cell chemotactic activity. Olopatadine hydrochloride also reduces the expression levels of CXCR3 on the surface of CD4+ and CD8+ T cells. Olopatadine hydrochloride inhibits scratching behavior, improves dermatitis scores, and suppresses intraepidermal neurite outgrowth. Olopatadine hydrochloride simultaneously decreases the levels of inflammatory markers, growth factors, histamine, and specific IgE, while increasing the expression of ErbB3A/HER3A. Olopatadine hydrochloride can be used in research related to seasonal pollinosis, chronic rhinitis, urticaria, allergic conjunctivitis, alopecia areata, and atopic dermatitis.
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| HY-N0717S7 | L-Valine-1-13C,15N |
L-Valine-1-13C,15N ((S)-Valine-1-13C,15N) is the 13C- and 15N-labeled L-Valine (HY-N0717). L-Valine ((S)-Valine) is a nonlinear semiorganic material. L-Valine causes lipid peroxidation and accumulation of malondialdehyde (MDA), exhibits inhibitory activity against cyanobacteria. L-Valine inhibits multidrug-resistant bacteria through activation of PI3K/Akt signaling pathway and inhibition of arginase.
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| HY-B1180R | Vinburnine (Standard) |
Vinburnine ((-)-Eburnamonine; (-)-Vincamone) (Standard) is the analytical standard of Vinburnine (HY-B1180). This product is intended for research and analytical applications. Vinburnine ((-)-Eburnamonine; (-)-Vincamone) phosphate is an orally active, blood-brain barrier permeable immunomodulator and apoptosis inducer. Vinburnine drives the secretion of IL-24 by activating the P38/MAPK/ATF3 signaling axis. Vinburnine induces reactive oxygen species production and DNA damage in cancer cells, thereby inhibiting cancer cell proliferation, activating the apoptotic cascade, and enhancing CD8+ T cell function to remodel the tumor immune microenvironment. Vinburnine can be used in the research of diseases such as melanoma.
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| HY-P3448S1 | Certepetide-13C2,15N |
Certepetide-13C2,15N (CEND-1-13C2,15N) is the 13C- and 15N-labeled Certepetide (HY-P3448). Certepetide (CEND-1) is a bifunctional cyclic peptide (a.k.a. iRGD). Certepetide is a tumor-penetrating enhancer via RGD motif interaction with alphav-integrins and via activating NRP-1, and transforms the solid tumor microenvironment into a temporary agent conduit. Certepetide accumulates in tumors, and is used in the research of pancreatic cancer and other solid tumors.
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| HY-P9994 | Pertuzumab zuvotolimod |
Pertuzumab zuvotolimod (SBT6050) is an anti-HER2 antibody-drug conjugate (ADC). Pertuzumab zuvotolimod is composed of a humanized anti-HER2 antibody (Pertuzumab) (HY-P9912A), a linker, a TLR8 agonist payload, and the drug-linker conjugate for ADC is Zuvotolimod (HY-145620). Pertuzumab zuvotolimod potently induces multiple anti-tumor immune activities through the direct activation myeloid cells and the subsequent induction of T and NK cell cytolytic activity. Pertuzumab zuvotolimod can be used for HER2-expressing solid tumors research.
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| HY-N0587R | Demethylzeylasteral (Standard) |
Demethylzeylasteral (Standard) is the analytical standard of Demethylzeylasteral. This product is intended for research and analytical applications. Demethylzeylasteral is an orally active triterpenoid compound isolated from Tripterygium wilfordii, which has functions such as anti-inflammatory, anti-tumor, anti fertility, estrogen metabolism regulation, immune suppression, and immune system regulation .
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Cancer
Inflammation or Immune System Disease
Blood or Cardio-cerebrovascular Disease
Metabolic or Endocrine Disease
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| HY-N9834 | Aureusidin |
Aureusidin is an aurone with high antioxidant and lipoxygenase inhibitory activity. Aureusidin also shows anti-inflammatory effects.
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Endogenous Metabolite
Reactive Oxygen Species (ROS)
Toll-like Receptor (TLR)
Caspase
Pyroptosis
Apoptosis
NF-κB
Arginase
Keap1-Nrf2
Heme Oxygenase (HO)
p38 MAPK
PGE synthase
TNF Receptor
NO Synthase
COX
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| HY-P10496A | MAGE-A1-derived peptide acetate |
MAGE-A1-derived peptide acetate is a short peptide sequence derived from MAGE-A1 protein. As a tumor-specific antigen, MAGE-A1-derived peptide acetate can be recognized and activated by cytotoxic T lymphocytes (CTLs), thereby generating an immune response to tumor cells expressing MAGE-A1. This immune response can lead to the lysis and death of tumor cells. MAGE-A1-derived peptide acetate can be used in the study of tumor immunity.
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| HY-131485A | 3-Acetylpyridine adenine dinucleotide, 95% |
3-Acetylpyridine adenine dinucleotide, 95% (3-APAD, 95%)is an analog of nicotinamide adenine dinucleotide (NAD). 33-Acetylpyridine adenine dinucleotide, 95% collaboratively inhibits Lactate Dehydrogenase (LDH) with bisulfite.
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| HY-D1056B2 | Lipopolysaccharides, from Proteus mirabilis |
Lipopolysaccharides, from Proteus mirabilis are lipopolysaccharide endotoxins and TLR-4 activators derived from Proteus mirabilis, classified as S-type LPS, which can activate pathogen-associated molecular patterns (PAMP) of the immune system and induce cellular secretion of migrasomes. Lipopolysaccharides, from Proteus mirabilis exhibit a typical three-part structure: O-antigen, core oligosaccharide, and lipid A. Proteus mirabilis is a major pathogen causing urinary tract infections and may also contribute to rheumatoid arthritis. Lipopolysaccharides, from Proteus mirabilis also exhibit potential anti-tumor effects, demonstrating in vivo inhibitory activity against solid tumors such as meningosarcoma and Walker carcinosarcoma.
It is recommended to prepare a solution with concentration ≥2 mg/mL. Vortex thoroughly for more than 10 minutes. Due to the adsorption characteristics of LPS, silanized container or low adsorption centrifuge tubes should be used for aliquoting and storage, and mix thoroughly before use. |
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| HY-N12125 | Entadamide A |
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| HY-W040233S1 | L-Lactic acid-2-d1 sodium |
Sodium L-Lactate-2-d is the deuterium labeled Sodium L-Lactate-2.
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| HY-P4116A | pH-Low Insertion Peptide TFA |
pH-Low Insertion Peptide TFA (pHLIP TFA) is a short, pH-responsive peptide capable of inserting across a cell membrane to form a transmembrane helix at acidic pH. pH-Low Insertion Peptide TFA targets the acidic tumor microenvironment for tumors at early and metastatic stages with high specificity, used as a specific ligand. pH-Low Insertion Peptide TFA successfully modifys polylysine polymers to have the pH-responsive capability. pH-Low Insertion Peptide TFA -based targeting of cancer presents an opportunity to monitor metabolic changes and to selectively deliver imaging and therapeutic agents to tumors.
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| HY-P990324 | Anti-AA2AR/Adenosine A2aR Antibody (3F6-9G5) |
Anti-AA2AR/Adenosine A2aR Antibody (3F6-9G5) is a humanized antibody expressed in CHO cells, targeting AA2AR/Adenosine A2aR. Anti-AA2AR/Adenosine A2aR Antibody (3F6-9G5) contains huIgG1 heavy chain and huκ light chain, with a predicted molecular weight (MW) of 146.66 kDa. The isotype control for Anti-AA2AR/Adenosine A2aR Antibody (3F6-9G5) can be referenced as Human IgG1 kappa, Isotype Control (HY-P99001).
Species: Human |
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| HY-W015913R | Pyruvic acid sodium (Standard) |
Sodium 2-oxopropanoate (Standard) is the analytical standard of Sodium 2-oxopropanoate. This product is intended for research and analytical applications. Sodium 2-oxopropanoate (Sodium pyruvate), a three-carbon metabolite of Glucose, is a compound produced in the glycolytic pathway. Sodium 2-oxopropanoate is a free radical scavenger that can scavenge ROS.
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| HY-78131S3 | Ibuprofen-13C6 |
Ibuprofen-13C6 ((±)-Ibuprofen-13C6) is a 13C labeled Ibuprofen (HY-78131). Ibuprofen ((±)-Ibuprofen) is a potent, orally active, selective COX-1 inhibitor with an IC50 value of 13 μM. Ibuprofen inhibits cell proliferation, angiogenesis, and induces cell apoptosis. Ibuprofen is a nonsteroidal anti-inflammatory agent and a nitric oxide (NO) donor. Ibuprofen ((±)-Ibuprofen) can be used in the research of pain, swelling, inflammation, infection, immunology, cancers.
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| HY-N7092A | L-(+)-Fructose, 95% |
L-(+)-Fructose, 95% (L-arabino-2-Hexulose, 95%) is the L-isomer of D-Fructose (HY-N7092). L-(+)-Fructose, 95% participates in glycolysis and gluconeogenesis, and can be used to study photosynthesis and carbohydrate storage in plant biology. L-(+)-Fructose, 95% is applicable for investigating the activity of fructokinase and other fructose-metabolizing enzymes.
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| HY-P992201 | Anti-CD160 Antibody (MAT 302) |
Anti-CD160 Antibody (MAT 302) (CL1-R2) is a human monoclonal antibody targeting CD160. Anti-CD160 Antibody (MAT 302) blocks the CD160-HVEM protein interaction, inhibits FGF2-mediated renal tubular vascular growth, and induces endothelial cell apoptosis. Anti-CD160 Antibody (MAT 302) targets CD160 on neovascularization to exert anti-angiogenic and vascular normalization effects, trigger the production of IFN-γ, TNF and IL-6 by NK cells, and enhance glucose metabolism of NK cells through the AKT/mTOR/s6k signaling pathway. Anti-CD160 Antibody (MAT 302) reduces vascular density, normalizes remaining tumor blood vessels, and inhibits tumor growth in melanoma-bearing mice. Anti-CD160 Antibody (MAT 302) can be used in research related to neovascularization, proliferative diabetic retinopathy, and melanoma.
Species: Human |
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| HY-W654139 | 5'-Deoxy-5'-(methylthio)adenosine-d3 |
5'-Deoxy-5'-(methylthio)adenosine-d3 is deuterium labeled 5'-Methylthioadenosine. 5'-Methylthioadenosine (5'-(Methylthio)-5'-deoxyadenosine) is a nucleoside generated from S-adenosylmethionine (SAM) during polyamine synthesis. 5'-Methylthioadenosine suppresses tumors by inhibiting tumor cell proliferation, invasion, and the induction of apoptosis while controlling the inflammatory micro-environments of tumor tissue. 5'-Methylthioadenosine and its associated materials have striking regulatory effects on tumorigenesis.
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| HY-N13295 | Indole-3-lactate-O-β-D-glucopyranoside |
Indole-3-lactate-O-β-D-glucopyranoside is an endogenous metabolite that acts as a plant growth regulator.
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| HY-13966S2 | 2-Deoxy-D-glucose-13C |
2-Deoxy-D-glucose-13C is the 13C labeled 2-Deoxy-D-glucose. 2-Deoxy-D-glucose is a glucose analog that acts as a competitive inhibitor of glucose metabolism, inhibiting glycolysis via its actions on hexokinase.
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| HY-P99035 | Naptumomab |
Naptumomab is a fusion protein of a tumor-targeting superantigen (TTS). Naptumomab stimulates the immune system to recognize and kill tumor cells and can be used in the study of refractory solid tumors such as renal cell carcinoma.
Species: Human |
Inflammation or Immune System Disease
Non-Small Cell Lung Cancer
Luminal Breast Cancer
Triple-Negative Breast Cancer
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| HY-B0228S9 | Adenosine-13C10,15N5 |
Adenosine-13C10,15N5 is the 13C and 15N labeled Adenosine (HY-B0228). Adenosine (Adenine riboside), a ubiquitous endogenous autacoid, acts through the enrollment of four G protein-coupled receptors: A1, A2A, A2B, and A3. Adenosine affects almost all aspects of cellular physiology, including neuronal activity, vascular function, platelet aggregation, and blood cell regulation.
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Isotope-Labeled Compounds
Apoptosis
Nucleoside Antimetabolite/Analog
Autophagy
Endogenous Metabolite
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| HY-161564 | T4/OVA |
T4/OVA is a conjugate of T4 peptide (thyroxine T4) and ovalbumin. T4/OVA is a altered peptide, which can be used to stimulate OT-I CD8+ T cells.
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| HY-W076441 | Ethyl (S)-3-hydroxybutanoate |
Ethyl (S)-3-hydroxybutanoate, also known as (S)-ethyl lactate, which is an ester formed by the condensation of ethanol and (S)-3-hydroxybutanoate, is known for its fruity, sweet smell and taste , which are commonly used as flavoring agents and fragrances in the food and cosmetic industries, and in addition, its potential use as a starting material for the synthesis of various organic compounds, including pharmaceuticals and agrochemicals, has been investigated.
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| HY-16938S | 5'-Methylthioadenosine-13C6 |
5'-Methylthioadenosine-13C6 is the 13C-labeled 5'-Methylthioadenosine. 5'-Methylthioadenosine (5'-(Methylthio)-5'-deoxyadenosine) is a nucleoside generated from S-adenosylmethionine (SAM) during polyamine synthesis. 5'-Methylthioadenosine suppresses tumors by inhibiting tumor cell proliferation, invasion, and the induction of apoptosis while controlling the inflammatory micro-environments of tumor tissue. 5'-Methylthioadenosine and its associated materials have striking regulatory effects on tumorigenesis.
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| HY-P3509 | PNC-28 |
PNC-28 is a peptide from the mdm-2-binding domain (residues 17–26) of the p53 protein which contains a membrane crossing-penetratin sequence. PNC-28 can be used for pancreatic cancer research.
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| HY-Y0399S | L-Norvaline-d5 |
L-Norvaline-d5 is the deuterium labeled L-Norvaline. L-Norvaline is the inhibitor for arginase, that promotes the production of NO, reduces oxidative stress, improves insulin resistance, and exhibits antioxidant and anti-hyperglycemic effects. L-Norvaline can be used in research of Alzheimer’s disease.
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| HY-W038795 | (S)-Ethyl lactate |
(S)-Ethyl lactate ((S)-(-)-ethyl lactate) is a volatile compound produced by plant fermentation. (S)-Ethyl lactate cansynergistically attracts palm weevils with specific pheromones and is mainly used for pest monitoring and control research.
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| HY-113081S | 1-Methyladenosine-d3 |
1-Methyl Adenosine-d3 is the deuterium labeled 1-Methyladenosine. 1-Methyladenosine is an RNA modification that can serve as a tumor marker, with elevated levels in the body associated with cancer development. Following 1-methyladenosine methylation, upregulation of PPARδ expression regulates cholesterol metabolism and activates Hedgehog signaling pathway, driving liver tumorigenesis.
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| HY-N8389 | Globulol |
Globulol is a terpenoid metabolite and Antimicrobial agent. Globulol can be isolated from Alpinia oxyphylla Miq. Globulol binds to PAK4, reduces the expression level of PAK4 in cancer cells, decreases the phosphorylation of AKT, and downregulates the expressions of STAT3, phosphorylated STAT3, and PD-L1. Globulol promotes the secretion of CCL4 by cancer cells. Globulol reduces the viability and proliferation ability of cancer cells, induces G0/G1 cell cycle arrest and Apoptosis in cancer cells, and inhibits cancer cell migration and the integrity of 3D tumor spheres. Globulol enhances the relevant effects of anti-PD-1 agents in the cancer cell microenvironment. Globulol exhibits anticancer activity against liver cancer. Globulol inhibits the mycelial growth of phytopathogenic fungi and the growth of phytopathogenic bacteria. Globulol can be used in studies related to hepatocellular carcinoma.
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| HY-176785S | MCB-294 |
MCB-294 is a dual-state pan-KRAS inhibitor that selectively inhibits KRAS over NRAS and HRAS. MCB-294 capable of binding both the active (GTP-bound) and inactive (GDP-bound) forms of KRAS with Kds of approximately 1 pM and 10 nM, respectively. MCB-294 broadly impairs the growth of hTERT-HPNE cells expressing G12D, G12C, G12V, G12S, G13D, and wild-type KRAS, with IC50s of approximately 700 nM. MCB-294 induces irreversible apoptosis in KRAS-mutated tumors. MCB-294 effectively suppress KRASG12C inhibitor-resistant cancer cells and remodel the tumor immune microenvironment. MCB-294 can be used for the study of pancreatic cancer, colorectal cancer and lung cancer.
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| HY-103695 | CD73-IN-1 |
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| HY-P10582A | SIYNFEKL TFA |
SIYNFEKL TFA is a variant of major MHC class I-restricted epitope SIINFEKL. SIYNFEKL TFA is an antigenic peptide, that can stimulate specific T cells in experimental settings to study the competitive interaction between T cell. SIYNFEKL TFA exhibits low affinity for the OT-I T cell receptor (TCR), and can be used for detection of CD8+ T cells.
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| HY-N14001 | Naamidine J |
Naamidine J is an imidazole-type alkaloids discovered in a sponge. Naamidine J inhibits inflammation by binding to the protein CSE1L (KD = 5.41 μM). Namidine J significantly inhibits the expression of pro-inflammatory factors such as TNF-α, IL-1β, and IL-6, and upregulates anti-inflammatory factors such as CD206 and Arg-1. Namidine J inhibits PD-L1 and shows antitumor activity. Namidine J significantly reduces pulmonary tissue edema, inflammatory cell infiltration and cytokine storm in mice. Namidine J can be used for the research on the immune microenvironment of acute lung injury and tumors.
Source: Pericharax heteroraphis |
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| HY-P99540 | Tuvonralimab |
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| HY-P990704 | Rilvegostomig |
Rilvegostomig (AZD-2936) is a bispecific humanized IgG1 antibody targeting PD-1 and TIGIT. Rilvegostomig induces tumor growth inhibition and modulates the tumor immune microenvironment. Rilvegostomig exhibits anti-tumor activity in metastatic non-small cell lung cancer (without prior immune checkpoint inhibitor treatment). Rilvegostomig can be used in research related to metastatic non-small cell lung cancer and endometrial cancer.
Species: Human |
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| HY-D2361 | Adenosine 2'-PEG-Biotin |
Adenosine 2'-PEG-Biotin is a biochemical reagent derived from adenosine. Adenosine 2'-PEG-Biotin regulates cell signaling pathways by mimicking the effects of endogenous adenosine and binding to its receptors. Adenosine 2'-PEG-Biotin can be used in the research of bioprobes, biosensors and diagnostic reagents.
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| HY-N3387 | Licoricidin |
Licoricidin (LCD) is isolated from Glycyrrhiza uralensis Fisch, possesses anti-cancer activities. Licoricidin (LCD) inhibit SW480 cells (IC50=7.2 μM) by inducing cycle arrest, apoptosis and autophagy, and is a potential chemopreventive or chemotherapeutic agent against colorectal cancer. Licoricidin (LCD) inhibits Lung Metastasis by inhibition of tumor angiogenesis and lymphangiogenesis as well as changes in the local microenvironment of tumor tissues the anticarcinogenic effect. Licoricidin enhanced gemcitabine-induced cytotoxicity in Osteosarcoma (OS) cells by inactivation of the Akt and NF-κB pathways in vitro and in vivo. Licoricidin blocks UVA-induced photoaging via ROS scavenging, limits the activity of MMP-1, it can be considered as an active ingredient in new topically applied anti-ageing formulations.
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| HY-W134005 | Mg(Ⅱ)-EDTA disodium tetrahydrate |
Mg(Ⅱ)-EDTA (Ethylenediaminetetraacetic acid magnesium) disodium tetrahydrate is a divalent metal chelator and ferroptosis inducer. Mg (Ⅱ)-EDTA disodium tetrahydrate reduces E-cadherin expression by chelating Ca2+ on the surface of tumor cells, thereby triggering cell dissociation and inducing epithelial-mesenchymal transition (EMT). Mg (Ⅱ)-EDTA disodium tetrahydrate further chelates lysosomal iron to form EDTA-Fe, induces ferroptosis through the Fenton reaction, and synergistically enhances immune responses to inhibit tumor metastasis. Mg (Ⅱ)-EDTA (disodium tetrahydrate) can be used in tumor-related research.
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| HY-P991023 | Safimestomig |
Safimestomig (6MW3211) is an CD47/PD-L1-targeting bispecific antibody. Safimestomig blocks CD47-mediated 'don't eat me' signaling and selectively binds to CD47 on tumor cells. Safimestomig blocks PD-L1-mediated immune checkpoint signaling. Safimestomig can be used for the research of cancer.
Species: Human |
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| HY-113383 | 2-Hydroxyvaleric acid |
2-Hydroxyvaleric acid is a medium chain α-hydroxy fatty acid. 2-Hydroxyvaleric acid is an activator in fat metabolism of palmitic acid-1-C14. 2-hydroxyvaleric acid is also used as a staining agent for measuring tissue-specific Lactate dehydrogenase activity and elevated levels of 2-hydroxyvaleric acid induces lactic acidosis.
Source: Tetrahymena pyriformis |
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| HY-113081AS | 1-Methyladenosine-d3 hydrochloride |
1-Methyladenosine-d3 hydrochloride is the hydrochloride salt form of deuterium labeled 1-Methyladenosine (HY-113081). 1-Methyladenosine is an RNA modification that can serve as a tumor marker, with elevated levels in the body associated with cancer development. Following 1-methyladenosine methylation, upregulation of PPARδ expression regulates cholesterol metabolism and activates Hedgehog signaling pathway, driving liver tumorigenesis.
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| HY-P10449 | M2 Peptide |
M2 Peptide is a peptide targeting M2-like tumor-associated macrophages (TAMs). M2 Peptide is used to carry drugs or small interfering RNA (siRNA) to promote the repolarization of M2-like macrophages to M1-like macrophages, thereby altering the immunosuppressive state in the tumor microenvironment and enhancing the anti-tumor immune response. M2 Peptide can be used to study the effect of macrophage polarization and how this polarization change affects tumor growth and metastasis.
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| HY-W012382S | N-Acetyl-L-tyrosine-d3 |
N-Acetyl-L-tyrosine-d3 is the deuterated form of N-Acetyl-L-tyrosine (HY-W012382). N-Acetyl-L-tyrosine is an orally active endogenous mitochondrial stress response regulator that can permeate the cell membrane by passive diffusion. N-Acetyl-L-tyrosine induces low-level reactive oxygen species (ROS) generation by transiently perturbing mitochondrial membrane potential, triggering reverse signaling to activate FoxO and Keap1 pathways. As a result, N-Acetyl-L-tyrosine enhances the expression of antioxidant enzyme genes, exerting anti-stress and cytoprotective effects. N-Acetyl-L-tyrosine can improve heat stress tolerance, inhibit tumor growth, and regulate energy metabolism. N-Acetyl-L-tyrosine can be used in the research of aging, metabolic diseases (such as diabetes), and cancer.
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| HY-120566 | PSB-16131 |
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| HY-P3509A | PNC-28 acetate |
PNC-28 acetate is a peptide from the mdm-2-binding domain (residues 17–26) of the p53 protein which contains a membrane crossing-penetratin sequence. PNC-28 acetate can be used for pancreatic cancer research.
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| HY-N2498 | Glomeratose A |
Glomeratose A is a lactate dehydrogenase inhibitor, isolated from Polygala tenuifolia.
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| HY-P99409 | Oregovomab |
Oregovomab (Alt-2 monoclonal antibody) is a murine mAb targeting CA125. Oregovomab induces cytotoxic immune response against CA125 expressing tumor cells.
Species: Human |
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| HY-P10581A | SIIVFEKL TFA |
SIIVFEKL TFA is a variant of the major MHC class I-restricted epitope SIINFEKL. SIIVFEKL TFA is an antigenic peptide, that can stimulate specific T cells in experimental settings to study the competitive interaction between T cells. SIIVFEKL TFA exhibits low affinity for the OT-I T cell receptor (TCR), and can be used for detection of CD8+ T cells.
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| HY-103263 | PSB-06126 |
Cancer
Neurological, Eye or Ear Disease
Inflammation or Immune System Disease
Cardiovascular Disease
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| HY-D0199R | Adenosine 5'-diphosphate disodium (Standard) |
Adenosine 5'-diphosphate (disodium) (Standard) is the analytical standard of Adenosine 5'-diphosphate (disodium). This product is intended for research and analytical applications. Adenosine 5'-diphosphate disodium is a nucleoside diphosphate. Adenosine 5'-diphosphate disodium is the product of ATP dephosphorylation by ATPases. Adenosine 5'-diphosphate disodium is a platelet aggregation agent for hemostasis and the development and extension of arterial thrombosis.
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| HY-113098R | 2-Oxovaleric acid (Standard) |
2-Oxovaleric acid (Standard) is the analytical standard of 2-Oxovaleric acid (HY-113098). This product is intended for research and analytical applications. 2-Oxovaleric acid is an analog of Pyruvate and a substrate inhibitor of Lactate dehydrogenase, exhibiting substrate inhibitory activity against lactate dehydrogenase from Phycomyces blakesleeanus.
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| HY-P10493A | NY-ESO-1 (157-165) peptide TFA |
NY-ESO-1 (157-165) peptide (TFA) is a peptide fragment from NY-ESO-1 protein. NY-ESO-1 (157-165) peptide (TFA) can activate the immune system, especially for HLA-A2 positive individuals, it can be recognized by CD8+ T cells, thus triggering an immune response. NY-ESO-1 (157-165) peptide (TFA) is expressed in a variety of tumors and can be used as a target for tumor immunotherapy.
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| HY-W011398 | Linoleate sodium |
Linoleate sodium is an orally active IL8 regulator via the JNK and NF-κB pathway. Linoleate sodium can change the composition of fatty acids and the production of metabolites in cells. Linoleate sodium has anti-inflammatory, immune-regulating, and tumor cell growth-affecting activities.
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| HY-P991191 | REGN-5054 |
REGN5054 is a fully human monoclonal IgG1 antibody that binds specifically to human and cynomolgus CD8 expressed on T cells.
Species: Human |
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| HY-P2511 | Insulin β Chain Peptide (15-23) |
Insulin β Chain Peptide (15-23) is one of the earliest antigenic epitopes to which CD8 T-cells respond.
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| HY-128749A | D-Glucaric acid tetrahydrate |
D-Glucaric acid tetrahydrate (Calcium D-glucarate tetrahydrate) is an orally active end product of the mammalian D-glucuronidation pathway. D-Glucaric acid tetrahydrate is found in a variety of fruits and vegetables. D-Glucaric acid tetrahydrate induces cell Apoptosis. D-Glucaric acid tetrahydrate reduces the expression of hippocampal myelin-related genes (Mbp, Plp1). D-Glucaric acid tetrahydrate has cholesterol-lowering and anti-tumor activities. D-Glucaric acid tetrahydrate can be used in the research of neurological diseases.
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Cancer
Neurological, Eye or Ear Disease
Inflammation or Immune System Disease
Metabolic or Endocrine Disease
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| HY-P4520 | (Trp4)-Kemptide |
(Trp4)-Kemptide is a peptide substrate for adenosine 3',5'-cyclic monophosphate-dependent protein kinase.
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| HY-P10420 | RS17 |
RS17 is an anti-tumor peptide designed to bind specifically to the CD47 molecule and block the interaction between CD47 and its ligand, SIRPα, on the surface membrane of macrophages. The main regulatory mechanism of RS17 is to prevent CD47 from transmitting selective phagocytosis signals to SIRPα by binding to CD47, so that macrophages do not recognize tumor cells as their own tissue, but phagocytose them as foreign substances, thereby inhibiting immune escape of tumor cells. RS17 can be used to study the mechanism of anti-tumor response and immune escape.
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| HY-113353S | Nicotinuric acid-d4 |
Nicotinuric acid-d4 is the 4-labeled Nicotinuric acid (HY-113353). Nicotinuric acid is an acylglycine and the major catabolite of nicotinic acid (HY-B0143). Its urinary levels correlate with body mass index, blood pressure, blood lipid parameters, and high-sensitivity C-reactive protein. Nicotinuric acid participates in coenzyme-related activities including glycolysis, gluconeogenesis, the citric acid cycle, oxidation, and long-chain fatty acid synthesis in various tissues. Nicotinuric acid is associated with the progression of metabolic syndrome to diabetes and atherosclerotic cardiovascular disease[1]
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| HY-W088011B | Sodium glycolate, 98% |
Sodium glycolate, 98% (Sodium hydroxyacetate, 98%) is an orally active, versatile organic salt. Sodium glycolate, 98% acts as an enzyme activity regulator that increases the activities of glycolate oxidase (GAO) and lactate dehydrogenase (LDH), while reducing the activity of glycolate dehydrogenase (GAD). Sodium glycolate, 98% induces oxalate biosynthesis and causes hyperoxaluria in rats. Sodium glycolate, 98% reduces urinary calcium excretion in male albino rats. Sodium glycolate, 98% can be used in studies related to calcium oxalate urolithiasis and hyperoxaluria.
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| HY-W039939 | 2-Azido-2-deoxy-D-glucose, 98% |
2-Azido-2-deoxy-D-glucose, 98% (2-ADG, 98%) is a substrate of O-GlcNAc transferase (OGT). 2-Azido-2-deoxy-D-glucose, 98% can be transferred from UDP-GlcAz to proteins in vitro via OGT mediation. When delivered as AcGlcAz, 2-Azido-2-deoxy-D-glucose, 98% enables the labeling and investigation of O-GlcNAc-modified nuclear and cytoplasmic proteins in cells. 2-Azido-2-deoxy-D-glucose, 98% undergoes strain-promoted [3+2] azide-alkyne cycloaddition (SPAAC) with technetium-99m-labeled dibenzocyclooctyne derivatives in vivo. 2-Azido-2-deoxy-D-glucose, 98% can be used in sarcoma-related research.
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| HY-113131 | Dihydroxyacetone phosphate |
Dihydroxyacetone phosphate (DHPA), a derivative of Dihydroxyacetone (DHA), is an important intermediate that participates in key pathways including glycolysis, lipid biosynthesis, and the plant Calvin cycle. Dihydroxyacetone phosphate can be used as a substrate and metabolic marker in biochemical research.
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| HY-N6073 | Soyasapogenol A |
Cancer
Metabolic or Endocrine Disease
Digestive System Disease
Viral Infection
Digestive System Inflammation
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| HY-B2227BS | Lactic acid-d4 sodium (60% w/w in water) |
Lactic acid-d4 (DL-Lactic acid-d4) sodium (60% in water) is the deuterium labeled Lactic acid sodium (60% in water) (HY-B2227B) . Lactic acid (DL-Lactic acid) sodium (60% w/w in water) is a hydroxycarboxylic acid receptor 1 (HCAR1) activator and an epigenetic modulator inducing lysine residues lactylation. Lactic acid sodium (60% w/w in water) is a glycolysis end-product, bridging the gap between glycolysis and oxidative phosphorylation. Lactic acid sodium (60% w/w in water) is an oncometabolite and has immune protective role of lactate in anti-tumor immunity. Lactic acid sodium (60% w/w in water) also has antimicrobial activity, which can be used as a food preservative.
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| HY-D0808 | Meldola blue |
Meldola blue is a biosensor for measuring lactate in serum based on screen-printed carbon electrodes modified with Meldola's Blue-Reinecke salt (MBRS-SPCE) coated with lactate dehydrogenase NAD+-dependent enzyme (from pig heart) and NAD+.
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| HY-P990263 | Anti-Mouse CD73 Antibody (TY/23) |
Anti-Mouse CD73 Antibody (TY/23) is a rat-derived IgG2a κ type antibody inhibitor, targeting to mouse CD73. Anti-Mouse CD73 Antibody (TY/23) can neutralize CD73. Anti-Mouse CD73 Antibody (TY/23) can be used for the researches of cancer, infection and immunology, such as B16F10 tumor and murine cytomegalovirus infection.
Species: Mouse |
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| HY-B2227BS3 | L-Lactic acid-13C-1 sodium (20% w/w in water) |
L-Lactic acid-13C1 (L-E-270-13C1) sodium (20% in water) is the 13C-labeled L-Lactic acid sodium (HY-W040233). L-lactate Sodium is a buildiing block which can be used as a precursor for the production of the bioplastic polymer poly-lactic acid. L-Lactic acid Sodium has antiproliferative activityy.
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| HY-113081S1 | 1-Methyladenosine-d3 hydriodide |
1-Methyladenosine-d3 hydriodide is the deuterium labeled 1-Methyladenosine (HY-113081). 1-Methyladenosine is an RNA modification that can serve as a tumor marker, with elevated levels in the body associated with cancer development. Following 1-methyladenosine methylation, upregulation of PPARδ expression regulates cholesterol metabolism and activates Hedgehog signaling pathway, driving liver tumorigenesis.
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| HY-W008807S | Phosphoenolpyruvic acid potassium-13C2 |
Phosphoenolpyruvic acid (potassium)-13C2 is the 13C labeled Phosphoenolpyruvic acid potassium (HY-W008807). Phosphoenolpyruvic acid (Phosphoenolpyruvate) potassium is a glycolysis metabolite with a high-energy phosphate group. Phosphoenolpyruvic acid potassium is involved in glycolysis and gluconeogenesis, and used as energy source to produce ATP, under the energy-limited conditions. Phosphoenolpyruvic acid potassium also exhibits cytoprotective and anti-oxidative properties.
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| HY-N0717S4 | L-Valine-1-13C |
L-Valine-1-13C ((S)-Valine-1-13C) is the 13C-labeled L-Valine (HY-N0717). L-Valine ((S)-Valine) is a nonlinear semiorganic material. L-Valine causes lipid peroxidation and accumulation of malondialdehyde (MDA), exhibits inhibitory activity against cyanobacteria. L-Valine inhibits multidrug-resistant bacteria through activation of PI3K/Akt signaling pathway and inhibition of arginase.
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| HY-112502 | MethADP |
MethADP is a specific CD73 inhibitor.
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| HY-N0600 | Ginsenoside F3 |
Ginsenoside F3 is a saponin extracted from the leaves of Panax ginseng with immunoenhancing and antitumor immunostimulatory activities. Ginsenoside F3 upregulates RIPOR2 with a Kd value of 3.77 μM. Ginsenoside F3 enhances NF‑κB activation, upregulates T‑bet and downregulates GATA‑3, increases the production of IL‑2 and IFN‑γ, decreases the production of IL‑4 and IL‑10, reverses CD8⁺ T‑cell exhaustion, restores cytokine secretion, and enhances antitumor immunity in a mouse non‑small cell lung cancer model. Ginsenoside F3 can be used for the research of non-small cell lung cancer.
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| HY-150770S | Adenosine 5'-triphosphate(ATP)-d4 ammonium solution (100 mM) |
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| HY-P991449 | LY3415244 |
LY3415244 is a bispecific antibody that targets and inhibits TIM-3 and PD-L1. LY3415244 blocks the interaction between TIM-3 on immune cells and PD-L1 on the surface of tumor cells, establishes intercellular connections between TIM-3-positive immune cells and PD-L1-positive tumor cells, and blocks dual immunosuppressive signals. LY3415244 alleviates T cell exhaustion and restores T cell proliferation. LY3415244 induces broad-spectrum anti-drug antibodies, which impairs the binding capacity to soluble TIM-3 targets. LY3415244 can be used in research related to various advanced solid tumors.
Species: Human |
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| HY-P99181 | Mupadolimab |
Inflammation or Immune System Disease
Non-Small Cell Lung Cancer
Triple-Negative Breast Cancer
SARS-CoV-2 Infection
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| HY-P99169 | Uliledlimab |
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| HY-P11303 | PADRE peptide |
PADRE peptide is a pan-HLA-DR binding epitope and immunostimulant. PADRE peptide binds to the peptide-binding groove of MHC class II molecules for presentation to CD4+ T cells, thereby effectively stimulating specific immune responses. PADRE peptide not only enhances anti-tumor immune responses, inhibits tumor growth and prolongs survival; it also significantly increases the frequency of E7-specific CD8+ T cells and improves therapeutic efficacy against TC-1 tumors when used in combination with E7 peptide-based vaccines and poly (I:C). The intensity of the immune response induced by PADRE peptide is lower than that of the Ii-PADRE DNA vaccine, and it fails to enhance the immune effect of CRT-E7 DNA. PADRE peptide is widely applicable to research on related tumors such as melanoma, glioblastoma and cervical cancer.
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| HY-159067 | DEAE-dextran, MW 500000 hydrochloride |
DEAE-dextran, MW 500000 hydrochloride (DEAE-dextran, MW 500000 hydrochloride, from bacterial (Leuconostoc mesenteroides)) is a high-molecular-weight positively charged polymer that significantly enhances the uptake of viral RNA by tissue culture cells. When employed in the delivery system for "tumor immunity" RNA-splenocyte transfer, DEAE-dextran can markedly extend the lifespan of tumor-bearing animals, comparable to that of actively immunized animals. Furthermore, DEAE-dextran serves as a complexing agent for nucleic acids, forming composite particles with DNA/RNA for extensive applications in gene delivery. Additionally, DEAE-dextran can be utilized as a coating for liposomes.
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| HY-B2227BS1 | Lactic acid-d3 sodium (60% w/w in water) |
Lactic acid-d3 (DL-Lactic acid-d3) sodium (60% in water) is the deuterium labeled Lactic acid sodium (60% in water) (HY-B2227B) . Lactic acid (DL-Lactic acid) sodium (60% w/w in water) is a hydroxycarboxylic acid receptor 1 (HCAR1) activator and an epigenetic modulator inducing lysine residues lactylation. Lactic acid sodium (60% w/w in water) is a glycolysis end-product, bridging the gap between glycolysis and oxidative phosphorylation. Lactic acid sodium (60% w/w in water) is an oncometabolite and has immune protective role of lactate in anti-tumor immunity. Lactic acid sodium (60% w/w in water) also has antimicrobial activity, which can be used as a food preservative.
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| HY-59208 | 4-Quinolinol |
4-Quinolone (Kynurine) is a quinoline derivative. Kynurine pathway modulates tryptophan metabolism and involves in neuroprotective effect. Kynurine promotes tumor cell survival and motility by suppressing antitumor immune.
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| HY-W251598S | Bicarbonate-13C sodium |
Bicarbonate-13C sodium is the 13C-labeled Sodium bicarbonate (HY-Y0756). Sodium bicarbonate is an inorganic salt that is neutral to slightly alkaline and easily decomposes when exposed to moisture in the air. Sodium bicarbonate can maintain the pH of the culture medium, thereby affecting the expression of inducible nitric oxide synthase (iNOS) and nitric oxide (NO) production in macrophages and reversing the acidosis of the tumor microenvironment. Sodium bicarbonate is widely used in the fields of food, medicine, cosmetics, etc. Its main uses include buffers, flavoring agents, disinfectants, pharmaceuticals, and proton gradient regulators. Sodium bicarbonate is also commonly used as an antacid to inhibit gastrointestinal diseases, neutralize gastric acid, and reduce gastric discomfort.
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| HY-W010918S2 | Adenosine 5'-diphosphate-15N5 dilithium |
Adenosine 5'-diphosphate-15N5 (Adenosine diphosphate-15N5 dilithium) dilithium is 15N labeled Adenosine 5'-diphosphate (HY-W010918). Adenosine 5'-diphosphate (Adenosine diphosphate) is a nucleoside diphosphate. Adenosine 5'-diphosphate is the product of ATP dephosphorylation by ATPases. Adenosine 5'-diphosphate induces human platelet aggregation and inhibits stimulated adenylate cyclase by an action at P2T-purinoceptors.
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| HY-P990068 | Perenostobart |
Perenostobart (SRF617) is a human IgG4 antibody with inhibitory activity against CD39 ATPase. Perenostobart inhibits CD39-mediated hydrolysis of extracellular ATP to AMP, with IC50 values of 1.9 nM (HEK293 OE cells), 0.7 nM (MOLP-8 cells), and 1.2 nM (RBC-lysed whole blood). Perenostobart enhances CD4+ T-cell proliferation, promotes dendritic cell maturation, and boosts inflammasome activation in macrophages in the presence of ATP. Perenostobart demonstrates significant single-agent anti-tumor efficacy in MOLP-8 and H520 xenograft models. Perenostobart can be used for the study of cancer.
Species: Human |
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| HY-185057 | S-D-Lactoylglutathione |
S-D-Lactoylglutathione (S-Lactylglutathione; (R)-S-Lactoylglutathione) is a multifunctional metabolic intermediate of the glyoxalase system. S-D-Lactoylglutathione activates K+ efflux in bacteria by displacing inhibitory glutathione from KefGB channels, thereby acidifying the cytoplasm. In eukaryotic cells, S-D-Lactoylglutathione mediates S-glutathionylation as a substrate of glyoxalase 2. S-D-Lactoylglutathione serves as a sensitive metabolic biomarker for neodymium nitrate neurotoxicity; when used in combination with MSCs-exo, it upregulates glutathione levels, downregulates lactate dehydrogenase and Glo2 levels, and inhibits cellular inflammatory responses and pyroptosis. S-D-Lactoylglutathione can be used in research related to prostate cancer, breast cancer, non-small cell lung cancer, sepsis-associated encephalopathy, and neurotoxicity.
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| HY-P990651 | PY314 |
PY314 is a humanized antibody targeting TREM2. PY314 binds TREM2 on tumor-associated macrophages, depletes TREM2-high tumor-associated macrophages, reduces pro-tumorigenic M2 macrophage infiltration, increases CD8+ T cell, NK cell, and M1 macrophage infiltration, creates a proinflammatory tumor microenvironment, and promotes antitumor immune responseS. PY314 can be used for the research of platinum-resistant ovarian cancer, advanced solid tumors, breast cancer, and advanced refractory solid tumors.
Species: Human |
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| HY-W010510 | DL-Norvaline |
DL-Norvaline, a derivative of L-norvaline, L-norvaline is a non-competitive inhibitor of arginase.
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| HY-P990961 | Palverafusp alfa |
Palverafusp alfa (IMM-2510; SYN-2510) is a PD-L1/VEGF-targeting IgG1κ type humanized antibody. Palverafusp alfa blocks PD-1/PD-L1 binding, relieves immune suppression, mediates PD-L1-directed antibody-dependent cellular cytotoxicity (ADCC). Palverafusp alfa blocks VEGF/VEGFR binding, inhibits angiogenic signaling, relieves VEGF-induced immune suppression. Palverafusp alfa reduces endothelial cell proliferation, enhances ADCC and antibody-dependent cellular phagocytosis (ADCP), inhibits tumor growth, reverses T cell immune suppression. Palverafusp alfa exhibits immune stimulatory, antiangiogenic, and anti-tumor activity in the tumor microenvironment. Palverafusp alfa can be used for the research of cancer, such as solid tumors, non-small cell lung cancer.
Species: Human |
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| HY-W039898 | α-D-Mannose pentaacetate |
α-D-Mannose pentaacetate (1,2,3,4,6-Penta-O-acetyl-α-D-mannopyranose) acts as a lactate promoter. It increases lactate production in rat red blood cells.
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| HY-N0717S1 | L-Valine-13C5,15N |
L-Valine-13C5,15N ((S)-Valine-13C5,15) is the 13C- and 15N-labeled L-Valine (HY-N0717). L-Valine ((S)-Valine) is a nonlinear semiorganic material. L-Valine causes lipid peroxidation and accumulation of malondialdehyde (MDA), exhibits inhibitory activity against cyanobacteria. L-Valine inhibits multidrug-resistant bacteria through activation of PI3K/Akt signaling pathway and inhibition of arginase.
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| HY-129476 | L-Canaline |
L-Canaline is a nonprotein amino acid stored in many leguminous plants. L-Canaline is a cytotoxic metabolite catalyzed by L-canavanine and its arginase. L-Canaline is a potent and irreversible inhibitor of ornithine aminotransferase. L-Canaline inhibits the growth of the malaria parasite Plasmodium falciparum with an IC50 of 297 nM. L-Canaline has anticancer and antiproliferative effects.
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| HY-P990042 | Gotistobart |
Gotistobart (ONC-392; BNT 316) is a humanized anti-CTLA-4 antibody with selective regulatory T cell depletion activity in the tumor microenvironment. Gotistobart can be used for the research of cancer, such as non-small cell lung cancer.
Species: Human |
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| HY-B0228S | Adenosine-d1 |
Adenosine-d is the deuterium labeled Adenosine. Adenosine (Adenine riboside), a ubiquitous endogenous autacoid, acts through the enrollment of four G protein-coupled receptors: A1, A2A, A2B, and A3. Adenosine affects almost all aspects of cellular physiology, including neuronal activity, vascular function, platelet aggregation, and blood cell regulation.
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Isotope-Labeled Compounds
Nucleoside Antimetabolite/Analog
Autophagy
Apoptosis
Endogenous Metabolite
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| HY-N2126 | Parishin E |
Parishin E is a modulator of hexokinase 2, lactate dehydrogenase A, and silent information regulator 6 (sirtuin 6), and is also a component present in Gastrodia elata Blume. Parishin E reduces the expression of hexokinase 2 and lactate dehydrogenase A, thereby regulating the process of cellular glycolysis. Parishin E regulates the deacetylation mediated by silent information regulator 6 (Sirtuin 6), and inhibits histone 3 lactylation modifications at the H3K18la and H3K27la sites. Parishin E inhibits macrophage polarization. Parishin E alleviates LPS-induced inflammatory responses and suppresses the expression of pro-inflammatory cytokines. Parishin E exerts ameliorating effects on rheumatoid arthritis. Parishin E can be used in studies related to rheumatoid arthritis.
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| HY-P990635 | NGM-120 |
NGM-120 is a fully humanized IgG1 monoclonal antibody targeting GFRAL, which functions by blocking the GDF15-GFRAL axis. NGM-120 reduces serum GDF15 levels, increases body weight, expands central memory and proliferative CD8+ T cell populations, and decreases immunosuppressive and naive regulatory T cell populations. NGM-120 can be used for research on advanced prostate cancer.
Species: Human |
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| HY-113511C | Glycogen, from bovine liver, ≥85% |
Glycogen, from bovine liver, ≥85% is a branched polymer of glucose synthesized by animal cells for energy storage and release that can be isolated from bovine liver. Glycogen, from bovine liver, ≥85% is a biochemical reagent that can be used for life science related research.
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| HY-P0277 | Carcinoembryonic antigen peptide 1 |
Carcinoembryonic antigen peptide 1 (CEA peptide) is a 9-amino acid HLA-A0201-binding cytotoxic T lymphocyte (CTL) epitope peptide derived from carcinoembryonic antigen (CEA). The IC50 of Carcinoembryonic antigen peptide 1 binding to HLA-A0201 is 2 μM. Carcinoembryonic antigen peptide 1 binds to HLA-A0201 to form a peptide-MHC I complex, which is recognized by the T cell receptor (TCR) of CAP1-specific CD8+ CTLs, thereby inducing antigen-specific T cell activation, IFN-γ production, and CTL-mediated lysis of target cells. Carcinoembryonic antigen peptide 1 is used in research on CEA-specific CTL responses and colorectal cancer.
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| HY-P4823 | pTH (1-37) (human) |
PTH (1-37) human is an adenylate cyclase stimulator and a normocalcemic regulator. PTH (1-37) human participates in cAMP-dependent signal transduction to affect the proliferation of skeletal tissue cells and bone metabolism. PTH (1-37) human induces cyclic adenosine monophosphate responses in human primary osteoblast-like cells and is also widely used in osteoporosis-related research.
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| HY-P99057 | Varlilumab |
Varlilumab (CDX-1127) is an agonist anti-CD27 monoclonal antibody. Varlilumab can promote T cell expansion and activate the immune response. Varlilumab has anti-tumor activity and can be used in the research of hematological malignancies and solid tumors.
Species: Human |
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| HY-P99128 | Anti-Mouse CD8 beta Antibody (53-5.8) |
Anti-Mouse CD8 beta Antibody (53-5.8) is an anti-mouse CD8 beta IgG2a monoclonal antibody. Anti-Mouse CD8 beta Antibody (53-5.8) can deplete CD8+ T cells and enhance cytotoxicity. Anti-Mouse CD8 beta Antibody (53-5.8) can be used for research on immunology.
Species: Mouse |
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| HY-Y1939A | Metaphosphoric acid, 33.5-36.5% |
Metaphosphoric acid, 33.5-36.5% (Glacial phosphoric acid, 33.5-36.5%) is a precipitant used for rapid enzymatic measurement of blood lactate and pyruvate. Metaphosphoric acid, 33.5-36.5% can also be used as a dehydrating agent, and its derivative sodium hexametaphosphate can be used as a chelating agent and food additive.
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| HY-B0228S11 | Adenosine-15N5 |
Adenosine-15N5 (Adenine riboside-15N5; D-Adenosine-15N5) is the 15N labled Adenosine (HY-B0228). Adenosine (Adenine riboside), a ubiquitous endogenous autacoid, acts through the enrollment of four G protein-coupled receptors: A1, A2A, A2B, and A3. Adenosine affects almost all aspects of cellular physiology, including neuronal activity, vascular function, platelet aggregation, and blood cell regulation.
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| HY-P99759 | Nogapendekin alfa (his tag) |
Nogapendekin alfa his tag is an immunostimulant that binds to the IL-2RβγC complex on immune cells. Nogapendekin alfa his tag stimulates the proliferation and activation of natural killer cells and CD8+ T cells, upregulates the expression of granzyme B and perforin, and activates the innate and adaptive immune branches. Nogapendekin alfa his tag forms ALT-803 with IL-15RαSuFc; this complex has an extended biological half-life, improved biodistribution and retention in lymphoid tissues, enhances natural killer cell-mediated rituximab-dependent cellular cytotoxicity, and reduces tumor burden and improves survival when combined with anti-CD20 monoclonal antibody therapy. Nogapendekin alfa his tag can be used in the research of non-Hodgkin's lymphoma.
Species: Human |
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| HY-P10131 | 3BP-3940 |
3BP-3940 is a highly potent and selective peptide inhibitor of FAP that targets cancer-associated fibroblasts (CAFs) in the tumor microenvironment. 3BP-3940 can be labeled with radionuclides (such as Ga-68) for precise tumor imaging or Lu-177 for the development of targeted anticancer technologies. 3BP-3940 accumulates in tumor lesions and can be used to diagnose and inhibit various solid cancers and CAFs-related diseases.
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| HY-P4116 | pH-Low Insertion Peptide |
pH-Low Insertion Peptide (pHLIP) is a short, pH-responsive peptide capable of inserting across a cell membrane to form a transmembrane helix at acidic pH. pH-Low Insertion Peptide targets the acidic tumor microenvironment for tumors at early and metastatic stages with high specificity, used as a specific ligand. pH-Low Insertion Peptide successfully modify polylysine polymers to have the pH-responsive capability. pH-Low Insertion Peptide-based targeting of cancer presents an opportunity to monitor metabolic changes, and to selectively deliver imaging and therapeutic agents to tumors.
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| HY-Y0520S | Itaconic acid-13C5 |
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| HY-110213 | BODIPY 630/650X |
BODIPY 630/650X is a red fluorescent dye that targets amine groups. BODIPY 630/650X displays excitation/emission maxima of 630/650 nm, respectively. BODIPY 630/650X can be used to covalently label proteins, antibodies, or other amine-containing biomolecules for detection and imaging.
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| HY-W251598B | Sodium bicarbonate, for molecular biology |
Sodium bicarbonate, for molecular biology (Sodium hydrogen carbonate for molecular biolog; Soda bicarbonate for molecular biolog) is an inorganic salt. Sodium bicarbonate can maintain the pH of the culture medium, thereby affecting the expression of inducible nitric oxide synthase (iNOS) and nitric oxide (NO) production in macrophages and reversing the acidosis of the tumor microenvironment. Sodium bicarbonate is widely used in the fields of food, cosmetics, etc. Its main uses include buffers, flavoring agents, disinfectants, pharmaceuticals, and proton gradient regulators. Sodium bicarbonate is also commonly used as an antacid to inhibit gastrointestinal diseases, neutralize gastric acid, and reduce gastric discomfort.
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| HY-B0445GL | NAD+ (GMP Like) |
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| HY-113128S | sn-Glycerol 3-phosphate-13C3 disodium |
sn-Glycerol 3-phosphate-13C3 disodium is the 13C-labeled sn-Glycerol 3-phosphate disodium. sn-Glycerol 3-phosphate disodium is produced by cytosolic glycerol 3-phosphate dehydrogenase pathway through the reduction of dihydroxyacetone phosphate using NADH formed during glycolysis.
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| HY-P10108 | Hexokinase II VDAC binding domain peptide, cell-permeable |
Hexokinase II VDAC binding domain peptide (Hxk2VBD peptide) is a cell-permeable hexokinase II VDAC binding domain. Hexokinase II VDAC binding domain peptide inhibits mitochondrial localization of hexokinase 2 (HXK2). Hexokinase II VDAC binding domain peptide inhibits neurotrophic factor-directed axon outgrowth.
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| HY-113098 | 2-Oxovaleric acid |
2-Oxovaleric acid is an analog of Pyruvate and a substrate inhibitor of Lactate dehydrogenase, exhibiting substrate inhibitory activity against lactate dehydrogenase from Phycomyces blakesleeanus.
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| HY-107202GL | Polyinosinic-polycytidylic acid (GMP Like) |
Polyinosinic-polycytidylic acid (Poly(I:C)) (GMP Like) is the GMP Like class Polyinosinic-polycytidylic acid (HY-107202), and can be used as pharmaceutical excipients. Polyinosinic-polycytidylic acid (Poly(I:C)) is a synthetic analog of double-stranded RNA and an agonist of toll-like receptor 3 (TLR3) and retinoic acid inducible gene I (RIG-I)-like receptors (RIG-I and MDA5). Polyinosinic-polycytidylic acid can be used as a vaccine adjuvant to enhance innate and adaptive immune responses, and to alter the tumor microenvironment. Polyinosinic-polycytidylic acid can directly trigger cancer cells to undergo apoptosis.
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| HY-P991192 | BI-1808 |
BI-1808 is a human IgG1 monoclonal antibody that targets TNFR2by blocking interaction of TNFR2 with ligand TNF-α, confers FcγR-dependent depletion of Treg and mediates expansion of intratumoral CD8+ T cells.
Species: Human |
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| HY-B0228S6 | Adenosine-d2 |
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| HY-U00462 | D-Mannoheptulose |
D-Mannoheptulose is a 7-carbon keto sugar found in avocado. D-mannoheptulose is a specific inhibitor of D-glucose phosphorylation by hexokinase isoenzymes. D-Mannoheptulose can block insulin release and utilization of carbohydrate in rat. D-Mannoheptulose has various functions as anti-oxidants, anticancer effects and energy sources.
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| HY-B2227R | Lactic acid (Standard) |
Lactic acid (Standard) (DL-Lactic acid (Standard)) is the analytical standard of Lactic acid (HY-B2227). This product is intended for research and analytical applications. Lactic acid (DL-Lactic acid) is a hydroxycarboxylic acid receptor 1 (HCAR1) activator and an epigenetic modulator inducing lysine residues lactylation. Lactic acid is a glycolysis end-product, bridging the gap between glycolysis and oxidative phosphorylation. Lactic acid is an oncometabolite and has immune protective role of lactate in anti-tumor immunity. Lactic acid also has antimicrobial activity, which can be used as a food preservative.
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| HY-124151 | Adenosine-2'-monophosphate |
Adenosine-2'-monophosphate (2'-AMP) is converted by extracellular 2’,3'-CAMP. Adenosine-2'-monophosphate is further metabolized to extracellular adenosine (a mechanism called the extracellular 2’,3’-cAMP-adenosine pathway). Adenosine-2'-monophosphate inhibits LPS-induced TNF-α and CXCL10 production via A2A receptor activation.
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| HY-W170255 | Sodium mercaptopyruvate |
Sodium mercaptopyruvate serves as a substrate for Lactate dehydrogenase and Sulfurtransferase. Sodium mercaptopyruvate forms through enzymatic transamination and oxidative deamination of L-cysteine (HY-Y0337). Sodium mercaptopyruvate abolishes lactate dehydrogenase reaction activity. It increases urinary thiosulfate excretion, fails to sustain rat growth by replacing L-cystine (HY-N0394), and does not induce morbidity or mortality in mice. Sodium mercaptopyruvate is applicable to research related to 3-mercaptopyruvate disulfiduria and 3-mercaptolactate disulfiduria.
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| HY-P10493 | NY-ESO-1 (157-165) peptide |
NY-ESO-1 (157-165) peptide is a peptide fragment from NY-ESO-1 protein. NY-ESO-1 (157-165) peptide can activate the immune system, especially for HLA-A2 positive individuals, it can be recognized by CD8+ T cells, thus triggering an immune response. NY-ESO-1 (157-165) peptide is expressed in a variety of tumors and can be used as a target for tumor immunotherapy.
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| HY-B0228S13 | Adenosine-13C10 |
Adenosine-13C10 (Adenine riboside-13C10; D-Adenosine-13C10) is 13C-labeled Adenosine (HY-B0228). Adenosine (Adenine riboside), a ubiquitous endogenous autacoid, acts through the enrollment of four G protein-coupled receptors: A1, A2A, A2B, and A3. Adenosine affects almost all aspects of cellular physiology, including neuronal activity, vascular function, platelet aggregation, and blood cell regulation.
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Isotope-Labeled Compounds
Nucleoside Antimetabolite/Analog
Endogenous Metabolite
Autophagy
Apoptosis
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| HY-P99118 | Serplulimab |
Serplulimab (HLX 10) is a humanized anti-PD-1 monoclonal antibody. Serplulimab can inhibit tumor growth, regulate the tumor microenvironment, and has anti-tumor activity. Serplulimab can be used in the research of cancer such as lung cancer and colon cancer.
Species: Human |
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| HY-40146 | tert-Butyl 3-oxoazetidine-1-carboxylate |
tert-Butyl 3-oxoazetidine-1-carboxylate is a synthetic intermediate. tert-Butyl 3-oxoazetidine-1-carboxylate can be used in compound research and development targeting cancer and tuberculosis.
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| HY-A0181S1 | Adenosine monophosphate-15N5 dilithium |
Adenosine monophosphate-15N5 dilithium is the 15N labeled Adenosine monophosphate (HY-A0181). Adenosine monophosphate is an adenosine A1 receptor agonist. Adenosine monophosphate has significant antiviral activity against HSV-1 and HSV-2. Adenosine monophosphate is a key cellular metabolite regulating energy homeostasis and signal transduction.
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| HY-W012642 | 2-Aminopurine |
2-Aminopurine, a fluorescent analog of guanosine and adenosine, is a widely used fluorescence-decay-based probe of DNA structure. When 2-Aminopurine is inserted in anoligonucleotide, its fluorescence is highly quenched by stacking with the natural bases. 2-Aminopurine has been used to probe nucleic acid structure and dynamics.
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| HY-N0717R | L-Valine (Standard) |
L-Valine (Standard) ((S)-Valine (Standard)) is the analytical standard of L-Valine (HY-N0717). This product is intended for research and analytical applications. L-Valine ((S)-Valine) is a nonlinear semiorganic material. L-Valine causes lipid peroxidation and accumulation of malondialdehyde (MDA), exhibits inhibitory activity against cyanobacteria. L-Valine inhibits multidrug-resistant bacteria through activation of PI3K/Akt signaling pathway and inhibition of arginase.
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| HY-W250308A | ε-Poly-L-lysine hydrochloride (MV 2000-5000) |
ε-Poly-L-lysine (Epsilon-polylysine; ε-Polylysine) hydrochloride (MV 2000-5000) is a polycationic antibacterial agent with broad-spectrum activity against Gram-positive bacteria, Gram-negative bacteria, fungi, yeasts and specific bacteriophages. ε-Poly-L-lysine hydrochloride (MV 2000-5000) exerts bactericidal effects through mechanisms such as disrupting microbial membranes, inducing ROS production, inhibiting metabolism and spore germination. ε-Poly-L-lysine hydrochloride (MV 2000-5000) also regulates the expression of multiple key genes including sodA, oxyR and recA. ε-Poly-L-lysine hydrochloride (MV 2000-5000) exhibits properties such as low eukaryotic cytotoxicity, thermal stability and pH stability, and supports tissue regeneration and anti-tumor applications. ε-Poly-L-lysine hydrochloride (MV 2000-5000) can be applied in research fields including bacterial and fungal infections, diabetic ulcers, and methicillin-resistant Staphylococcus aureus infections.
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| HY-N6940 | Prosapogenin A |
Prosapogenin A, a natural product from Veratrum, induces apoptosis in human cancer cells in vitro via inhibition of the STAT3 signaling pathway and glycolysis.
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Lung Cancer
Breast Cancer
Colorectal Cancer
Liver Cancer
Thyroid Cancer
Digestive System Inflammation
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| HY-112502C | MethADP triammonium |
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| HY-Y0399 | L-Norvaline |
L-Norvaline is the inhibitor for arginase, that promotes the production of NO, reduces oxidative stress, improves insulin resistance, and exhibits antioxidant and anti-hyperglycemic effects. L-Norvaline can be used in research of Alzheimer’s disease.
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| HY-171821 | PF-08046054 |
PF-08046054 (SGN-PDL1V) is a PD-L1-directed Antibody-drug conjugate (ADC), which is comprised of an anti-PD-L1 antibody conjugated to VcMMAE (HY-15575). PF-08046054 is direct cytotoxicity to PD-L1-expressing tumor cells via the intracellular delivery of MMAE. PF-08046054 can be used for the study of solid tumors
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| HY-A0181R | Adenosine monophosphate (Standard) |
Adenosine monophosphate (Standard) is the analytical standard of Adenosine monophosphate (HY-A0181). This product is intended for research and analytical applications. Adenosine monophosphate is an adenosine A1 receptor agonist. Adenosine monophosphate has significant antiviral activity against HSV-1 and HSV-2. Adenosine monophosphate is a key cellular metabolite regulating energy homeostasis and signal transduction.
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| HY-P2776A | Hexokinase, Yeast |
Hexokinase, Yeast is a hexokinase derived from yeast. Hexokinase, Yeast can be isolated from both fresh and dried baker's yeast. Hexokinases are evolutionarily conserved enzymes that phosphorylate six-carbon sugars (hexoses). Hexokinase prepares glucose for intracellular utilization. Hexokinase, Yeast is inhibited by 6-Deoxy-6-fluoroglucos.
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| HY-W062216 | 2-Aminoimidazole |
2-Aminoimidazole is a potent antibiofilm agent that can be used as an adjuvant to antimicrobial. 2-aminoimidazoles disrupts the ability of bacteria to protect themselves by inhibiting biofilm formation and genetically-encoded antibiotic resistance traits. 2-Aminoimidazole is also a weak noncompetitive inhibitor of human arginase I with a Ki of 3.6 mM.
Source: secondary metabolites in various marine sponges |
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| HY-P6292A | KS-133 TFA |
KS-133 TFA is a highly selective and potent antagonist of the vascular active enteropeptide receptor 2 (VIPR2) with IC50 values for Ca influx measurement and cAMP measurement of 24.8 nM and 500 nM, respectively. KS-133 TFA reverses the tumor-promoting M2 phenotype of tumor-associated macrophages to the anti-tumor M1 phenotype, alters the tumor immune microenvironment, and inhibits tumor growth. KS-133 TFA can be used for research on schizophrenia and cancer immune regulation.
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| HY-113054 | DL-Glyceraldehyde 3-phosphate |
DL-Glyceraldehyde 3-phosphate is an intermediate in several metabolic pathways, including glycolysis and gluconeogenesis. DL-Glyceraldehyde 3-phosphate is a potent inhibitor of the growth of E. coli. DL-Glyceraldehyde 3-phosphate is a competitive inhibitor of the acyltransferase.
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| HY-B0228R | Adenosine (Standard) |
Adenosine (Standard) is the analytical standard of Adenosine. This product is intended for research and analytical applications. Adenosine (Adenine riboside), a ubiquitous endogenous autacoid, acts through the enrollment of four G protein-coupled receptors: A1, A2A, A2B, and A3. Adenosine affects almost all aspects of cellular physiology, including neuronal activity, vascular function, platelet aggregation, and blood cell regulation.
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| HY-N0707 | (S)-Indoximod |
(S)-Indoximod (1-Methyl-L-tryptophan) is an inhibitor of indoleamine 2,3-dioxygenase (IDO) (Ki: 19 μM). (S)-Indoximod can be used for the research of cancer and neurological disease.
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| HY-P99046 | Selicrelumab |
Selicrelumab is an agonist CD40 antibody, induces changes in the tumor microenvironment. Selicrelumab can be used for the research of pancreatic cance and neoadjuvant study.
Species: Human |
Colorectal Cancer
Metastatic Breast Cancer
Chronic Lymphocytic Leukemia
Non-Hodgkin Lymphoma
Pancreatic Ductal Adenocarcinoma
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| HY-128748 | DL-Glyceraldehyde |
DL-Glyceraldehyde is a bioactive substance involved in cellular energy metabolism and a key intermediate in sugar metabolism pathways (such as glycolysis and gluconeogenesis). During glycolysis, DL-Glyceraldehyde is converted by enzymes into other metabolites to provide energy for cells; during gluconeogenesis, DL-Glyceraldehyde participates in the synthesis of glucose as a precursor. In the field of medical research, DL-Glyceraldehyde can be used to study diseases related to sugar metabolism, such as diabetes, tumors, etc
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| HY-W251598C | Sodium bicarbonate, for cell culture |
Sodium bicarbonate, for cell culture (Sodium hydrogen carbonate for cell culture; Soda bicarbonate for cell culture) is an inorganic salt that is neutral to slightly alkaline and easily decomposes when exposed to moisture in the air. Sodium bicarbonate, for cell culture can maintain the pH of the culture medium, thereby affecting the expression of inducible nitric oxide synthase (iNOS) and nitric oxide (NO) production in macrophages and reversing the acidosis of the tumor microenvironment. Sodium bicarbonate is widely used in the fields of food, medicine, cosmetics, etc. Its main uses include buffers, flavoring agents, disinfectants, pharmaceuticals, and proton gradient regulators. Sodium bicarbonate is also commonly used as an antacid to inhibit gastrointestinal diseases, neutralize gastric acid, and reduce gastric discomfort.
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| HY-P1120 | WKYMVm |
WKYMVm is a selective formylpeptide receptor 2 (FPR2) agonist. WKYMVm has a powerful anti-inflammatory effect that can reduce lung injury and spinal cord injury. WKYMVm ameliorates obesity by regulating lipid metabolism and leptin signaling. WKYMVm is involved in the regulation of immune cells by activating FPRs. WKYMVm can promote the chemotactic migration of immune cells and inhibit the apoptosis of phagocytes. In addition, WKYMVm may play a favorable or unfavorable role in tumors, depending on the type of tumor.
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Cancer
Neurological, Eye or Ear Disease
Metabolic or Endocrine Disease
Digestive System Disease
Digestive System Inflammation
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| HY-113131A | Dihydroxyacetone phosphate hemimagnesium hydrate |
Dihydroxyacetone phosphate (DHPA) hemimagnesium hydrate, a derivative of Dihydroxyacetone (DHA), is an important intermediate that participates in key pathways including glycolysis, lipid biosynthesis, and the plant Calvin cycle. Dihydroxyacetone phosphate hemimagnesium hydrate can be used as a substrate and metabolic marker in biochemical research.
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| HY-137677B | GTPγS tetralithium |
GTPγS (Guanosine 5'-[γ-thio]triphosphate) tetralithium is a G-protein activator that protects proteins from proteolytic degradation, stimulates GLUT4 translocation in a tyrosine kinase-dependent manner, stimulate phospholipases and induce actin polymerization. GTPγS tetralithium to couple with G- protein α, to study its effect on kinase activity. GTPγS tetralithium acts as a component of lysis buffer.
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| HY-P991097 | Pumitamig |
Pumitamig (PM-8002, BNT-327) is a bispecific antibody targeting PD-L1 and VEGF-A, with immune activation and anti-angiogenic activities. By binding to PD-L1, Pumitamig restores the function of effector T cells, while neutralizing VEGF-A in the tumor microenvironment to reverse its inhibition on the infiltration and activation of immune cells and normalize tumor blood vessels. Pumitamig can also be combined with various ADCs targeting TROP2, B7H3, HER2, HER3 for the research of advanced/metastatic solid tumors, including non-small cell lung cancer, ovarian cancer, triple-negative breast cancer, cervical cancer, etc. Pumitamig also exhibits potential efficacy in "cold" tumors with low PD-L1 expression that are insensitive to immunotherapy.
Species: Human |
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| HY-B0228S1 | Adenosine-13C5 |
Adenosine-13C5 is the 13C labeled Adenosine. Adenosine (Adenine riboside), a ubiquitous endogenous autacoid, acts through the enrollment of four G protein-coupled receptors: A1, A2A, A2B, and A3. Adenosine affects almost all aspects of cellular physiology, including neuronal activity, vascular function, platelet aggregation, and blood cell regulation.
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| HY-W020780 | mPEG5000-Mal |
mPEG5000-Mal (mPEG5000-Maleimide) is a PEG-derived selective covalent binding agent for sulfhydryl groups (RSGs), which can form irreversible thioether bonds with sulfhydryl groups under near-neutral conditions via the maleimide group. The mechanism of action of mPEG5000-Mal can be divided into two categories: firstly, as an enzyme modifier, it binds to target proteins through hydrophobic interactions, hydrogen bonds, and van der Waals forces, altering the protein's secondary structure; secondly, as a nanoparticle surface modifier, it covalently binds to sulfhydryl groups on the surface of red blood cells, changing the surface properties and morphology of the red blood cells, leading to their phagocytosis by macrophages of the reticuloendothelial system. mPEG5000-Mal can react with free cysteine in proteins, increasing the apparent molecular weight of the modified protein by 10-15 kDa for detection purposes. mPEG5000-Mal can enhance the thermal stability and catalytic activity of enzymes, and improve the macrophage targeting of nanoparticles, enabling targeted drug delivery. mPEG5000-Mal can be applied in enzyme engineering research in the food industry and in oncology, assisting radiotherapy by inhibiting tumor-associated macrophage infiltration and enhancing anti-tumor immune responses.
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| HY-113491 | 3-Phosphoglyceric acid |
3-Phosphoglyceric acid is a metabolic intermediate in both glycolysis and the Calvin cycle. 3-Phosphoglyceric acid is involved in alveolar macrophage epigenetic regulation.
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| HY-P990688 | Xaluritamig |
Xaluritamig (AMG-509) is a bispecific T cell engager and cytolytic agent with a Kd of 27.6 nM for human CD3ε. Xaluritamig binds to CD3ε via an anti-CD3 single-chain variable fragment (scFv) domain, and to STEAP1 via a bispecific anti-STEAP1 antigen-binding fragment (Fab) domain, thereby recruiting and activating T cells and forming a bridge between T cells and STEAP1-expressing cancer cells. Xaluritamig induces T cell-mediated redirected cytotoxicity, tumor cell lysis, cytokine release, CD8+ T cell activation and expansion, as well as tumor stasis or regression. Xaluritamig contains an Fc domain with no effector function, which prolongs serum half-life, exhibits only minimal activity against cells with low STEAP1 expression and normal cells, and shows extremely low target-related off-tumor toxicity in cynomolgus monkeys. Xaluritamig is used in STEAP1×CD3 XmAb 2+1 immunotherapy and in research on metastatic castration-resistant prostate cancer and Ewing sarcoma.
Species: Human |
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| HY-P9997 | Rosnilimab |
Rosnilimab (ANB030) is a PD-1 agonist IgG1 monoclonal antibody. Rosnilimab can inhibit T cell proliferation, the secretion of inflammatory cytokines, and reduce CD4 and CD8 T cells with high PD-1 expression. Rosnilimab can be used in the research of inflammatory diseases such as colitis and rheumatoid arthritis.
Species: Human |
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| HY-P70225 | LDHA Protein, Human (His) |
LDHA protein catalyzes the stereospecific interconversion of pyruvate and lactate, concomitantly exchanging NADH and NAD(+). LDHA Protein, Human (His) is the recombinant human-derived LDHA protein, expressed by E. coli , with N-6*His labeled tag.
Species: Human; Source: E. coli |
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| HY-P70679 | IDO-1 Protein, Human (His) |
IDO proteins catalyze the first step in tryptophan catabolism via the kynurenine pathway, which is critical for immune tolerance and homeostasis maintenance. IDO-1 Protein, Human (His) is the recombinant human-derived IDO protein, expressed by E. coli , with N-6*His labeled tag.
Species: Human; Source: E. coli |
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| HY-P72616 | IDO-1 Protein, Mouse (His) |
IDO Protein, an enzyme, is involved in the metabolism of tryptophan. Dysregulation of IDO Protein has been linked to immune escape mechanisms and tumor progression. Targeting IDO Protein may provide potential therapeutic interventions in cancer by modulating tryptophan metabolism, enhancing immune responses, and inhibiting tumor growth. IDO-1 Protein, Mouse (His) is the recombinant mouse-derived IDO protein, expressed by E. coli , with N-6*His labeled tag.
Species: Mouse; Source: E. coli |
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| HY-P75530 | ADK/Adenosine Kinase Protein, Human (HEK293) |
ADK is an enzyme that catalyzes the transfer of gamma-phosphate from adenosine triphosphate (ATP) to adenosine (Ado) to form adenosine monophosphate (AMP). ADK acts as a potential regulator of extracellular adenosine and intracellular adenine nucleotide concentrations. ADK is a therapeutic target for controlling obesity and non-alcoholic fatty liver disease. ADK/Adenosine Kinase Protein, Human (HEK293) is the recombinant human-derived ADK/Adenosine Kinase protein, expressed by HEK293 , with tag free.
Species: Human; Source: HEK293 |
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| HY-P70259 | LDHA Protein, Mouse (HEK293, His) |
LDHA protein catalyzes the simultaneous and stereospecific interconversion of pyruvate and lactate, accompanied by the reciprocal interconversion of NADH and NAD(+).LDHA Protein, Mouse (HEK293, His) is the recombinant mouse-derived LDHA protein, expressed by HEK293 , with C-6*His labeled tag.
Species: Mouse; Source: HEK293 |
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| HY-P73271 | LDHA Protein, Rat (His) |
The LDHA protein facilitates the simultaneous and stereospecific interconversion of pyruvate and lactate, accompanied by the concomitant exchange of NADH and NAD(+).LDHA Protein, Rat (His) is the recombinant rat-derived LDHA protein, expressed by E.coli , with N-His labeled tag.
Species: Rat; Source: E. coli |
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| HY-P7603 | Arginase-2/ARG2 Protein, Human (His) |
Arginase-2/ARG2 Protein, Human (His) expresses in E. coli with a His tag at the N-terminus. Arginase-2 (Arg2) acts as a fasting-induced hepatocyte factor that protects against hepatic and peripheral fat accumulation, hepatic inflammatory responses, and insulin and glucose intolerance in obese murine models.
Species: Human; Source: E. coli |
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| HY-P74429 | Adenosine Deaminase/ADA Protein, Human (sf9, His) |
The adenosine deaminase/ADA protein catalyzes the hydrolytic deamination of adenosine and 2-deoxyadenosine, which is critical for purine metabolism and adenosine homeostasis. It affects cell signaling indirectly by regulating extracellular adenosine. Adenosine Deaminase/ADA Protein, Human (sf9, His) is the recombinant human-derived Adenosine Deaminase/ADA protein, expressed by Sf9 insect cells , with C-His labeled tag.
Species: Human; Source: Sf9 insect cells |
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| HY-P77134 | LDH Protein, P. falciparum (His) |
The pfHPRT (Plasmodium falciparum hypoxanthine-guanine phosphoribosyltransferase) protein is a member of the LDH/MDH (lactate dehydrogenase/malate dehydrogenase) superfamily. It plays a crucial role in the purine metabolism salvage pathway of the malaria-causing parasite Plasmodium falciparum. LDH Protein, P. falciparum (His) is the recombinant LDH protein, expressed by E. coli , with C-His labeled tag.
Species: Others; Source: E. coli |
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| HY-P76250 | CECR1 Protein, Human (sf9, His) |
CECR1, an adenosine deaminase, degrades extracellular adenosine, a pivotal signaling molecule, with activity dependent on elevated adenosine levels. It binds cell surfaces through proteoglycans, hinting at roles in cell proliferation and differentiation beyond its enzyme function. This dual functionality highlights its potential significance in cellular regulatory processes. CECR1 Protein, Human (sf9, His) is the recombinant human-derived CECR1 protein, expressed by Sf9 insect cells , with C-His labeled tag.
Species: Human; Source: Sf9 insect cells |
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| HY-P702202 | ADORA1 Protein, Human (Cell-Free, His) |
ADORA1 Protein, a receptor for adenosine, inhibits adenylyl cyclase through G proteins, modulating cellular activity. ADORA1 Protein, Human (Cell-Free, His) is the recombinant human-derived ADORA1 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of ADORA1 Protein, Human (Cell-Free, His) is 326 a.a., with molecular weight of 39.3 kDa.
Species: Human; Source: E. coli Cell-free |
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| HY-P7541 | Arginase-1/ARG1 Protein, Human (C-His) |
Arginase-1 Protein, Human (C-His) expresses in E. coli with a His tag at the C-terminus. Arginase-1 Protein inhibits the growth of the arginine-depleting enzyme arginine deiminase (ADI)-resistant Hep3B tumor cells in mice.
Species: Human; Source: E. coli |
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| HY-P71919 | TIGAR Protein, Human (TAT) |
TIGAR is a protein that helps cells survive stress by regulating glycolysis and promoting cell survival. It reduces reactive oxygen species (ROS) levels and protects against oxidative damage. TIGAR also plays a role in promoting tissue regeneration and has neuroprotective effects. In cancer cells, TIGAR promotes DNA repair and is involved in tumor progression. TIGAR Protein, Human (TAT) is the recombinant human-derived TIGAR protein, expressed by E. coli , with C-TAT labeled tag.
Species: Human; Source: E. coli |
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| HY-P703633 | METTL14-METTL3 Protein, Human (sf9, His, Strep) |
METTL3 and METTL14 are important players in RNA methylation specifically involved in N6-methyladenosine (m6A) modification. METTL3 and METTL14 have shown associations with certain cancers and neurological disorders. METTL14-METTL3 Protein, Human (sf9, His, Strep) is expressed by Sf9 insect cells and carries Strep and His tags.
Species: Human; Source: Sf9 insect cells |
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| HY-P70863 | IDO-2 Protein, Human (His) |
The IDO-2 protein plays a key role in cellular processes, catalyzing the initial and rate-limiting steps in the catabolism of the essential amino acid tryptophan in the kynurenine pathway. This enzymatic activity has been confirmed in multiple studies, establishing IDO-2 as a key regulator of tryptophan metabolism with important implications for immune regulation. IDO-2 Protein, Human (His) is the recombinant human-derived IDO-2 protein, expressed by E. coli , with C-6*His labeled tag.
Species: Human; Source: E. coli |
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| HY-P7602 | Arginase-1/ARG1 Protein, Human (HEK293, His) |
Arginase-1 Protein, Human (HEK293, His) expresses in HEK293 cells with a His tag at the C-terminus. Arginase-1 Protein inhibits the growth of the arginine-depleting enzyme arginine deiminase (ADI)-resistant Hep3B tumor cells in mice.
Species: Human; Source: HEK293 |
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| HY-P71522 | IIdD Protein, E.coli (His) |
GLO1/Glyoxalase I Protein catalyzes the conversion of hemimercaptal to S-lactoylglutathione, detoxifying cytotoxic methylglyoxal produced in glycolysis. Beyond detoxification, GLO1 regulates NF-kappa-B transcriptional activity in TNF-induced pathways, indicating its role in inflammation. Additionally, GLO1 is crucial for normal osteoclastogenesis, emphasizing its broader involvement in cellular processes. IIdD Protein, E.coli (His) is the recombinant E. coli-derived IIdD protein, expressed by E. coli , with N-His labeled tag.
Species: E.coli; Source: E. coli |
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| HY-P702855 | LDHC Protein, Human (sf9, His) |
LDHC Protein, Human (sf9, His) is the recombinant human-derived LDHC, expressed by Sf9 insect cells , with N-6*His labeled tag. ,
Species: Human; Source: Sf9 insect cells |
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| HY-P73270 | LDHA Protein, Mouse (His) |
LDHA protein catalyzes the simultaneous and stereospecific interconversion of pyruvate and lactate, accompanied by the reciprocal interconversion of NADH and NAD(+).LDHA Protein, Mouse (His) is the recombinant mouse-derived LDHA protein, expressed by E.coli , with N-His labeled tag.
Species: Mouse; Source: E. coli |
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| HY-P71743 | IDO-2 Protein, Human (P.pastoris, His) |
The IDO-2 protein plays a key role in cellular processes, catalyzing the initial and rate-limiting steps in the catabolism of the essential amino acid tryptophan in the kynurenine pathway. This enzymatic activity has been confirmed in multiple studies, establishing IDO-2 as a key regulator of tryptophan metabolism with important implications for immune regulation. IDO-2 Protein, Human (P.pastoris, His) is the recombinant human-derived IDO-2 protein, expressed by P. pastoris , with N-His labeled tag.
Species: Human; Source: P. pastoris |
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| HY-P72090 | Arginase-2/ARG2 Protein, Mouse (His-SUMO) |
Arginase-2 (ARG2) is a multifunctional regulator central to the regulation of arginine metabolism and nitric oxide synthesis outside the urea cycle. In addition to its hepatic effects, ARG2 affects innate and adaptive immune responses, negatively affecting the survival of activated CD4(+) and CD8(+) T cells. Arginase-2/ARG2 Protein, Mouse (His-SUMO) is the recombinant mouse-derived Arginase-2/ARG2 protein, expressed by E. coli , with N-6*His, N-SUMO labeled tag.
Species: Mouse; Source: E. coli |
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| HY-P75529 | ADK/Adenosine Kinase Protein, Human (sf9, His-GST) |
ADK is an enzyme that catalyzes the transfer of gamma-phosphate from adenosine triphosphate (ATP) to adenosine (Ado) to form adenosine monophosphate (AMP). ADK acts as a potential regulator of extracellular adenosine and intracellular adenine nucleotide concentrations. ADK is a therapeutic target for controlling obesity and non-alcoholic fatty liver disease. ADK/Adenosine Kinase Protein, Human (sf9, His-GST) is the recombinant human-derived ADK/Adenosine Kinase protein, expressed by Sf9 insect cells , with N-His, N-GST labeled tag.
Species: Human; Source: Sf9 insect cells |
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| HY-P700899 | ADORA2A Protein-VLP, Human (HEK293) |
ADORA2A Protein-VLP, Human (HEK293) is recommended for animal immunization, ELISA. It is not recommended for receptor-ligand interaction detection and SPR/BLI assay since there are other irrelevant membrane proteins of the host on the VLP envelope, and the receptor-ligand interaction will have strong background interference. High requirements for chips and experimental protocols are needed for SPR/BLI assays. If VLP control is required, it is recommended HY-P705433.
Species: Human; Source: HEK293 |
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| HY-P706213 | ADORA2A Protein-VLP, Human (HEK293, His) |
ADORA2A Protein-VLP, Human (HEK293, His) is recommended for animal immunization, ELISA. It is not recommended for receptor-ligand interaction detection and SPR/BLI assay since there are other irrelevant membrane proteins of the host on the VLP envelope, and the receptor-ligand interaction will have strong background interference. High requirements for chips and experimental protocols are needed for SPR/BLI assays. If VLP control is required, it is recommended HHY-P701236.
Species: Human; Source: HEK293 |
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| HY-P701500 | UEVLD Protein, Human (sf9) |
UEVLD proteins are considered potential negative regulators of polyubiquitination, possibly controlling the ubiquitin-proteasome system. Its ability to form homodimers suggests that it has self-interacting properties, which may contribute to its role in regulating polyubiquitin chains. UEVLD Protein, Human (sf9) is the recombinant human-derived UEVLD protein, expressed by sf9 insect cells , with tag free.
Species: Human; Source: Sf9 insect cells |
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| HY-P702912 | METTL3 Protein, Human (sf9, FLAG) |
METTL3 Protein, Human (sf9, FLAG) is the recombinant human-derived METTL3, expressed by Sf9 insect cells , with N-Flag labeled tag. ,
Species: Human; Source: Sf9 insect cells |
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| HY-P702919 | IDO-2 Protein, Mouse (His) |
IDO-2 Protein, Mouse (His) is the recombinant mouse-derived IDO2, expressed by E. coli , with N-6*His labeled tag.
Species: Mouse; Source: E. coli |
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| HY-P701499 | UEVLD Protein, Human (sf9, His, StrepⅡ) |
UEVLD proteins are considered potential negative regulators of polyubiquitination, possibly controlling the ubiquitin-proteasome system. Its ability to form homodimers suggests that it has self-interacting properties, which may contribute to its role in regulating polyubiquitin chains. UEVLD Protein, Human (sf9, His, Strep) is the recombinant human-derived UEVLD protein, expressed by sf9 insect cells , with N-Strep, N-8*His labeled tag.
Species: Human; Source: Sf9 insect cells |
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| HY-P702162 | ido Protein, Bacillus thuringiensis |
IDO Protein, an enzyme, is involved in the conversion of tryptophan to kynurenine. Dysregulation of IDO Protein has been associated with immune suppression and tumor development. Targeting IDO Protein may present potential therapeutic approaches in cancer by modulating tryptophan metabolism, restoring immune responses, and inhibiting tumor growth. ido Protein, Bacillus thuringiensis is the recombinant ido protein, expressed by E. coli , with tag free.
Species: Others; Source: E. coli |
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| HY-P702163 | ido Protein, Bacillus thuringiensis (FLAG, His) |
IDO Protein, an enzyme, is involved in the conversion of tryptophan to kynurenine. Dysregulation of IDO Protein has been associated with immune suppression and tumor development. Targeting IDO Protein may present potential therapeutic approaches in cancer by modulating tryptophan metabolism, restoring immune responses, and inhibiting tumor growth. ido Protein, Bacillus thuringiensis (FLAG, His) is the recombinant ido protein, expressed by E. coli , with N-6*His, N-Flag labeled tag.
Species: Others; Source: E. coli |
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| HY-P705455 | Arginase-2/ARG2 Protein, Human (332a.a, His) |
Species: Human; Source: E. coli |
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| HY-P705470 | METTL3 Protein, Human (His) |
Species: Human; Source: E. coli |
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| HY-P80738 | Lactate Dehydrogenase A Antibody (YA317) |
Lactate Dehydrogenase A Antibody (YA317) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Lactate Dehydrogenase A.
Host: Rabbit; Reactivity: Human, Rat |
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| HY-P82325 | Lactate Dehydrogenase B Antibody (YA2070) |
Lactate Dehydrogenase B Antibody (YA2070) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Lactate Dehydrogenase B.
Host: Rabbit; Reactivity: Human |
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| HY-P86409 | Arginase-1 Antibody (YA6101) |
Arginase-1 Antibody (YA6101) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Arginase-1.
Host: Rabbit; Reactivity: Human, Mouse, Rat |
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| HY-P80019 | Arginase-1 Antibody (YA613) |
Arginase-1 Antibody (YA613) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Arginase-1.
Host: Rabbit; Reactivity: Human |
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| HY-P80422 | Lactate Dehydrogenase Antibody (YA316) |
Lactate Dehydrogenase Antibody (YA316) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Lactate Dehydrogenase.
Host: Rabbit; Reactivity: Human, Mouse |
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| HY-P83355 | Indoleamine 2,3-dioxygenase Antibody (YA3100) |
Indoleamine 2,3-dioxygenase Antibody (YA3100) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Indoleamine 2,3-dioxygenase.
Host: Rabbit; Reactivity: Human |
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| HY-P83950 | Arginase-1 Antibody (YA3647) |
Arginase-1 Antibody (YA3647) is a Mouse-derived and non-conjugated IgG2b monoclonal antibody, targeting to Arginase-1.
Host: Mouse; Reactivity: Human, Rat |
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| HY-P83596 | Adenosine A1 Receptor Antibody (YA3341) |
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| HY-P82944 | ADK Antibody (YA2689) |
ADK Antibody (YA2689) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to ADK.
Host: Rabbit; Reactivity: Human, Mouse, Rat |
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| HY-P86598 | METTL3 Antibody (YA6290) |
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| HY-P80745 | Arginase-1 Antibody (YA307) |
Arginase-1 Antibody (YA307) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Arginase-1.
Host: Rabbit; Reactivity: Mouse, Rat |
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| HY-P810451 | Adenosine Deaminase Antibody (YA9756) |
Adenosine Deaminase Antibody (YA9756) is a Rabbit-derived and non-conjugated IgG Monoclonal antibody, targeting to Adenosine Deaminase.
Host: Rabbit; Reactivity: Human, Rat |
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| HY-P810843 | ADAR2 Antibody |
ADAR2 Antibody is a Rabbit-derived and non-conjugated IgG Polyclonal antibody, targeting to ADAR2.
Host: Rabbit; Reactivity: Human, Mouse, Rat |
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| HY-P810849 | Arginase 2 Antibody |
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| HY-P82862 | Adenosine Deaminase Antibody (YA2607) |
Adenosine Deaminase Antibody (YA2607) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Adenosine Deaminase.
Host: Rabbit; Reactivity: Human, Rat |
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| HY-P82862A | Adenosine Deaminase Antibody (YA2607)(PBS only) |
Adenosine Deaminase Antibody (YA2607) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Adenosine Deaminase.
Host: Rabbit; Reactivity: Human, Rat |
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| HY-P80739 | Lactate Dehydrogenase C Antibody (YA315) |
Lactate Dehydrogenase C Antibody (YA315) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Lactate Dehydrogenase C.
Host: Rabbit; Reactivity: Human |
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| HY-P80739A | Lactate Dehydrogenase C Antibody (YA315)(PBS only) |
Lactate Dehydrogenase C Antibody (YA315) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Lactate Dehydrogenase C.
Host: Rabbit; Reactivity: Human |
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| HY-P80745A | Arginase-1 Antibody (YA307)(PBS only) |
Arginase-1 Antibody (YA307) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Arginase-1.
Host: Rabbit; Reactivity: Mouse, Rat |
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| HY-P80994A | Lactate Dehydrogenase A Antibody (YA3482)(PBS only) |
Lactate Dehydrogenase A Antibody (YA3482) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Lactate Dehydrogenase A.
Host: Rabbit; Reactivity: Human, Mouse, Rat |
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| HY-P82944A | ADK Antibody (YA2689)(PBS only) |
ADK Antibody (YA2689) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to ADK.
Host: Rabbit; Reactivity: Human, Mouse, Rat |
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| HY-P83148 | Arginase 2 Antibody (YA2893) |
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| HY-P83355A | Indoleamine 2,3-dioxygenase Antibody (YA3100)(PBS only) |
Indoleamine 2,3-dioxygenase Antibody (YA3100) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Indoleamine 2,3-dioxygenase.
Host: Rabbit; Reactivity: Human |
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| HY-P83596A | Adenosine A1 Receptor Antibody (YA3341)(PBS only) |
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| HY-P83950A | Arginase-1 Antibody (YA3647)(PBS only) |
Arginase-1 Antibody (YA3647) is a Mouse-derived and non-conjugated IgG2b monoclonal antibody, targeting to Arginase-1.
Host: Mouse; Reactivity: Human |
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| HY-P86602 | Lactate Dehydrogenase Antibody (YA6294) |
Lactate Dehydrogenase Antibody (YA6294) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Lactate Dehydrogenase.
Host: Rabbit; Reactivity: Human, Mouse, Rat |
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| HY-P86628 | Lactate Dehydrogenase Isoenzyme V Antibody (YA6320) |
Lactate Dehydrogenase Isoenzyme V Antibody (YA6320) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Lactate Dehydrogenase Isoenzyme V.
Host: Rabbit; Reactivity: Human, Mouse, Rat |
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| HY-P88269 | IDO2 Antibody (YA7953) |
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| HY-P88269A | IDO2 Antibody (YA7953)(PBS only) |
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| HY-P80994 | Lactate Dehydrogenase A Antibody (YA3482) |
Lactate Dehydrogenase A Antibody (YA3482) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Lactate Dehydrogenase A.
Host: Rabbit; Reactivity: Human, Mouse, Rat |
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| HY-P810486 | Lactate Dehydrogenase C Antibody |
Lactate Dehydrogenase C Antibody is a Rabbit-derived and non-conjugated IgG polyclonal antibody, targeting to Lactate Dehydrogenase C.
Host: Rabbit; Reactivity: Human, Mouse |
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| HY-K0309 | Mouse CD8+ T Cells Negative Selection Kit |
MCE Mouse CD8+ T Cells Negative Selection Kit is designed for the isolation of CD8+ T cells from single cell suspensions of mouse spleen cells and lymph nodes. |
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| HY-K2033 | OptiLNP Antibody-ctLNP pDNA Transfection Reagent (Jurkat Cells) |
MCE OptiLNP Antibody-ctLNP pDNA Transfection Reagent (Jurkat Cells) utilizes antibody-conjugated cell-targeted lipid nanoparticle (Cell-targeted Lipid Nanoparticle, ctLNP) technology to achieve highly efficient nucleic acid(eg. pDNA、mRNA、sgRNA、siRNA) delivery into Jurkat cells. It is designed for in vitro transfection of Jurkat cells and is well suited for applications in immunotherapy, tumor immunology, and other immune cell-related research. |
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