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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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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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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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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! -
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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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 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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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 -
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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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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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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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. -
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 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. -
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. -
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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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. -
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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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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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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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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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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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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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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IACS-8803 is a highly potent cyclic dinucleotide stimulator of interferon genes (STING) agonist with robust systemic antitumor efficacy.
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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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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. -
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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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. -
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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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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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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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. -
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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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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Mogamulizumab is an Anti-CCR4 monoclonal antibody. It enhances antibody-dependent cellular cytotoxicity and is effective against leukemia.
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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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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-50895 | Gefitinib |
Gefitinib (ZD1839) is a potent, selective and orally active EGFR tyrosine kinase inhibitor with an IC50 of 33 nM. Gefitinib selectively inhibits EGF-stimulated tumor cell growth (IC50 of 54 nM) and that blocks EGF-stimulated EGFR autophosphorylation in tumor cells. Gefitinib also induces autophagy and cell apoptosis, which can be used for cancer related research, such as Lung cancer and breast cancer .
|
Neurological, Eye or Ear Disease
Lung Cancer
Breast Cancer
Colorectal Cancer
Prostate Cancer
Liver Cancer
Pancreatic Cancer
Ovarian Cancer
Digestive System Inflammation
SARS-CoV-2 Infection
Hepatitis C Virus Infection
Obesity
|
217
|
| HY-15772 | Osimertinib |
Lung Cancer
Colorectal Cancer
Prostate Cancer
Liver Cancer
Pancreatic Cancer
Ovarian Cancer
Glucose Metabolism
SARS-CoV-2 Infection
Hepatitis C Virus Infection
Obesity
|
202
|
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| HY-50896 | Erlotinib |
Erlotinib (CP-358774) is a selective, orally active EGFR tyrosine kinase inhibitor. Erlotinib also acts as a substrate and inhibitor of OATP2B1, with an IC50 of approximately 0.079 μM for inhibiting OATP2B1-mediated uptake of estrone 3-sulfate. Erlotinib blocks EGFR phosphorylation, downstream signal transduction, as well as the growth and proliferation of cancer cells. Erlotinib inhibits MMP-10-mediated renal injury, fibrotic lesions, the ERK1/2, GSK-3β and β-catenin signaling pathways, fibronectin, α-SMA, collagen deposition, and renal injury markers. Erlotinib is metabolized via CYP3A to produce the active metabolite OSI-420. Erlotinib can be used in research related to non-small cell lung cancer, gastric cancer, papillary renal cell carcinoma, pancreatic cancer, renal fibrosis, and other conditions.
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143
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| HY-10261 | Afatinib |
Afatinib (BIBW 2992) is an orally active, potent and irreversible dual specificity inhibitor of ErbB family (EGFR and HER2), with IC50 values of 0.5 nM, 0.4 nM, 10 nM and 14 nM for EGFRwt, EGFRL858R, EGFRL858R/T790M and HER2, respectively. Afatinib can be used for the research of esophageal squamous cell carcinoma (ESCC), non-small cell lung cancer (NSCLC) and gastric cancer.
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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
Hepatitis C Virus Infection
Obesity
Lung Fibrosis
Rheumatoid Arthritis
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111
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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 11,212 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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99
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| HY-50898 | Lapatinib |
Neurological, Eye or Ear Disease
Lung Cancer
Colorectal Cancer
Prostate Cancer
Gastric Cancer
Liver Cancer
Pancreatic Cancer
Ovarian Cancer
HER-2 Positive Breast Cancer
Metastatic Breast Cancer
SARS-CoV-2 Infection
Hepatitis C Virus Infection
Obesity
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95
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| HY-L049 | Antibacterial Compound Library |
Antibacterial agents are a group of materials that fight against pathogenic bacteria. Thus, by killing or reducing the metabolic activity of bacteria, their pathogenic effect in the biological environments will be minimized. The most widely used antibacterial agents exert their effects on bacterial cell wall synthesis, protein synthesis, DNA replication and metabolic pathways. However, resistance to antimicrobial agents has become a major source of morbidity and mortality worldwide. The main mechanisms of resistance are limiting uptake of a drug, modification of a drug target, inactivation of a drug, and active efflux of a drug. Therefore, it is an urgent need to develop new drugs targeted at resistant organisms.
MCE offers a unique collection of 1,998 compounds with validated antibacterial activities. MCE antibacterial compound library is an effective tool for drug repurposing screening, combination screening and biological investigation.
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92
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| HY-14596 | Genistein |
Neurological, Eye or Ear Disease
Lung Cancer
Colorectal Cancer
Prostate Cancer
Liver Cancer
Pancreatic Cancer
Ovarian Cancer
Digestive System Inflammation
SARS-CoV-2 Infection
Hepatitis C Virus Infection
Obesity
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91
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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 820 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-L048 | Antifungal Compound Library |
The high rates of morbidity and mortality caused by fungal infections are associated with the current limited antifungal arsenal and the high toxicity of the compounds. Additionally, identifying novel drug targets is challenging because there are many similarities between fungal and human cells. The most common antifungal targets include fungal RNA synthesis and cell wall and membrane components, though new antifungal targets are being investigated. Nonetheless, fungi have developed resistance mechanisms, such as overexpression of efflux pump proteins, overexpression and changes in drug targets and biofilm formation, emphasizing the importance of discovering new antifungal drugs and therapies. Due to the limited antifungal arsenal, researchers have sought to improve treatment via different approaches, such as the combination of antifungal drugs, development of new formulations for antifungal agents and modifications to the chemical structures of traditional antifungals, etc.
MCE offers a unique collection of 584 compounds with validated antifungal activities. MCE antifungal compound library is an effective tool for drug repurposing screening, combination screening and biological investigation.
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87
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| HY-L940 | Antiviral Lead-like compound library |
Owing to the widespread transmission and frequent mutation of viral diseases, as well as the continuous emergence of new viruses and drug-resistant strains, antiviral drug development is facing increasingly stringent requirements. Antiviral compound libraries serve as important tools for drug screening, mechanism research and development, enabling the discovery and investigation of various antiviral drugs.
These compounds act through diverse antiviral mechanisms, targeting key steps in viral replication, assembly and invasion. They exert antiviral effects by inhibiting viral nucleic acid synthesis, blocking viral protein processing, and preventing viral binding to host cells. This library covers various types of antiviral compounds, including nucleosides, non-nucleosides, protease inhibitors and integrase inhibitors. It supports research on influenza virus, herpes virus, hepatitis virus, emerging respiratory viruses and other pathogens, and enables high-throughput screening of novel antiviral candidates to rapidly identify potential active compounds against diverse viruses. It also facilitates mechanistic studies to elucidate drug-target interactions and viral resistance mechanisms, and supports the screening of effective compounds against mutant strains for research on viral variation and drug resistance.
This antiviral library consists of 6,804 compounds with lead-like physicochemical properties. The core sources of the compounds include analogs of known antiviral molecues with a similarity score ≥ 0.6. MCE has collected more than 1450 antiviral molecules. As a small-molecule collection with both activity potential and structural modifiability, it provides strong support for antiviral drug research and development.
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85
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| HY-L075 | Anti-Lung Cancer Compound Library |
Lung cancer is a major global health problem, as it is the leading cause of cancer-related deaths worldwide. Lung cancer is divided into two categories: small cell lung cancer and non-small cell lung cancer (NSCLC). Non-small cell lung cancer accounts for about 85 percent of lung cancers.
As with all cancers, lung cancer may be treated with surgery, chemotherapy, radiation therapy, targeted therapy, immunotherapy or a combination thereof. Targeted therapy is one of the most exciting developments in lung cancer medicine, especially for NSCLC. Extensive genomic characterization of NSCLC has led to the identification of molecular subtypes of NSCLC that are oncogene addicted and exquisitely sensitive to targeted therapies. These include activating mutations in epidermal growth factor receptor (EGFR) and BRAF or echinoderm microtubule-associated protein-like 4 (EML4)-anaplastic lymphoma kinase (ALK) fusions and ROS1 receptor tyrosine kinase fusions. These are important targets for target therapy.
MCE offers a unique collection of 3,042 compounds with identified and potential anti-lung cancer activity. These compounds target lung cancer’s major targets and signaling pathways. MCE anti-lung cancer compound library is a useful tool for anti-lung cancer drugs screening and other related research.
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84
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| HY-L079 | Anti-Blood Cancer Compound Library |
Blood cancers, also called hematologic cancers, occur when abnormal blood cells start growing out of control, interrupting the function of normal blood cells, which fight off infection and produce new blood cells. Most blood cancers start in the bone marrow, which is where blood is produced. There are three main types of blood cancers: leukemia, lymphoma and myeloma, which afflict millions of children and adults every year, and are often deadly.
Some common blood cancer treatments include stem cell transplantation, chemotherapy, radiation therapy, targeted therapy, immunotherapy or a combination thereof. As we begin to understand the key signaling pathways and molecular drivers of malignant transformation in haematological disorders, new treatment strategies will continue to be developed.
MCE offers a unique collection of 4,302 compounds with identified and potential anti-blood cancer activity. These compounds target blood cancer’s major targets and signaling pathways. MCE anti-blood cancer compound library is a useful tool for anti-blood cancer drugs screening and other related research.
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83
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| HY-L082 | Antiparasitic Compound library |
A parasite is an organism that lives on or in a host organism and gets its food from or at the expense of its host. Parasites of humans include protozoans, helminths, and ecto-parasites (organisms that live on the external surface of a host). They are responsible for many diseases and are transmitted to their hosts most often through the ingestion of contaminated food, water or through the bite of an arthropod (e.g., a fly or tick), which can act as an intermediate host and as a vector. Parasitic diseases of humans are a major global health problem causing significant morbidity and mortality, especially in developing countries. Each year there are hundreds of millions of people infected with disease-causing parasites, particularly in tropical and subtropical regions of the world, resulting in an estimated one million deaths. Therefore, there is a dire need of novel anti-parasitic drugs.
MCE has a unique collection of 671 compounds with validated anti-parasitic activity which offer researchers an opportunity to screen novel anti-parasitic targets.
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83
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| HY-L137 | Molecular Glue Compound Library |
Targeted protein degradation(TPD) is a novel and promising approach to new drug discovery and development. It shows great potential for treating diseases with “undruggable” pathogenic protein targets and for overcoming drug resistance. Molecular glues and PROTACs are both targeted protein degraders that have attracted the most attention.
Molecular glues are small molecular degraders that mainly induce novel interaction between an E3 ligase and a target protein to form a ternary complex, leading to protein ubiquitination and subsequent proteasome degradation. Compared with PROTACs, molecular glues generally possess more favorable drug-like properties, such as lower MW, higher cell permeability, and better oral absorption. Molecular glues are emerging as a promising new therapeutic strategy.
MCE supplies a unique collection of 114 molecular glues which target various proteins. MCE Molecular Glue Compound Library is a useful tool to conduct scientific research and disease mechanism study.
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83
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| HY-L169 | Anti-Drug-Resistant Compound Library |
Resistance refers to the decrease in the effectiveness of drugs in treating diseases or symptoms. Due to the increasing global antibiotic resistance, it may threaten our ability to treat common infectious diseases. Drug resistance is also the main cause of chemotherapy failure in malignant tumors. In approximately 50% of cases, drug resistance exists even before chemotherapy begins. There are many mechanisms of anticancer drug resistance, including increased protein expression that leads to drug removal, mutations in drug binding sites, recovery of tumor protein production, and pre-existing genetic heterogeneity in tumor cell populations. In addition, the issue of drug resistance seems to have affected the development of new anticancer drugs. Drug resistance may be caused by various conditions, such as mutations, epigenetic modifications, and upregulation of drug efflux protein expression. Overcoming multidrug resistance in cancer treatment is becoming increasingly important.
MCE designs a unique collection of 699 anti-drug-resistant compounds. It is a good tool to be used for research on cancer and other diseases.
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83
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| HY-L190 | Miao Ethnicity Medicine Compound Library |
Miao medicine is an important part of Chinese medicine, which carries the profound cultural heritage and rich life wisdom of the Hmongb people. Miao people live in a concentrated community in the mountainous area of the southwest border of China, which has a unique natural environment. Complex and diverse geology, lush natural vegetation, rich animal and plant species, a large number of mineral resources which provide a wide range of species sources for miao ethnicity medicine. On the other hand, due to the characteristics of the living environment of the Hmongb people, Miao medicine has demonstrated its unique therapeutic effect in the treatment of some endemic diseases, infectious diseases, insect, snake and beast bites, rheumatism and other diseases. With the development of modern science and technology, the research and application of seedling medicine are also deepening. Through the systematic study of the chemical composition and pharmacological action of the seedling medicine, it can provide a new idea and method for modern medicine.
MCE included 1,650 natural products from traditional miao ethnicity medicine, including animal, plant and mineral sources.
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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 565 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 268 small-molecule compounds with cancer indications, which are good tools for drug repurposing.
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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-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-L260 | KRAS Targeted Compound Library |
KRAS (Kirsten Rat Sarcoma Viral Oncogene Homolog) is one of the most important oncogenic driver genes in oncology, with high mutation frequencies in pancreatic cancer, non‑small cell lung cancer, and colorectal cancer. For a long time, KRAS was considered "undruggable" due to the lack of suitable small‑molecule binding pockets on its protein surface. In recent years, with the discovery of the switch‑II pocket and the successful approval of KRAS G12C inhibitors, KRAS‑targeted research has achieved groundbreaking progress, which has also spurred a wave of development targeting non‑G12C mutants such as G12D and G12V, as well as upstream and downstream regulatory factors including SOS1 and SHP2.
MCE KRAS Targeted Compound Library contains 79 small‑molecule compounds targeting the KRAS, serving as high‑quality research tools for mechanistic studies of KRAS‑mutant tumors, combination therapy development, resistance mechanism exploration, and high‑throughput drug screening, thereby providing robust support for KRAS‑targeted drug discovery.
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83
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| HY-L938 | Antifungal Lead-like compound library |
Currently,the incidence and mortality rates of clinical fungal infections remain high. Existing antifungal drugs are limited in variety and associated with numerous adverse effects, creating an urgent demand for the development of novel antifungal agents. Antifungal compound libraries can support the screening and development of new antifungal drugs.
The mechanisms of action of antifungal drugs cover key processes such as fungal cell membrane synthesis, cell wall synthesis, and cell division. They exert fungicidal or fungistatic effects by specifically targeting different molecular pathways. This library includes a variety of core analogs of antifungal drugs, making it adaptable to antifungal research in diverse scenarios. It can be used for the high-throughput screening of novel antifungal drug candidates, enabling the rapid identification of compounds with potential antifungal activity and facilitating the elucidation of drug-target interactions and resistance mechanisms. Additionally, it supports the screening of compounds and combinations that reverse drug resistance, thereby uncovering the novel antifungal potential of existing compounds.
The library comprises 8350 compounds with a well-defined screening strategy. The core sources of the compounds include analogs of known antifungal active moleculeswith a similarity score of ≥ 0.6 MCE has collected more than 500 antifungal molecules.All screened compounds conform to lead-like physicochemical properties, exhibiting both structural diversity and drug-like characteristics, and providing valuable support for the research and development of novel antifungal drugs.
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83
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| HY-L939 | Antibacterial Lead-like compound library |
The rising prevalence of multidrug-resistant and extensively drug-resistant bacteria, combined with emerging resistance mechanisms and the limitations of existing antibacterial drugs, creates an urgent need for novel antibacterial agents. Antibacterial compound libraries serve as key tools to support antibacterial drug screening and development.
This library features structurally diverse compounds, including small-molecule scaffolds and natural product derivatives, and exhibits diverse antibacterial mechanisms of action. For example, these compounds exert antibacterial effects by disrupting bacterial cell structures, interfering with bacterial metabolic processes, and inhibiting nucleic acid synthesis. The derivation of scaffold structures enhances their activity against drug-resistant bacteria and their selectivity against different types of bacteria. This library can be used for the high-throughput screening of novel antibacterial drug candidates and the identification of potent compounds against drug-resistant and multidrug-resistant bacteria. Additionally, it provides a reference for compound structural modification, enabling further in-depth research on the structure-activity relationships(SARs) of antibacterial drugs. It can also be applied to the exploration of bacterial resistance mechanisms and reversal strategies, as well as the discovery of antibacterial molecules that inhibit efflux pumps and restore drug susceptibility.
The library contains 10855 structurally diverse drug-like compounds. Its core compound sources include analogs of known antifungal active moleculeswith a similarity score of ≥ 0.6. MCE has collected more than 1900 antibacterial molecules. All screened compounds conform to lead-like physicochemical properties, providing valuable support for the research and development of novel antibacterial drugs.
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83
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| HY-L948 | PD-1/PD-L1 Lead-like Library |
PD-1/PD-L1 are key immune checkpoint targets that suppress T-cell-mediated anti-tumor immunity, representing a major focus in cancer immunotherapy. While antibody drugs dominate the clinic, they are limited by administration challenges and immune-related side effects. Small-molecule PD-1/PD-L1 inhibitors, with oral availability, good tissue penetration and low cost, have emerged as a promising next-generation strategy.
A PD-1/PD-L1 lead-like library was built via a five-step virtual screening process. After collecting 8,947 inhibitors from BindingDB and PubChem and filtering by activity and duplicates, AI similarity screening was performed using GeminiMol. Key pharmacophores were extracted from the PPI interface of co-crystal structures, and molecular was screened via a pharmacophore model, effectively enhancing target activity.
Containing 10,000 structurally diverse and drug-like molecules well-matched to the PD-L1 pocket, the library supports virtual docking, high-throughput screening and hit discovery, enabling efficient and rapid development of small-molecule immunotherapies.
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83
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| HY-N0488A | Vincristine |
Vincristine (Leurocristine; NSC-67574; 22-Oxovincaleukoblastine) is a microtubule inhibitor that disrupts microtubule polymerization by binding to β-tubulin (with a Ki of 85 nM in bovine), arrests the cell cycle and induces apoptosis. Vincristine inhibits cell replication, tumor blood flow and the proliferation of various cancer cells, while triggering effects such as oxidative stress, inflammation, calcium overload, epithelial-mesenchymal transition and peripheral neuropathic pain. Vincristine upregulates the expression of various transporters and nuclear receptors, and enriches gastric cancer stem-like cells. Vincristine is used in research related to various tumors including acute lymphoblastic leukemia, lymphoma, melanoma, gastric cancer, solid tumors and sarcomas.
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77
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| HY-P9907 | Trastuzumab |
Trastuzumab is a humanized IgG1 monoclonal antibody that selectively binds to HER2 with high affinity. Trastuzumab can be used for the research of HER2-positive metastatic breast cancer and gastric cancer. (Note: The product specifications below only indicate the effective content of Trastuzumab. The component ratio of this product is Trastuzumab : excipients = 1:0.6-1:0.9.)
Species: Human |
Non-Small Cell Lung Cancer
Luminal Breast Cancer
HER-2 Positive Breast Cancer
Triple-Negative Breast Cancer
Metastatic Breast Cancer
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66
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| HY-P9905 | Cetuximab |
Non-Small Cell Lung Cancer
Lung Adenocarcinoma
Triple-Negative Breast Cancer
Metastatic Breast Cancer
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55
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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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35
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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-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-107780A | Cyclic-di-GMP sodium |
Cyclic-di-GMP sodium is a STING agonist and a bacterial second messenger that coordinates different aspects of bacterial growth and behavior, including motility, virulence, biofilm formation, and cell cycle progression. Cyclic-di-GMP sodium has anti-cancer cell proliferation activity and also induces elevated CD4 receptor expression and cell cycle arrest. Cyclic-di-GMP sodium can be used in cancer research.
Source: bacterial species |
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9
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| HY-107780 | Cyclic-di-GMP |
Cyclic-di-GMP is a STING agonist and a bacterial second messenger that coordinates different aspects of bacterial growth and behavior, including motility, virulence, biofilm formation, and cell cycle progression. Cyclic-di-GMP has anti-cancer cell proliferation activity and also induces elevated CD4 receptor expression and cell cycle arrest. Cyclic-di-GMP can be used in cancer research.
Source: bacterial species |
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9
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| HY-107780B | Cyclic-di-GMP diammonium |
Cyclic-di-GMP diammonium is a STING agonist and a bacterial second messenger that coordinates different aspects of bacterial growth and behavior, including motility, virulence, biofilm formation, and cell cycle progression. Cyclic-di-GMP diammonium has anti-cancer cell proliferation activity and also induces elevated CD4 receptor expression and cell cycle arrest. Cyclic-di-GMP diammonium can be used in cancer research.
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9
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| HY-110382 | Cyclic-di-GMP disodium |
Cyclic-di-GMP disodium is a STING agonist and a bacterial second messenger that coordinates different aspects of bacterial growth and behavior, including motility, virulence, biofilm formation, and cell cycle progression. Cyclic-di-GMP disodium has anti-cancer cell proliferation activity and also induces elevated CD4 receptor expression and cell cycle arrest. Cyclic-di-GMP disodium can be used in cancer research.
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9
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| HY-138298 | Trastuzumab deruxtecan (solution) |
Trastuzumab deruxtecan (T-DXd; DS-8201a) (solution) is an anti-human epidermal growth factor receptor 2 (HER2) antibody-drug conjugate (ADC). Trastuzumab deruxtecan is composed of a humanized anti-HER2 antibody, an enzymatically cleavable peptide-linker, a topoisomerase I inhibitor (a toxin component of Dxd), and the drug-linker conjugate for ADC is Deruxtecan (HY-13631E). Trastuzumab deruxtecan can be used for the research of HER2-positive breast cancer and gastric cancer.
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9
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| HY-138298A | Trastuzumab deruxtecan |
Trastuzumab deruxtecan (DS-8201a) is an anti-human epidermal growth factor receptor 2 (HER2) antibody-drug conjugate (ADC). Trastuzumab deruxtecan is composed of a humanized anti-HER2 antibody, an enzymatically cleavable peptide-linker, a topoisomerase I inhibitor (a toxin component of Dxd), and the drug-linker conjugate for ADC is Deruxtecan (HY-13631E). Trastuzumab deruxtecan can be used for the research of HER2-positive breast cancer and gastric cancer.
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9
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| HY-P1934 | Cyclo(Phe-Pro) |
Cyclo(Phe-Pro) (Cyclo(phenylalanylprolyl)) is a quorum-sensing molecule of Vibrio vulnificus that specifically interacts with RIG-I, inhibiting RIG-I polyubiquitination, suppressing IRF-3 activation, and reducing type I interferon production. Cyclo(Phe-Pro) enhances susceptibility to HCV and influenza virus and also alleviates plant aluminum toxicity stress. The mechanism of Cyclo(Phe-Pro) involves the regulation of host immune signaling pathways, bacterial virulence gene expression, and plant antioxidant systems, making it a promising candidate for research in viral infections, bacterial virulence regulation, and agricultural stress resistance.
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7
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| HY-P99032 | Monalizumab |
Monalizumab (IPH2201) is an immune checkpoint inhibitor targeting Natural Killer Group 2A (NKG2A). Monalizumab, a humanized anti-NKG2A blocking mAb, increases IFN-γ production, thereby promoting NK cell effector functions. Monalizumab can be used for the research of head and neck squamous cell carcinoma (HNSCC).
Species: Human |
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5
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| 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
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| HY-P9977 | Amivantamab |
Amivantamab (JNJ-61186372) is a human EGFR-MET bispecific antibody with immune anticancer activity. Amivantamab inhibits ligand binding, promotes endocytosis and degradation of receptor-antibody complexes, and induces Fc-dependent cytokinesis in macrophages and antibody-dependent cytotoxicity in natural killer cells.
Species: Human |
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3
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| HY-P9963 | Blinatumomab |
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3
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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
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| HY-P99100 | Visugromab |
Visugromab (CTL-002) is a GDF-15 neutralizing IgG4 mAb. Visugromab has synergistic anticancer activity with the anti-PD1 antibody Nivolumab (HY-P9903) and can effectively act on PD-1/PD-L1 relapsed/refractory metastatic solid tumors. Recommend Isotype Controls: Human IgG4 (S228P) kappa, Isotype Control (HY-P99003).
Species: Human |
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2
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| HY-119109 | Laminaran |
Laminaran is an β-1-3-glucan and a typical ligand for Dectin-1 from Eisenia Bicyclis, has potent immunomodulating, radioprotective, and anticancer activities. Laminaran is made up of β (1→3)-glucan with β (1→6)-branches and can be catalyzed by enzymes such as laminarinase (EC 3.2.1.6) that breaks the β (1→3) bonds. Laminaran is a promising immune stimulatory molecule for use in cancer immunotherapy.
Source: Eisenia Bicyclis |
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2
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| HY-P99575 | Tarlatamab |
Tarlatamab (AMG-757) is a bispecific T-cell engager (BiTE) antibody targeting delta-like ligand 3 (DLL3). DLL3 is a target that is selectively expressed in small-cell lung cancer (SCLC) tumors, but with minimal normal tissue expression. Tarlatamab has the KDs of 0.64 nM and 0.50 nM for human and nonhuman primate (NHP) DLL3, respectively. Tarlatamab has the KDs of 14.9 nM and 12 nM for human and NHP CD3, respectively. Tarlatamab is a first-in-class HLE BiTE immuno-oncology therapy targeting DLL3 and has the potential for SCLC research.
Species: Human |
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2
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| HY-141598 | Datopotamab deruxtecan (solution) |
Datopotamab deruxtecan (DS-1062) solution is a TROP2-targeted antibody-drug conjugate (ADC) with human TROP2 Kd of 0.74 nmol/L. Datopotamab deruxtecan solution consists of the antibody Datopotamab (HY-P99843) and the toxic molecule-linker conjugate Deruxtecan (HY-13631E). Datopotamab deruxtecan solution binds TROP2, triggers internalization and lysosomal trafficking and releases DXd topoisomerase I inhibitor payload. Datopotamab deruxtecan solution disrupts DNA function, induces DNA damage, apoptosis, and bystander killing of tumor microenvironment cells. Datopotamab deruxtecan solution can be used in research related to triple-negative breast cancer, gastric cancer, and non-small cell lung cancer.
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2
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| HY-K0353 | Human CD3/CD28 T Cell Activation Magnetic Beads |
MCE Human CD3/CD28 T Cell Activation Magnetic Beads are based on the two important co-stimulatory signals, without relying on feeder cells (antigen-presenting cells) or antigens, CD3 and CD28, without relying on feeder cells (antigen-presenting cells) or antigens, enabling simple and rapid T cell activation. |
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2
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| HY-P99276 | Abagovomab |
Abagovomab (Anti-Human CA-125 Recombinant Antibody) is a mouse monoclonal anti-idiotypic antibody that targets the tumor-associated antigen CA-125 (binding affinity: 0.5 nM). Produced by mouse hybridoma cells, Abagovomab mimics human TAA, CA-125. Abagovomab also induces humoral and cellular immune responses against ovarian cancer (oc).
Species: Human |
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1
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| HY-P991451 | Anti-ALPP Antibody |
Anti-ALPP Antibody (SGN-ALPV antibody) is a human monoclonal antibody (mAb) targeting ALPP. Anti-ALPP Antibody can be used in solid tumors research.
Species: Human |
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1
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| HY-P99814 | Pavurutamab |
Pavurutamab (AMG-701) is a bispecific T cell engager molecule that anti-CD3 and anti-B cell maturation antigens (BCMA). Pavurutamab has an extended half-life based on Pacanalotamab (HY-P99798). The Fc of Pavurutamab is coupled to molecules to improve pharmacokinetic parameters. Pavurutamab has potential applications in immune regulation and multiple myeloma (MM).
Species: Human |
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1
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| HY-P99236 | Bexmarilimab |
Bexmarilimab (FP-1305) is a potent humanized anti-CLEVER-1 IgG4 antibody with an IC50 value of 4.51 nM. Bexmarilimab is capable of inducing a phenotypic M2 to M1 immune switch of tumor-associated macrophages. Bexmarilimab can promote antigen presentation and pro-inflammatory cytokine secretion. Bexmarilimab can induce B-cell and T-cell activation. Bexmarilimab can be used in researches of immunology and cancer, such as colorectal carcinoma.
Species: Human |
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1
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| HY-N5084 | Pinocembrin 7-O-[3''-O-galloyl-4'',6''-hexahydroxydiphenoyl]-β-D-glucoside |
Pinocembrin 7-O-[3''-O-galloyl-4'',6''-hexahydroxydiphenoyl]-β-D-glucoside is a TRPV1 antagonist and HDAC7 inhibitor. Pinocembrin 7-O-[3''-O-galloyl-4'',6''-hexahydroxydiphenoyl]-β-D-glucoside blocks TRPV1-mediated calcium influx, suppresses phosphorylation of p65, IκBα, p38, JNK, and ERK1/2, inhibiting NF-κB and MAPK signaling cascades. Pinocembrin 7-O-[3''-O-galloyl-4'',6''-hexahydroxydiphenoyl]-β-D-glucoside reduces production and gene expression of pro-inflammatory cytokines IL-1β, IL-6, and TNF-α. Pinocembrin 7-O-[3''-O-galloyl-4'',6''-hexahydroxydiphenoyl]-β-D-glucoside exhibits potent analgesic activity, elevates thermal pain threshold and mechanical pain threshold in murine models. Pinocembrin 7-O-[3''-O-galloyl-4'',6''-hexahydroxydiphenoyl]-β-D-glucoside restores CD8+ T cell infiltration into bladder cancer tumors and improves bladder cancer immunotherapy efficacy. Pinocembrin 7-O-[3''-O-galloyl-4'',6''-hexahydroxydiphenoyl]-β-D-glucoside can be used for the researches of painand bladder cancer.
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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-P99350 | Gresonitamab |
Gresonitamab (AMG 910) is a half-life extended (HLE) bispecific T-cell engager (BiTE) antibody targets CD3-positive T cells and CLDN18.2-expressing tumor cells. Gresonitamab can be used for the research of adenocarcinoma.
Species: Human |
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1
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| HY-P99802 | Pasotuxizumab |
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1
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| HY-P99117 | Cadonilimab |
Cadonilimab (AK104) is a humanized tetravalent IgG1 bispecific antibody targeting PD1/CTLA4. Cadonilimab blocks both PD-1 and CTLA-4 pathways, thereby relieving their corresponding immunosuppressive effects and reversing tumor specific T cell exhaustion. Cadonilimab significantly downregulates Fc-mediated effector functions, including antibody-dependent cell-mediated cytotoxicity (ADCC), antibody-dependent cellular phagocytosis (ADCP), complement dependent cytotoxicity (CDC). Cadonilimab can be used for research of metastatic cervical cancer, as well as other malignancies such as gastric cancer, GEJ adenocarcinoma and non-small cell lung cancer (NSCLC).
Species: Human |
Inflammation or Immune System Disease
Gastric Cancer
Non-Small Cell Lung Cancer
Triple-Negative Breast Cancer
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1
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| HY-P99124 | Anti-Mouse CD3 Antibody (17A2) |
Anti-Mouse CD3 Antibody (17A2) is an anti-mouse CD3 IgG2b antibody inhibitor derived from the host Rat. Anti-Mouse CD3 Antibody (17A2) enhances T-cell proliferation and activation and stimulate IFN-γ or IL-17 production in splenic T cells. Anti-Mouse CD3 Antibody (17A2) significantly suppresses mortality in Graft-versus-host disease (GVHD) mice models.
Species: Mouse |
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1
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| HY-P99271 | Tisotumab |
Tisotumab (Anti-Human F3 Recombinant Antibody) is a human IgG1 monoclonal antibody and ADC antibody. Tisotumab targets tissue factor (TF). Tisotumab can be used to synthesize antibody-drug conjugates (ADCs) targeting tissue factor (TF), Tisotumab vedotin (HY-152963). Tisotumab can be used for the research of solid tumors.
Species: Human |
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1
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| HY-P99507 | Zenocutuzumab |
Zenocutuzumab (MCLA-128) is a bispecific humanized IgG1 antibody containing two different Fab arms, targeting extracellular domains of HER2 and HER3.
Species: Human |
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1
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| HY-P99380 | Zanidatamab |
Zanidatamab (ZW25) is a humanised, bispecific monoclonal antibody targeting 2 distinct HER2 epitopes (ECD2 and ECD4). Zanidatamab has anti-tumour activity.
Species: Human |
Luminal Breast Cancer
HER-2 Positive Breast Cancer
Triple-Negative Breast Cancer
Metastatic Breast Cancer
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1
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| HY-P99033 | Mosunetuzumab |
Mosunetuzumab (BTCT-4465A) is a full-length, fully humanized immunoglobulin G1 (IgG1) T-cell-dependent bispecific (TDB) antibody targeting CD20 (B cells) and CD3 (T cells). Mosunetuzumab redirects T cells to engage and eliminate malignant B cells and can be used for the research of relapsed or refractory (R/R) B-cell non-Hodgkin lymphomas (B-NHLs).
Species: Human |
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1
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| HY-P99024 | Glofitamab |
Glofitamab (RO7082859) is a T-cell-engaging bispecific antibody possessing a novel 2:1 structure with bivalency for CD20 on B cells and monovalency for CD3 on T cells. Glofitamab leads to T-cell activation, proliferation, and tumor cell killing upon binding to CD20 on malignant cells. Glofitamab induces durable complete remissions in relapsed or refractory B-Cell non-Hodgkin lymphoma (B-NHL).
Species: Human |
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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-P704276 | TROP-2 Protein, Human (HEK293, His) |
The TROP-2 protein emerged as a potential growth factor receptor, implying involvement in cellular processes related to growth and signaling. As a putative receptor, TROP-2 may play a crucial role in transducing signals that regulate cell growth and proliferation. TROP-2 Protein, Human (HEK293, His) is the recombinant human-derived TROP-2 protein, expressed by HEK293, with C-His labeled tag.
Species: Human; Source: HEK293 |
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1
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| HY-P80598 | CD3 epsilon Antibody (YA542) |
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1
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| HY-P86804 | CD3 epsilon Antibody (YA6497) |
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1
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| HY-K0304 | Human CD3+ T Cells Negative Selection Kit |
MCE Human CD3+ T Cells Negative Selection Kit is designed for the isolation of CD3+ T cells from human peripheral blood mononuclear cells (PBMC). |
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1
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| HY-K0306 | Mouse CD3+ T Cells Negative Selection Kit |
MCE Mouse CD3+ T Cells Negative Selection Kit is designed for the isolation of CD3+ T cells from single cell suspensions of mouse spleen cells and lymph nodes. |
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1
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| HY-171191 | REGN5093-M114 |
REGN5093-M114 is a bispecific antibody-drug conjugate (ADC) that targets two epitopes of the MET receptor tyrosine kinase inhibits the proliferation of NSCLC cells, exhibits antitumor efficacy in mouse models. REGN5093-M114 is composed of the human monoclonal anti-MET antibody Davutamig (HY-P990073) and the tubulin-inhibiting linker-payload (HY-148528).
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| HY-10158S1 | Bosutinib-13C,d3 |
Bosutinib-13C,d3 (SKI-606-13C,d3) is 13C labeled Bosutinib. Bosutinib is an orally active Src/Abl tyrosine kinase inhibitor with IC50 of 1.2 nM and 1 nM, respectively.
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| HY-P10740 | CBP-1018 |
CBP-1018 is a PDC (peptide-drug conjugate) formed by conjugating Monomethyl auristatin E (HY-15162) to a dual-targeting ligand of FLOR1/PSMA (prostate-specific membrane antigen) via a linker (HY-78738). CBP-1018 binds to FLOR1 and prostate-specific membrane antigen (PSMA). CBP-1018 is applicable to the research of solid tumors and metastatic castration-resistant prostate cancer.
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| HY-P99436 | Anatumomab mafenatox |
Anatumomab mafenatox (ABR-214936) is a 73 KDa recombinant protein to recognize the tumor-associated antigen 5T4, which is widely expressing in malignancy. Anatumomab mafenatox is between a modified form of SEA and a murine Fab. The main side effects of Anatumomab mafenatox are reported to include fever, low blood pressure, pain, nausea and drowsiness.
Species: Human |
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| HY-P992389 | IO-202 |
IO-202 is a high-affinity LILRB4/ILT3 binder and myeloid checkpoint inhibitor. IO-202 blocks APOE binding and LILRB4 activation to reverse T-cell suppression and enhance T-cell cytotoxicity, while eliminating LILRB4-high-expressing leukemic blasts via ADCC and ADCP mechanisms. IO-202 promotes dendritic cell maturation and antigen presentation, reshapes the phenotype of tumor-associated macrophages, and reduces myeloid-derived suppressor cells. IO-202 is widely applicable to research on relapsed/refractory acute myeloid leukemia (AML), chronic myelomonocytic leukemia (CMML), and solid tumors.
Species: Human |
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| HY-159642G | Dabogratinib (GMP) |
Dabogratinib (TYRA-300) (GMP) is Dabogratinib (HY-159642) produced by using GMP guidelines. GMP small molecules work appropriately as an auxiliary reagent for cell therapy manufacture. Dabogratinib is an orally active, selective FGFR3 inhibitor with an IC50 of 11 nM. Dabogratinib exhibits antitumor activity against urothelial carcinoma and solid tumors. Dabogratinib downregulates the FGFR3 and ERK1/2 signaling pathways, and induces tumor growth inhibition and regression in FGFR3-altered xenograft models. Dabogratinib promotes chondrocyte proliferation and differentiation, drives endochondral bone formation and overall body growth, partially restores long bone proportions, and improves craniofacial and spinal morphology. Dabogratinib can be used for the research of metastatic urothelial carcinoma, achondroplasia and hypochondroplasia.
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| HY-P99723 | Manelimab |
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| HY-N12331 | Ohchinolide B |
Ohchinolide B is a tubulin inhibitor. Ohchinolide B inhibits microtubule polymerization (IC50=2.3 μM) and induces G2/M phase cell cycle arrest via mitochondrial apoptotic pathways. Ohchinolide B is promising for research of solid tumors (e.g., breast, lung cancer).
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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-P5930 | HOXB7 8–25 |
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| HY-N17727 | Divaricatol |
Divaricatol is an orally ative chromone natural product and an active component in Saposhnikovia divaricata. Divaricatol reduces the release of pro-inflammatory cytokines and restores immune homeostasis by stably binding to 5KIR (a target of the TNF/IL-17 pathway). Divaricatol exerts analgesic effects in mouse models. Divaricatol can be used in the research of pain, diarrhea-predominant irritable bowel syndrome (IBS-D) and qi deficiency syndrome.
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| HY-P992341 | D8P1C1 |
D8P1C1 is a high-affinity ADAM17 inhibitor (with a Kd of 180 pM targeting ADAM17-ECD) that reduces the shedding and phosphorylation of EGFR ligands. D8P1C1 inhibits cancer cell proliferation in vitro and tumor growth in xenograft models. 89Zr-DFO-D8P1C1 radioimmunological PET imaging shows its substantial accumulation in ovarian tumor xenografts, serving as a platform for generating bispecific T-cell engager derivatives. D8P1C1 can be applied to research on related diseases including triple-negative breast cancer, various types of ovarian cancer, lung adenocarcinoma, glioma, and colon cancer.
Species: Human |
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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-P10211 | Virgilagicin |
Virgilagicin is a Gram-positive active antibiotic that has a dual polyprenyl phosphate binding mechanism that impedes resistance development.
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| HY-P10209 | Cilagicin |
Cilagicin, a dodeca-lipodepsipeptide, is a Gram-positive active antibiotic. Cilagicin has a dual polyprenyl phosphate binding mechanism that impedes resistance development.
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| HY-167812 | Trimethylsilyl-L-(+)-rhamnose |
Trimethylsilyl-L-(+)-rhamnose is a chemically modified version of the natural sugar rhamnose that has activity in studying the role of rhamnose in bacterial cell walls. Trimethylsilyl-L-(+)-rhamnose can be used to explore the composition of bacterial cell walls and their biological functions. Trimethylsilyl-L-(+)-rhamnose can help scientists gain insight into bacterial growth and resistance mechanisms.
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| HY-N9382 | Gnidimacrin |
Gnidimacrin is a protein kinase C (PKC) activator. Gnidimacrin inhibits cell growth of human leukemias, stomach cancers and non-small cell lung cancers in vitro, and shows activity against murine leukemias and solid tumors in vivo. Gnidimacrin can be used for leukemias, stomach cancers and non-small cell lung cancers research.
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| HY-19489S4 | (±)-Levomepromazine-13C,d3 |
(±)-Levomepromazine-13C,d3 ((±)-Methotrimeprazine-13C,d3) is the deuterium and 13C-labeled (±)-Levomepromazine (HY-19489). (±)-Levomepromazine ((±)-Methotrimeprazine) is the racemate of Levomepromazine (HY-B1693).
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| HY-P992314 | ASD141 |
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| HY-175323 | NOTA-IMB-RGD |
NOTA-IMB-RGD is a dual molecular probe targeting integrin αvβ3 and programmed death ligand-1 (PD-L1). NOTA-IMB-RGD blocks the PD-1/PD-L1 signaling pathway and integrin αvβ3-overexpressing tumor vasculature. NOTA-IMB-RGD is promising for research of solid tumors co-expressing PD-L1 and αvβ3 (e.g., glioma, breast cancer).
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| HY-P992457 | SAR444200 |
SAR444200 is a nanobody targeting GPC3 (glypican-3) and TCRαβ (T-cell receptor αβ). The KD of SAR444200 for human GPC3 is 0.023 nM, and its KD for human TCRαβ is 5.2 nM. SAR444200 mediates T cell-dependent cytotoxicity, and exhibits high selectivity and killing activity against GPC3-positive tumor cells. SAR444200 binds to GPC3 in a dual-epitope manner, and binds to TCRαβ via its N-terminal nanobody, forming an artificial immunological synapse between T cells and tumor cells. SAR444200 can be used in studies of GPC3+ solid tumors, including liver cancer, lung squamous cell carcinoma and melanoma.
Species: Human |
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| HY-14519S3 | (R)-Methotrexate-13C,d3 disodium |
(R)-Methotrexate-13C,d3 disodium (D-(-)-Amethopterin-13C,d3 disodium) is the deuterium and 13C-labeled (R)-Methotrexate disodium.
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| HY-19717S | DCVC-13C3,15N |
DCVC-13C3,15N is 15N and 13C labeled DCVC. DCVC (S-[(1E)-1,2-Dichloroethenyl]-L-cysteine) is a bioactive metabolite of trichloroethylene (TCE). DCVC inhibits pathogen-stimulated pro-inflammatory cytokines IL-1β, IL-8, and TNF-α release from tissue cultures.
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| HY-N0488S2 | Vincristine-d6 sulfate |
Vincristine-d6 (sulfate) is the deuterium labeled Vincristine sulfate. Vincristine sulfate (Leurocristine; NSC-67574; 22-Oxovincaleukoblastine) is a microtubule inhibitor that disrupts microtubule polymerization by binding to β-tubulin (with a Ki of 85 nM in bovine), arrests the cell cycle and induces apoptosis. Vincristine sulfate inhibits cell replication, tumor blood flow and the proliferation of various cancer cells, while triggering effects such as oxidative stress, inflammation, calcium overload, epithelial-mesenchymal transition and peripheral neuropathic pain. Vincristine sulfate upregulates the expression of various transporters and nuclear receptors, and enriches gastric cancer stem-like cells. Vincristine sulfate is used in research related to various tumors including acute lymphoblastic leukemia, lymphoma, melanoma, gastric cancer, solid tumors and sarcomas.
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| HY-P10417B | RTDLDSLRTYTL TFA |
RTDLDSLRTYTL TFA is an Alpha (v) beta (6) integrin (avb6) inhibitor with high affinity and specificity. RTDLDSLRTYTL TFA binds to avb6 integrin, a peptide sequence that activates cytotoxicity and cytokine production in T cells, such as interferon-gamma. RTDLDSLRTYTL TFA is designed through a chimeric T cell antigen receptor (CAR) so that T cells can be redirected to specifically recognize and attack tumor cells. RTDLDSLRTYTL TFA can be used in the research of cancer immunotherapy and targeted drug development.
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| HY-P11600 | SGNLTKYWKKIWKPGIKKWIK |
SGNLTKYWKKIWKPGIKKWIK is a thymidylate kinase (TMK)-targeting antimicrobial peptide with a KD value of 4.721 μM. SGNLTKYWKKIWKPGIKKWIK exerts antimicrobial effects through multiple mechanisms, including membrane disruption, induction of ROS, and DNA binding. SGNLTKYWKKIWKPGIKKWIK shows remarkable activity against Gram-negative bacteria, possesses good biocompatibility, and rarely induces drug resistance. SGNLTKYWKKIWKPGIKKWIK can be used for research on Gram-negative bacterial infections.
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| HY-N16818 | 9-epi-Blumenol C |
9-epi-Blumenol C is a C13-norisoprenoid (carotenoid derivative) compound with allelopathic and antifungal activities, and can regulate plant growth. The IC50 values ??of 9-epi-Blumenol C for watercress roots and hypocotyls are 2780 μM and 2240 μM, respectively, and for perennial ryegrass roots and coleoptiles are 3290 μM and 2950 μM, respectively. 9-epi-Blumenol C exhibits allelopathic activity through a mechanism involving direct inhibition of plant growth and degradation of arbuscular mycorrhizal fungi (AMF) colonization, thereby weakening nutrient uptake and stress resistance in neighboring plants. 9-epi-Blumenol C can be used in herbicide development and research related to plant competition mechanisms. 9-epi-Blumenol C can be obtained from the dried fallen leaves of Metasequoia glyptostroboides (a plant of the cypress family, genus Metasequoia) through extraction with 70% methanol and purification by ethyl acetate extraction.
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| HY-P10978 | NK224 |
NK224 is a peptide-based radiotracer targeting human PD-L1, with dual-radionuclide (68Ga and 18F) labeling compatibility enabled by the NOTA chelator. NK224 exhibits high binding affinity to PD-L1, with an IC50 value of 2.45 nM. NK224 visualizes intrapatient tumor heterogeneity and dynamically monitors PD-L1 target occupancy during immunotherapy. NK224 can be used for the study of non-small cell lung cancer (NSCLC).
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| HY-P11597 | Getacatetide |
Getacatetide (CY-101) is a peptide-based Wnt/β-catenin inhibitor, which can be used for the study of solid tumors.
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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-N3065 | Pierreione B |
Pierreione B is a pyranoisoflavone, that can be isolated from the leaves and twigs of Antheroporum pierrei. Pierreione B demonstrates solid tumor selectivity with minimal cytotoxicity.
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| HY-P11483 | FJ15596 |
FJ15596 is a PD-1/PD-L1 blockor. FJ15596 blocks PD-1/PD-L1 binding with an IC50 of 570 nM. FJ15596 restores CD3+ T cell viability. FJ15596 can be used in cancer immunology research.
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| HY-P1813 | PSA1 (141-150) |
PSA1 (141-150), a prostate specific antigen 1 peptide, is used in the immunotherapy of cancer experiments.
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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-P992518 | Pumitamig (Mouse IgG2a) |
Pumitamig (Mouse IgG2a) is the Mouse IgG2a control antibody for Pumitamig (HY-P991097). 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.
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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-N10446 | Maydispenoid B |
Maydispenoid B is a potent immunosuppressor. Maydispenoid B can inhibit anti-CD3/anti-CD28 mAbs activated and lipopolysaccharide activated murine splenocyte proliferation.
Source: Bipolaris maydis |
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| HY-P992051 | Anti-CD103 Antibody (hCD103.01A) |
Anti-CD103 Antibody (hCD103.01A) is a monoclonal antibody targeting human CD103 and can be used in cancer immunotherapy and immunological research. Recommend Isotype Controls: human IgG1 kappa, Isotype Control (HY-P99001).
Species: Human |
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| HY-13582S1 | Carbendazimb-d3 |
Carbendazimb-d3 is the deuterium labeled Carbendazimb (HY-13582). Carbendazim is a potent and orally active broad-spectrum?benzimidazole fungicide and can be acts as a pesticide for fungal diseases research, such as Seproria,?Fusarium?and?Sclerotina. Carbendazim is a benzimidazole (HY-Y1825) derivative with antitumor activity and used for cancer research, especially advanced solid tumors and lymphoma.
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| HY-P992370 | HPN601 |
HPN601 is a monoclonal antibody targeting CD326/EPCAM, as well as a protease-activated EpCAM-targeted T cell engager. HPN601 binds to EPCAM, CD3e and albumin, and induces T cell-mediated tumor cell killing. HPN601 significantly reduces the release levels of IFN-γ, IL-2, IL-6, and IL-10. HPN601 can be used for relevant research on cancers such as breast cancer and gastric cancer.
Species: Human |
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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-P11490 | DPMI-ω |
DPMI-ω is a dual-specificity d-peptide antagonist of oncogenic proteins MDM2 and MDMX. DPMI-ω, upon fabrication on gold nanoparticles, efficiently traverses tumor cells and kills them by reactivating the p53 signaling pathway. DPMI-ω can disrupte the p53-MDM2/MDMX complex. DPMI-ω can inhibit B16 melanoma growth and induce cells G0/G1 phase arrest. DPMI-ω can augment the efficacy of immunotherapy by expanding CD3+/CD8+ cytotoxic T cells and suppressing CD4+/CD25+ regulatory T cells companied with anti-PD1 antibody. DPMI-ω can be used for research of melanoma.
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| HY-P10947 | MACTIDE-V |
MACTIDE-V is an orally active and selective peptide-drug conjugate targeting CD206. MACTIDE-V delivers Verteporfin (HY-B0146) to CD206+ tumor-associated macrophages (TAM) to inhibit the YAP/TAZ signaling pathway, prompting YAP exclusion from the nucleus, inducing TAM polarization toward an anti-tumoral phenotype with enhanced phagocytosis and antigen presentation, and boosting T cell infiltration and NK cell activity. MACTIDE-V suppresses primary tumor growth and lung metastasis in triple-negative breast cancer (TNBC) mouse models.
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| HY-105529 | Indicine N-oxide |
Indicine N-oxide (NSC 132319), a pyrrolizidine alkaloid, is an antitumor agent for pediatric cancer and solid tumors research.
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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-15772GL | Osimertinib (GMP Like) |
Osimertinib (AZD-9291; Mereletinib) GMP Like is the GMP Like level of Osimertinib (HY-15772). GMP Like small molecules works appropriately as an auxiliary reagent for cell research manufacture. Osimertinib GMP Like is an inhibitor that selectively targets EGFRT790M and activated EGFR mutants. Osimertinib GMP Like exerts multiple anti-tumor mechanisms, including radiosensitization, induction of apoptosis and ferroptosis, as well as inhibition of cancer stemness. Osimertinib GMP Like suppresses EGFR nuclear translocation and downstream survival signaling pathways, significantly reduces cell viability and lipid droplet content, and also exerts synergistic effects with radiotherapy or specific targeted agents to effectively overcome drug resistance and radioresistance. Formulations of Osimertinib GMP Like modified with liposomes or iRGD enable sustained release, tumor-specific accumulation, and breakthrough of the blood-brain barrier limitation. Osimertinib GMP Like can be used in research related to radioresistant glioblastoma and non-small cell lung cancer.
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| HY-P992390 | IOR-T3 |
IOR-T3 is a monoclonal antibody targeting CD3, with biological activities related to T cell activation regulation. IOR-T3 uses its variable region to competitively engage surface CD3 on lymphocytes and trigger robust T cell proliferation and activation. IOR-T3 and its derivatives can be used in studies related to acute transplant rejection.
Species: Human |
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| HY-P10210 | Paenilagicin |
Paenilagicin is a Gram-positive active antibiotic with a unique diphosphorylated prenyl binding mechanism that does not induce drug resistance. Paenilagicin exhibits a MIC value of 2 μg/mL against multidrug-resistant Gram-positive bacteria.
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| HY-15772G | Osimertinib (GMP) |
Osimertinib (AZD-9291; Mereletinib) GMP is the GMP level of Osimertinib (HY-15772). GMP small molecules works appropriately as an auxiliary reagent for cell research manufacture. Osimertinib GMP is an inhibitor that selectively targets EGFRT790M and activated EGFR mutants. Osimertinib GMP exerts multiple anti-tumor mechanisms, including radiosensitization, induction of apoptosis and ferroptosis, as well as inhibition of cancer stemness. Osimertinib GMP suppresses EGFR nuclear translocation and downstream survival signaling pathways, significantly reduces cell viability and lipid droplet content, and also exerts synergistic effects with radiotherapy or specific targeted agents to effectively overcome drug resistance and radioresistance. Formulations of Osimertinib GMP modified with liposomes or iRGD enable sustained release, tumor-specific accumulation, and breakthrough of the blood-brain barrier limitation. Osimertinib GMP can be used in research related to radioresistant glioblastoma and non-small cell lung cancer.
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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-P11089 | TP53 neoepitope |
TP53 neoepitope is a high-affinity antigenic peptide targeting HLA-A. TP53 neoepitope can triggers CD8+ T cell-mediated killing of TP53-mutant tumor cells. TP53 neoepitope is promising for research of solid tumors harboring TP53 hotspot mutations (e.g., R175H, R273H) .
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| HY-W777760 | N-Desethyl brinzolamide-13C,d3 |
N-Desethyl brinzolamide-13C,d3 (AL-8520-13C,d3) is the 13C- and deuterium labeled N-Desethyl brinzolamide.
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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-W769734 | N-Acetylneuraminic Acid-13C,d3 |
N-Acetylneuraminic Acid-13C,d3 (N-Acetyl-β-D-neuraminic acid-13C,d3) is the deuterium labeled and 13C-labeled N-Acetyl-β-D-neuraminic acid (HY-75278).
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| HY-P10417 | RTDLDSLRTYTL |
RTDLDSLRTYTL is an Alpha (v) beta (6) integrin (avb6) inhibitor with high affinity and specificity. RTDLDSLRTYTL binds to avb6 integrin, a peptide sequence that activates cytotoxicity and cytokine production in T cells, such as interferon-gamma. RTDLDSLRTYTL is designed through a chimeric T cell antigen receptor (CAR) so that T cells can be redirected to specifically recognize and attack tumor cells. RTDLDSLRTYTL can be used in the research of cancer immunotherapy and targeted drug development.
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| HY-P991903 | PSB102 |
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| HY-174929A | DBCO-PEG5000-Amine |
DBCO-PEG5000-Amine (DBCO-PEG5000-NH2) is a polyethylene glycol derivative containing dibenzocyclooctyne. DBCO-PEG-Amine is a universal, modular "bridge molecule": it forms stable covalent linkage with target materials (e.g., MSN or polymers) via the amino group at one end, while the DBCO group at the other end enables efficient, specific, and biocompatible click chemical conjugation with any azide-bearing biological entities (e.g., bacteria, cells) in subsequent steps.
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| HY-20457G | TL8-506 (GMP) |
TL8-506 (GMP) is TL8-506 (HY-20457) produced by using GMP guidelines. GMP small molecules work appropriately as an auxiliary reagent for cell therapy manufacture. TL8-506 is a specific TLR8 agonist with an EC50 of 30?nM. TL8-506 has immunomodulatory effects and can be used in the study of tuberculosis and cancer immunotherapy.
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| HY-B0462S | Azelastine-13C,d3 hydrochloride |
Azelastine-13C,d3 (hydrochloride) is the 13C- and deuterium labeled Azelastine hydrochloride. Azelastine-13C,d3 (hydrochloride), an antihistamine, is a potent and selective histamine 1 (H1) antagonist. Azelastine-13C,d3 (hydrochloride) can be used for the research of allergic rhinitis, asthma, diabetic hyperlipidemic and SARS-CoV-2.
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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-N8421 | Tabernanthine |
Tabernanthine is a negative chronotropic and negative inotropic agent that selectively acts on sinoatrial node receptors, regulating heart rhythm and myocardial contractility. Tabernanthine exhibits atropine resistance and direct non-cholinergic binding properties, acting directly on the sinoatrial node rather than relying on vagal nerve or cholinergic pathways to exert its key activity of slowing heart rate and weakening myocardial contractility. Tabernanthine is useful in cardiovascular pharmacology research, particularly in the areas of sinoatrial node function regulation, mechanisms related to bradycardia, and studies of cardiac receptor subtype differences.
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| HY-N10445 | Maydispenoid A |
Maydispenoid A is a potent immunosuppressor. Maydispenoid A can inhibit anti-CD3/anti-CD28 mAbs activated and lipopolysaccharide activated murine splenocyte proliferation.
Source: fungus Bipolaris maydis |
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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-W035709R | Hydrocinchonine (Standard) |
Hydrocinchonine (Dihydrocinchonine) (Standard) is the analytical standard of Hydrocinchonine (HY-W035709). This product is used for research and analytical purposes.Hydrocinchonine is a multidrug resistance (MDR)-reversal agent. Hydrocinchonine directly inhibits the function and expression of P-gp, which is the mechanism by which it reverses MDR. Hydrocinchonine exerts synergistic apoptotic effect with Paclitaxel (HY-B0015) in MES-SA/DX5 cells. Hydrocinchonine can be used for the study of gynecological malignant tumors (such as uterine sarcoma) with drug resistance caused by excessive expression of P-gp.
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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-165662S | Pranoprofen-13C-d3 |
Pranoprofen-13C-d3 (Pyaopofe-13C-d3) is 13C and deuterium labeled Pranoprofen.
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| HY-B0109AS | Dorzolamide-d3 hydrochloride |
Dorzolamide-d3 hydrochloride is deuterated labeled Dorzolamide hydrochloride (HY-B0109A). Dorzolamide (L671152) hydrochloride is a potent carbonic anhydrase II inhibitor, with IC50 values of 0.18 nM and 600 nM for red blood cell CA-II and CA-I respectively. Dorzolamide possesses anti-tumor activity.
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| HY-172820 | Trastuzumab envedotin |
Trastuzumab envedotin (DP303c) is a anti-human epidermal growth factor receptor 2 (HER2) antibody-drug conjugate (ADC). Trastuzumab envedotin is composed of the tubulin polymerization inhibitor Monomethyl auristatin E (MMAE) (HY-15162) to the anti-HER2 antibody DP001 via a cleavable linker. Trastuzumab envedotin can be used for the research of HER2-positive solid tumors, such as breast cancer, colorectal cancer, and gastric cancer.
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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-N12497 | Moracin B |
Moracin B is a phytoalexin with antifungal activity. Moracin B can be isolated from the cortex and phloem tissues of mulberry (Morus alba Linne) infected with Fusarium solani f. sp. mori. Moracin B can be used to study plant disease resistance mechanisms against microbial infections, particularly showing potential application value in the field of plant disease control.
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| HY-17016S3 | Oseltamivir-13C,d3 phosphate |
Oseltamivir-13C,d3 (phosphate) (GS 4104-13C,d3 (phosphate)) is 13C labeled Oseltamivir (phosphate). Oseltamivir phosphate (GS 4104) is a neuraminidase inhibitor recommended for the treatment and prophylaxis of influenza A and B.
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| HY-159846S | Luvometinib-d |
Luvometinib-d (FCN-159-d) is the deuterated-labeled Luvometinib (HY-159846). Luvometinib is an orally potent MEK1/2 inhibitor. Luvometinib selectively blocks the MAPK signaling pathway by forming a ternary complex with MEKase and ATP, thereby reducing the phosphorylation level of ERK. Luvometinib induces cell cycle arrest and apoptosis, and inhibits cancer cell proliferation. Luvometinib can be used in relevant research on various solid tumors including melanoma, non-small cell lung cancer, colon cancer, and acute myeloid leukemia.
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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-N0488S1 | Vincristine-d3-1 sulfate |
Vincristine-d3 sulfate is the deuterium labeled Vincristine sulfate. Vincristine-1 sulfate (Leurocristine; NSC-67574; 22-Oxovincaleukoblastine) is a microtubule inhibitor that disrupts microtubule polymerization by binding to β-tubulin (with a Ki of 85 nM in bovine), arrests the cell cycle and induces apoptosis. Vincristine-1 sulfate inhibits cell replication, tumor blood flow and the proliferation of various cancer cells, while triggering effects such as oxidative stress, inflammation, calcium overload, epithelial-mesenchymal transition and peripheral neuropathic pain. Vincristine-1 sulfate upregulates the expression of various transporters and nuclear receptors, and enriches gastric cancer stem-like cells. Vincristine-1 sulfate is used in research related to various tumors including acute lymphoblastic leukemia, lymphoma, melanoma, gastric cancer, solid tumors and sarcomas.
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| HY-106801 | Girolline |
Girolline (RP 49532) is a protein synthesis inhibitor and a functional modulator of eIF5A. Girolline induces ribosome stalling by interfering with the binding of eIF5A to ribosomes. Girolline also inhibits the production of IL-6 and IL-8, and induces cell cycle arrest in tumor cells. Girolline is applicable to research related to inflammatory diseases, solid tumors, leukemia and malaria.
Source: Cymbastela cantharella (Pseudaxinyssa cantharella) |
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| HY-P10607 | IALYLQQNW |
IALYLQQNW is a specific nonapeptide sequence derived from the tumor-associated antigen latent membrane protein 1 (LMP1) encoded by Epstein-Barr virus (EBV). As a latent T-cell epitope, IALYLQQNW is able to activate EBV-specific cytotoxic T lymphocytes (CTLs), which are able to recognize and kill EBV-infected cells expressing LMP1. IALYLQQNW plays an important role in the immune response against EBV-associated tumors and can be used in the study of Hodgkin's disease and nasopharyngeal carcinoma.
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| HY-P2302 | Defensin HNP-3 human |
Defensin HNP-3 human is an α-defensin stored in the azurophilic granules of human neutrophils. Defensin HNP-3 human exerts broad-spectrum bactericidal, antifungal and antiviral activities mainly by forming bacterial membrane pores, and acts as a chemoattractant for monocytes and T cells. Defensin HNP-3 human maintains epithelial integrity to support periodontal tissue homeostasis, and exerts concentration-dependent effects on epithelial cell proliferation, adhesion and bacterial adhesion. Defensin HNP-3 human targets solid tumors and leukemia by inducing single-strand DNA breaks and membrane permeabilization in tumor cells via electrostatic binding and pore formation. Defensin HNP-3 human is abundant in human tongue squamous cell carcinoma and neutrophils infiltrating oral squamous cell carcinoma. Defensin HNP-3 human can be applied to research related to periodontitis and human tongue squamous cell carcinoma.
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| HY-P991126 | Ciltistotug |
Ciltistotug is a monoclonal antibody targeting human CD40 (TNFRSF5). Ciltistotug activates immune cells after binding to CD40, exerting immunostimulatory and antitumor activities. Ciltistotug is promising for research of cancer immunotherapy.
Species: Human |
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| HY-P991125 | Cenzestotug |
Cenzestotug is a monoclonal antibody targeting human tumor necrosis factor receptor superfamily member 4 (TNFRSF4). Cenzestotug activates relevant immune cells by binding to TNFRSF4, exerting immunostimulatory and antitumor activities. Cenzestotug is promising for research of cancer immunotherapy.
Species: Human |
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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-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-P11454 | PSM-mec peptide |
PSM-mec peptide is a peptide toxin belonging to the phenol-soluble modulin (PSM) superfamily. PSM-mec peptide is encoded by the psm-mec gene and associated with the methicillin resistance gene element (SCCmec). PSM-mec peptide has pro-inflammatory, cytolytic functions and the role of regulating the structure of biofilms. PSM-mec peptide can be mainly used for the pathogenic mechanism and drug resistance research of canine pseudo-intermediate Staphylococcus (S. pseudintermedius) related infections and zoonotic diseases.
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| HY-P11280A | PRAME peptide (425-433) acetate |
PRAME peptide (425-433) acetate is a proteasome-degraded peptide derived from the cancer-testis antigen PRAME (Preferentially Expressed Antigen in Melanoma). PRAME peptide (425-433) acetate is restricted by HLA-A*02:01 and can serve as a target for bispecific T cell engager therapy in the context of major histocompatibility complex I presentation. PRAME peptide (425-433) acetate shows application potential in various malignant tumors and is widely suitable for research related to solid tumors, melanoma, ovarian cancer, endometrial cancer, and lung cancer (including lung adenocarcinoma and lung squamous cell carcinoma). PRAME peptide (425-433) acetate can be used to explore disease of triple-negative breast cancer, diffuse large B-cell lymphoma, and head and neck squamous cell carcinoma.
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Breast Cancer
Leukemia/Lymphoma/Myeloma
Ovarian Cancer
Lung Squamous Cell Carcinoma
Squamous Cell Carcinoma
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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-N10634S | D-Glucosyl-β-N-palmitoylsphingosine-d3 |
D-Glucosyl-β-N-palmitoylsphingosine-d3 (N-ω-CD3-Hexadecaoyl-glucopsychosie) is deuterium labeled D-Glucosyl-β-1,1′-N-palmitoylsphingosine (HY-N10634). D-Glucosyl-β-1,1′-N-palmitoylsphingosine (C16 Glucosyl(β) Ceramide (d18:1/16:0)) is an endogenous Mincle ligand possessing immunostimulatory activity.
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| HY-W102449S | 4-Acetyl-N-methylaniline-13C,d3 |
4-Acetyl-N-methylaniline-13C,d3 (1-(4-(Methylamino)phenyl)ethanone-13C,d3 ) is a 13C and deuterated isotope of 4-Acetyl-N-methylaniline.
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| HY-P991088 | HPN536 |
HPN536 is a trispecific, T-cell-activating protein-based construct, which binds to mesothelin-expressing tumor cells, CD3ε on T cells, and to serum albumin. HPN536 specifically redirects T cells for potent redirected lysis of mesothelin-expressing cancer cells with concomitant T-cell activation.
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-P10027 | Clovibactin |
Clovibactin is an antibiotic for drug-resistant bacterial pathogens without detectable resistance. Clovibactin TFA inihibits cell wall synthesis by targeting pyrophosphate of peptidoglycan precursors.
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| HY-P10217 | PD-1/PD-L1-IN-42 |
PD-1/PD-L1-IN-42 (Compound B8.4) is an inhibitor of the interaction between PD-1 and PD-L1, with an EC50 of 0.1 μM. PD-1/PD-L1-IN-42 can be used for the research of cancer immunotherapy.
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Lung Cancer
Breast Cancer
Colorectal Cancer
Gastric Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Ovarian Cancer
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| HY-N0488S | Vincristine-d3 sulfate |
Vincristine-d3 sulfate is the deuterium labeled Vincristine sulfate. Vincristine sulfate (Leurocristine; NSC-67574; 22-Oxovincaleukoblastine) is a microtubule inhibitor that disrupts microtubule polymerization by binding to β-tubulin (with a Ki of 85 nM in bovine), arrests the cell cycle and induces apoptosis. Vincristine sulfate inhibits cell replication, tumor blood flow and the proliferation of various cancer cells, while triggering effects such as oxidative stress, inflammation, calcium overload, epithelial-mesenchymal transition and peripheral neuropathic pain. Vincristine sulfate upregulates the expression of various transporters and nuclear receptors, and enriches gastric cancer stem-like cells. Vincristine sulfate is used in research related to various tumors including acute lymphoblastic leukemia, lymphoma, melanoma, gastric cancer, solid tumors and sarcomas.
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| HY-P99852 | Dilpacimab |
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| HY-P10762 | Ricorfotide vedotin |
Ricorfotide vedotin (CBP-1008) is a dual-ligand peptide-drug conjugate (PDC) conjugated to MMAE (HY-15162), targeting Folate receptor α (FRα) and TRPV6. Ricorfotide vedotin binds to FRα with high affinity and TRPV6 with low affinity. Ricorfotide vedotin has antitumor activity, and can be used in advanced solid tumor research (eg: colorectal cancer, breast cancer, non-small cell lung cancer, ovarian cancer, adrenocortical carcinoma and follicular dendritic cell sarcoma).
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| HY-P11097 | Pep-20 |
Pep-20 is a CD47 binder with a human Kd of 2.91 µM and a murine Kd of 3.63 µM. Pep-20 blocks the interaction between CD47 and SIRPα, with an IC50 of 24.56 µM for human targets and 12.03 µM for murine targets. Pep-20 also acts as a phagocytosis enhancer and an inducer of anti-tumor immune responses. By blocking the CD47/SIRPα interaction, Pep-20 reduces the tyrosine phosphorylation level of SIRPα, disrupts the inhibitory "don't eat me" signaling pathway, enhances macrophage-mediated phagocytosis of solid tumor cells and hematologic tumor cells, and promotes macrophage mobilization of anti-tumor T-cell responses. Pep-20 can be used in research related to solid tumors, hematologic malignancies, breast cancer, and pancreatic cancer.
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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-P991479 | Amtabafusp alfa |
Amtabafusp alfa (GS-8588) is an envelope-targeting bispecific T-cell engager for HIV treatment. Amtabafusp alfa redirects effector T cells by binding to CD3 via a humanized anti-CD3 Fab domain and to HIV envelope proteins via an engineered CD4 domain 1 variant. Amtabafusp alfa exhibits potent, broad-spectrum activity against a variety of HIV isolates and specifically kills HIV-infected cells. Amtabafusp alfa can be used for research on HIV infection.
Species: Human |
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| HY-W035709 | Hydrocinchonine |
Hydrocinchonine (Dihydrocinchonine) is a multidrug resistance (MDR)-reversal agent. Hydrocinchonine directly inhibits the function and expression of P-gp, which is the mechanism by which it reverses MDR. Hydrocinchonine exerts synergistic apoptotic effect with Paclitaxel (HY-B0015) in MES-SA/DX5 cells. Hydrocinchonine can be used for the study of gynecological malignant tumors (such as uterine sarcoma) with drug resistance caused by excessive expression of P-gp.
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| HY-P991208 | Flt-3L-Ig (hum/hum) |
Flt-3L-Ig (hum/hum) (hFlt3L) is a Flt3 ligand. Flt-3L-Ig (hum/hum) enhances the release of inflammatory cytokines from myeloid cells and dendritic cells in BRGSF-CBC mice induced by OKT3. Flt-3L-Ig (hum/hum) increases the release of IL-2, CCL2 and CXCL10 in an OKT3-dependent manner. Flt-3L-Ig (hum/hum) can be used in studies related to cytokine release syndrome. Flt-3L-Ig (hum/hum) can be used in studies related to psoriasis-like skin inflammation.
Species: Human |
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| HY-P99754 | Netakimab |
Netakimab (BCD-085) is a humanized IgG1κ monoclonal anti-IL-17 antibody that binds to and blocks IL-17 and IL-17A activity, including reduction of downstream IL-6 production. Netakimab can be used for the research of moderate-to-severe plaque psoriasis, ankylosing spondylitis, and COVID-19 with cytokine release syndrome. Recommend Isotype Controls: Human IgG1 kappa, Isotype Control (HY-P99001).
Species: Human |
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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-13582S | Carbendazim-d4 |
Carbendazim-d4 is the deuterium labeled Carbendazim. Carbendazim is a potent and orally active broad-spectrum?benzimidazole fungicide and can be acts as a pesticide for fungal diseases research, such as Seproria,?Fusarium?and?Sclerotina. Carbendazim is a benzimidazole (HY-Y1825) derivative with antitumor activity and used for cancer research, especially advanced solid tumors and lymphoma.
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| HY-P99489 | Budigalimab |
Budigalimab (ABBV 181; PR 1648817) is a humanized, recombinant IgG1 monoclonal antibody targeting programmed cell death 1 (PD-1) receptor. Budigalimab has an Fc mutation that reduces the inhibition of Fc receptor interactions and effector factors. Budigalimab can block the binding of PD-1 and PD-L1, which has anti-tumor activity. Budigalimab can be used in the study of solid tumors.
Species: Human |
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| HY-P10862A | AH-D peptide TFA |
AH-D peptide TFA is an antiviral peptide that selectively disrupts membrane structures within the size range of exosomes, inducing T-EXO depletion and enhancing cancer immunotherapy.
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| HY-P99914 | Emfizatamab |
Emfizatamab (GNC-038) is a monoclonal antibody against CD19/CD3E/TNFRSF9/PD-L1. Emfizatamab exhibits antitumor activity, being capable of activating CD3 and 4-1BB signals on T cells, as well as targeting the high expression of CD19 or PD-L1 on tumor cells. Emfizatamab functions as a CD19-specific T cell engager by mediating direct antitumor activity. Emfizatamab can also overcome the inhibition of T cells by PD-L1. Emfizatamab can be used in the research of tumors such as R/R non-Hodgkin lymphoma or acute lymphoblastic leukemia.
Species: Human |
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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-P3486 | GADGVGKSAL |
GADGVGKSAL is a mutant KRAS G12D 10mer peptide. GADGVGKSAL can be used as an immunogenic neoantigen for cancer immunotherapy research.
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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-P3487 | GAGGVGKSA |
GAGGVGKSA is a wild type KRAS G12D 9mer peptide. GAGGVGKSA can be used as an immunogenic neoantigen for cancer immunotherapy research.
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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-P99834 | Crefmirlimab |
Crefmirlimab (IAB22M2C; ImaginAb) is a humanized CD8-specific single-domain antibody. Conjugation of Crefmirlimab with radioisotopes (e.g., 89Zr) enables tumor immune infiltration assessment, autoimmune disease detection, and immunotherapy response monitoring. Crefmirlimab is applicable for cancer research.
Species: Human |
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| HY-P991444 | IPH5201 |
IPH5201 is a selective CD39 inhibitor and a humanized IgG1 monoclonal antibody. IPH5201 selectively binds to and inhibits the enzymatic activity of both membrane-bound and soluble CD39, blocking ATP hydrolysis. IPH5201 enhances the phenotypic maturation and activation of dendritic cells and macrophages. IPH5201 potentiates the anti-tumor effect of Oxaliplatin (HY-17371). IPH5201 shows preliminary evidence of disease stabilization in advanced solid tumor models when used as a single agent or in combination with Durvalumab (HY-P9919). IPH5201 can be used for the research of advanced solid tumors.
Species: Human |
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| HY-P99562 | Tidutamab |
Tidutamab (XmAb-18087) is a humanized and affinity-optimized bispecific antibody (bsAb) targeting SSTR2 binding domain and T-cell binding domain (CD3). Tidutamab possesses a full Fc domain to maintain long serum half-life.Tidutamab eliminates SSTR+ tumor cells by stimulating redirected T cellmediated cytotoxicity (RTcC).
Species: Human |
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| HY-P990905 | Bexatamig |
Bexatamig (SAR-443579) is a trifunctional natural killer cell engager targeting IL-3R α/CD123, NKp46/NCR1/CD335 and Fc gamma RIIIA/CD16a. Bexatamig forms a cytolytic synapse between natural killer cells and CD123-positive tumor cells. By activating natural killer cells to induce tumor cell death, Bexatamig effectively reduces the burden of CD123-positive acute myeloid leukemia (AML) blasts. Bexatamig has been granted FDA Fast Track designation, and is primarily investigated for relapsed or refractory acute myeloid leukemia, B-cell acute lymphoblastic leukemia, and high-risk myelodysplastic syndromes.
Species: Human |
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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-N2732 | 6-Prenylapigenin |
6-Prenylapigenin (6-Prenyl-4',5,7-trihydroxyflavone; 6-C-Prenylapigenin) is a prenylated flavonoid that exists in the stems and leaves of Maclura pomifera. 6-Prenylapigenin exhibits cytotoxicity against cancer cells such as leukemia cells and solid tumor cells.
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| HY-P99948 | Etevritamab |
Etevritamab (AMG-596) is a bispecific T-cell engager that targets EGFRvIII and CD3. Etevritamab simultaneously binds CD3 on T cells and EGFRvIII on glioblastoma multiforme cells, thereby forming a bridge structure. Etevritamab triggers T-cell activation, proliferation, secretion of cytotoxic substances, and tumor cell lysis. Etevritamab extends overall survival and induces tumor regression in mouse models of glioblastoma multiforme. Etevritamab can be used for research related to glioblastoma.
Species: Human |
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| HY-N1420AR | Rhamnose monohydrate (Standard) |
Rhamnose monohydrate (Standard) is the analytical standard of Rhamnose monohydrate (HY-N1420A). Rhamnose monohydrate (L-Rhamnose monohydrate) is an orally active deoxysugar. Rhamnose monohydrate can inhibit levels of pro-inflammatory interleukin and matrix metalloproteinases (MMPs) in skin aging models. Rhamnose can promote the phosphorylation levels of PKA substrates and HSL in SVF-derived adipocytes, stimulating PKA signaling. Rhamnose monohydrate can act against obesity in mice by stimulating fat dopamine receptors and inducing thermogenesis. Rhamnose monohydrate shows anti-aging effects. Rhamnose monohydrate can be used in the study of Ehrlich’s solid tumors and sarcomas.
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| HY-P10424 | OPBP-1 |
OPBP-1 is a D-peptide obtained by phage display screening, molecular docking and molecular dynamics simulation. OPBP-1 has high stability and strong antitumor and oral activity. OPBP-1 can selectively bind PD-L1 protein, significantly block the interaction between PD-1 and PD-L1, and this blocking effect helps to restore and improve the function of T lymphocytes and reduce the proportion of bone marrow derived suppressor cells (MDSCs) to combat tumor-induced immune escape. OPBP-1 can be used in cancer immunotherapy research.
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Lung Cancer
Breast Cancer
Colorectal Cancer
Gastric Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Ovarian Cancer
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| HY-P3488 | GADGVGKSA |
GADGVGKSA is a mutant KRAS G12D 9mer peptide. GADGVGKSA can be used as an immunogenic neoantigen for cancer immunotherapy research.
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| HY-P99916 | Emirodatamab |
Emirodatamab (AMG-427) is a bispecific T-cell engager (BiTE). Emirodatamab simultaneously binds FLT3 on the surface of acute myeloid leukemia (AML) cells and CD3 on the surface of T cells, thereby precisely recruiting immune effector cells to tumor sites. Emirodatamab potently induces T cell activation, secretion of proinflammatory cytokines (such as IFNγ, TNFα), and specific cytotoxicity, effectively lysing FLT3-positive tumor cells and inhibiting their growth. Emirodatamab not only significantly prolongs survival in mouse xenograft models and eliminates diseased cells in primates, but also exhibits a synergistic enhancement effect when combined with PD-1 blockade therapy. Emirodatamab is used in studies of acute myeloid leukemia, especially relapsed or refractory cases.
Species: Human |
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| HY-128995AS | Glycyl-Exatecan-d5 hydrochloride |
Glycyl-Exatecan-d5 (Glycyl-DX-8951-d5) hydrochloride is deuterium labeled Glycyl-Exatecan (HY-128995A). Glycyl-Exatecan (Glycyl-DX-8951), a derivative of Exatecan (HY-13631), is an anticancer agent. Glycyl-Exatecan has significantly antitumor activity. Glycyl-Exatecan can be used for cancers like solid tumors research.
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| HY-N9459 | 2-Amino-2-deoxyglucose hydrochloride |
2-Amino-2-deoxyglucose hydrochloride (D-Glucosamine Hydrochloride) is a glucose analog that is specifically recognized and transported by the cell membrane GLUT1. 2-Amino-2-deoxyglucose hydrochloride acts as a tumor-targeting ligand and a guiding molecule for the synthesis of prodrug conjugates, thus delivering drugs precisely to tumor cells. 2-Amino-2-deoxyglucose hydrochloride is applicable to diagnostic imaging and therapeutic efficacy monitoring of solid tumors and various cancers (e.g., breast cancer, glioblastoma). 2-Amino-2-deoxyglucose hydrochloride also helps bacteria resist lysozyme digestion by integrating into the non-N-acetylated residues of Streptococcus pneumoniae peptidoglycan. 2-Amino-2-deoxyglucose hydrochloride is used in studies on tumor metabolism and the exploration of bacterial drug resistance mechanisms.
Source: Vibrio |
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| HY-P991526 | M701 |
M701 is a T-cell engager bispecific humanized antibody targeting epithelial cell adhesion molecule (EpCAM) and cluster of differentiation 3 (CD3). M701 binds to EpCAM on tumor cells and CD3 on T cells, thereby linking the two cell populations to achieve targeted cytotoxicity and T cell-mediated cytotoxicity. M701 is applicable to research related to advanced epithelial solid tumors.
Species: Human |
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| HY-P991061 | Tagmokitug |
Tagmokitug (CHS-114; SRF-114) is a fully human IgG1 antibody targeting CCR8. Tagmokitug selectively binds to human CCR8 (Kd = 502 pM) and mediates the death of CCR8-expressing cells via antibody-dependent cellular cytotoxicity and antibody-dependent cellular phagocytosis. Tagmokitug selectively eliminates intratumoral regulatory T cells, induces tumor growth inhibition, remodels the tumor immune microenvironment, and promotes the differentiation of cytotoxic CD8+ T cell subsets. Tagmokitug can be used for the research of solid tumors.
Species: Human |
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| HY-122094 | Steppogenin |
Steppogenin is a potent inhibitor of HIF-1α and DLL4, with IC50 values of 0.56 and 8.46 μM, respectively. Steppogenin can be sued for the research of angiogenic diseases, such as those involving solid tumors.
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| HY-P10856 | CPI1 |
CPI1 is a multidrug resistance protein 1 (MRP1) inhibitor with a Ki value of 100 nM. CPI1 binds to the same substrate-binding site as leukotriene C4, stabilizes MRP1 in an apo-like inward-facing conformation, blocks the conformational changes required for ATP hydrolysis and substrate transport, and inhibits the ATPase activity of human and bovine MRP1. CPI1 serves as a tool for investigating the substrate transport mechanism of MRP1. CPI1 is applicable to research related to cancer multidrug resistance.
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| HY-172320 | BMS-986238 |
BMS-986238 is an orally active macrocyclic peptide PD-L1 inhibitor. BMS-986238 can be used in the research of tumors such as solid tumors and lymphomas.
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| HY-P11058 | OVA(250-264) |
OVA(250-264) (OVAvac) (OVAp) is an antigen peptide that can be from ovalbumin (OVA) presented by the class I MHC molecule, H-2Kb. OVA(250-264) combined withαMSLN (anti-MSLN antibody) significantly induces antigen-specific CD8+ T cell generation and infiltration for enhancing antitumor efficacy in orthotopic pancreatic cancer mice model. OVA(250-264) can be used for neoantigen vaccine development in pancreatic cancer immunotherapy research.
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| HY-P990981 | Clesitamig |
Clesitamig (ALPS-12) is a trispecific T cell engager with two CD3/CD137 dual-specific Fabs and one DLL3 Fab. Clesitamig engages CD3 and CD137 on T cells to activate and co-stimulate T cells, promoting their proliferation, survival, and antitumor activity. Clesitamig binds to DLL3 on tumor cells for tumor-specific recognition. Clesitamig can be used for the research of small cell lung cancer (SCLC).
Species: Human |
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| HY-P99523 | Vepsitamab |
Vepsitamab (AMG 199) is a bispecific T-cell engager (HLE BiTE) that binds to MUC17 and CD3. Vepsitamab directs CD3-positive cells to target MUC17-positive cells. Vepsitamab induces cell activation and proliferation. Vepsitamab is applicable to research related to gastric cancer and gastroesophageal junction (g/gej) cancer.
Species: Human |
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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-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-P10950A | PD-L1 inhibitory peptide TFA |
PD-L1 inhibitory peptide TFA is an inhibitor targeting the PD-1/PD-L1 interaction. PD-L1 inhibitory peptide TFA inhibits the PD-1-mediated apoptosis signaling pathway, maintains the survival and activity of T cells, activates the anti-tumor effect of cytotoxic T lymphocytes, and significantly improves the survival rate of mice in fungal sepsis models. PD-L1 inhibitory peptide TFA can be used for research on sepsis, breast cancer and other related diseases, as well as immunotherapy.
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| HY-P990785 | Etentamig |
Etentamig is a BCMA × CD3 bispecific T-cell engager (BiTE) that can inhibit the activity of B-cell maturation antigen (BCMA) and activate the T-cell surface glycoprotein CD3 complex. Etentamig can be used for research in multiple myeloma, immunoglobulin light chain amyloidosis, and cardiovascular diseases.
Species: Human |
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| HY-P990042 | Gotistobart |
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| HY-P990650 | PY159 |
PY159 is a humanized antibody targeting TREM1/CD354. PY159 reprograms immunosuppressive intratumoral myeloid cells towards an inflammatory, anti-tumor phenotype, promotes anti-tumor immune responses, upregulates monocyte activation markers, and induces proinflammatory cytokines. PY159 can be used for the research of platinum-resistant ovarian cancer, advanced solid tumors, and advanced refractory solid tumors.
Species: Human |
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| HY-P99798 | Pacanalotamab |
Pacanalotamab (AMG 420; BI-836909) is a bispecific T-cell engager (BiTE) targeting to BCMA and CD3E. BCMA refers to B cell maturation antigen, as Pacanalotamab redirecting T cells to BCMA expressing cells on the cell surface. Pacanalotamab conducts T-cell redirected lysis of human multiple myeloma (MM) cell lines.
Species: Human |
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| HY-P990710 | Acimtamig |
Acimtamig (AFM13) is a CD30/CD16A bispecific innate cell engager. Acimtamig binds to the CD16A expressed on natural killer (NK) cells and binds to CD30 on CD30-expressing tumor cells, thereby selectively cross-linking tumor and NK cells. Acimtamig can be used for the study of eripheral T-cell lymphoma (PTCL).
Species: Human |
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| HY-156712 | Depatuxizumab MMAE |
Depatuxizumab MMAE is an antibody-drug conjugate (ADC) comprising an anti EGFR monoclonal antibody (Depatuxizumab) (HY-P99849) and the cytotoxic agent Monomethyl auristatin E (MMAE) (HY-15162). Depatuxizumab MMAE can be used for the study of EGFR-expressing advanced solid tumors.
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| HY-P990980 | Cizutamig |
Cizutamig (CND-106) is a bispecific T-cell engager targeting BCMA and CD3. Cizutamig exhibits immunostimulatory and anti-tumor activities. Cizutamig can be used in research related to relapsed or refractory multiple myeloma and systemic lupus erythematosus.
Species: Human |
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| HY-P990717 | Brenetafusp |
Brenetafusp is a TCR/anti-CD3 bispecific fusion protein, consisting of a TCR targeting the PRAME peptide and an anti-CD3 scFv effector domain. Brenetafusp redirects CD3+ T cells to kill PRAME+ tumor cells. Brenetafusp can be used in research related to cutaneous melanoma, non-small cell lung cancer, ovarian cancer, endometrial cancer, triple-negative breast cancer, and small cell lung cancer.
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-N7677 | Isookanin |
Isookanin can be used for the research of various illnesses including cancers, skin rashes, snake and insects bites, diabetes mellitus, diarrhoea. Isookanin acts as an anti-viral agent against HSV and varicella-zoster virus (VZV). Antioxidant activity.
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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-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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| HY-P99332 | Visilizumab |
Visilizumab (Anti-Human CD3E Recombinant Antibody) is a humanized low-Fc receptor binding anti-CD3 monoclonal IgG2 antibody. Visilizumab can be used for ulcerative colitis and Crohn's disease research.
Species: Human |
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| HY-P99217 | Rilotumumab |
Rilotumumab (AMG 102) is an anti-HGF (anti-hepatocyte growth factor) monoclonal antibody, inhibits HGF/MET-driven signaling. Rilotumumab shows anti-tumor activity, and can be used in castration-resistant prostate cancer (CRPC) and solid tumor research.
Species: Human |
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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-P99430 | Alnuctamab |
Alnuctamab (EM901) is a bispecific T-cell engager targeting BCMA and CD3, belonging to an asymmetric two-armed humanized IgG1 antibody. Alnuctamab can simultaneously bind to BCMA expressed on the surface of myeloma cells and CD3 molecules on the surface of T cells, recruiting T cells to kill tumors. Alnuctamab is used for the research of multiple myeloma. Recommend Isotype Controls: Human IgG1 kappa, Isotype Control (HY-P99001).
Species: Human |
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| HY-P99211 | Otelixizumab |
Otelixizumab (ChAglyCD3) is an anti-human CD3 monoclonal antibody and can be used for the research of type 1 diabetes.
Species: Human |
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| HY-N2424 | Flavone |
Flavone is an anti-tumor compound that targets cell cycle regulatory proteins (such as cyclin B1) and apoptosis-related factors (such as p21waf1, PIG3). Flavone selectively induces mitochondrial-mediated apoptosis pathways in tumor cells, inhibits cyclin B1 protein expression, upregulates p21waf1, and activates p63/p73 proteins. Flavone has immunomodulatory functions that enhance natural killer cell (NK cell) activity and lymphocyte proliferation. Flavone is used in cancer research, especially for its inhibitory potential in solid tumor models such as esophageal cancer and liver cancer.
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| HY-P99757 | Nivatrotamab |
Nivatrotamab (Hu3F8-BsAb) is a bispecific antibody targeting GD2 and CD3, with KD values of 5.8 nM and 194 nM, respectively. Nivatrotamab redirects T cells to tumor sites and activates immune synapses, thereby mediating antibody-dependent T cell-mediated cytotoxicity. Nivatrotamab induces specific tumor cytotoxicity, stimulates the release of Th1 cytokines and promotes immune cell infiltration into tumors. In addition, its Fc segment deglycosylation design effectively prevents complement activation and cytokine storm. Nivatrotamab can be widely used in research related to various solid tumors, including melanoma, neuroblastoma, osteosarcoma, small cell lung cancer, breast cancer, Ewing's sarcoma, colon cancer, ovarian cancer and rhabdomyosarcoma.
Species: Human |
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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-P1827 | mTRP-2 (180-188) |
mTRP-2 (180-188) is an MHC class I-restricted tumor-associated antigenic peptide derived from mouse tyrosinase-related protein 2 (TRP-2). mTRP-2 (180-188) binds to HLA-A*0201 with an ID50 of 36 nM. mTRP-2 (180-188) can be presented by H-2Kb molecules and activate TRP-2-specific cytotoxic T lymphocytes (CTL). mTRP-2 (180-188) induces immune responses against B16 melanoma by promoting antigen-specific T cell proliferation, cytokine release, and CTL-mediated tumor cell killing. mTRP-2 (180-188) can be used in studies related to melanoma, glioma, and tumor immunology.
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| HY-P991731 | Alveltamig |
Alveltamig (ZG006) is a trispecific T cell engager targeting Delta-like ligand 3 (DLL3)/CD3, mediating T cell-specific killing of DLL3-expressing tumor cells. Alveltamig can be used for the researches of small cell lung cancer and neuroendocrine carcinoma.
Species: Human |
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| HY-P99708 | Livmoniplimab |
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| HY-P99118 | Serplulimab |
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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-P990730 | Cabotamig |
Cabotamig is a humanized bispecific T-cell engager antibody targeting CDH17/CD3. Cabotamig is generated from anti-CDH17 monoclonal ARB102 by linking a CD3-binding scFv in the format of IgG4-scFv. Cabotamig can be used for the research of cancer, such as gastric cancer and colon cancers.
Species: Human |
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| HY-P990932 | Obrixtamig |
Obrixtamig (BI 764532; OBT 620) is an CD3E/DLL3-targeting L-κ-G1-h-CH2-CH3_L-λ-G1-h-CH2-CH3 type human antibody. Obrixtamig is a delta-like ligand 3 (DLL3)/CD3 IgG-like T-cell engager. Obrixtamig can be used for research of DLL3-positive small cell lung cancer.
Species: Human |
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| HY-P99827 | Cobolimab |
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| HY-P99910 | Eluvixtamab |
Eluvixtamab (AMG-330) is a bispecific T-cell engager. Eluvixtamab binds to CD33 and CD3 on T cells, thereby promoting T cell-mediated cytotoxicity against CD33+ cells. Eluvixtamab can be used in the research of tumors such as relapsed/refractory acute myeloid leukemia.
Species: Human |
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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-177442 | DS-3939a |
DS-3939a (DS-3939) is an anti-TA-MUC1 (tumor-associated mucin-1) antibody-drug conjugate (ADC). DS-3939a consists of a humanized anti-TA-MUC1 IgG1 monoclonal antibody Gatipotuzumab ( HY-P99634), a stable and cleavable tetrapeptide-based linker (Gly-Gly-Phe-Gly), and a DNA topoisomerase I inhibitor payload (DXd) (HY-13631D), and the drug-linker conjugate for ADC is Deruxtecan (HY-13631E). DS-3939a inhibits the growth of TA-MUC1-positive cancer cells (CFPAC-1, NCI-H2110) by inducing DNA damage and apoptosis. DS-3939a exhibits significant antitumor activity in a variety of TA-MUC1-expressing advanced solid tumors. DS-3939a can be used for the study of TA-MUC1-expressing advanced cancers.
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| HY-P99038 | Odronextamab |
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| HY-P990104 | Anti-DLL3 Antibody (anti-DLL3 arm derived from AMG-757) |
Anti-DLL3 Antibody (anti-DLL3 arm derived from AMG-757) is the anti-DLL3 arm of the bispecific T-cell engager (BiTE) antibody-Tarlatamab (AMG-757) (HY-P99575). Tarlatamab targets both DLL3 and CD3.
Species: Human |
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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-P99175 | KWAR 23 |
KWAR23 is an anti-human SIRPα antibody. KWAR23 binds human SIRPα with high affinity and disrupts its binding to CD47. KWAR23 shows antitumor activity in combination with tumor-opsonizing antibodies and can be used in cancer immunotherapy research.
Species: Human |
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| HY-P9989 | Linvoseltamab |
Linvoseltamab (REGN5458) is a bispecific T-cell engager (BiTE) antibody that specifically binds to B cell maturation antigen (BCMA) and CD3 of T cells, thereby directing T cells to multiple myeloma (MM) cells expressing BCMA and activating T cells to kill tumor cells. Linvoseltamab can be used in research of relapsed/refractory multiple myeloma (RRMM).
Species: Human |
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| HY-177434 | Precemtabart tocentecan |
Precemtabart tocentecan (Precem-TcT; M 9140) is an anti-CEACAM5 (carcinoembryonic antigen-related cell adhesion molecule 5) antibody-drug conjugate (ADC). Precemtabart tocentecan consists of a tumor-specific anti-CEACAM5 monoclonal antibody Precemtabart (HY-P990940), a highly hydrophilic and stable cleavable β-glucuronide linker, and a topoisomerase 1 inhibitor payload Exatecan (HY-13631), and the drug-linker conjugate for ADC is Mal-Gly-PAB-Exatecan-D-glucuronic acid (HY-153179). Precemtabart tocentecan inhibits the growth of CEACAM5-positive cancer cells. Precemtabart tocentecan exhibits significant antitumor activity in CEACAM5-expressing xenograft models. Precemtabart tocentecan can be used for the study of CEACAM5-expressing advanced solid tumors, especially mCRC.
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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-P99152 | Muromonab |
Muromonab (Muromonab-CD3; OKT3) is a mouse monoclonal antibody targeting the CD3 antigen. Muromonab specifically binds to the CD3 antigen on the surface of human and higher primate T cells. Muromonab blocks the function of T cell receptors to recognize foreign antigens and inhibits T cell-mediated immune responses, including cell-mediated lymphocyte lysis and T cell proliferation responses. Muromonab can be used to study acute kidney, liver, heart and combined kidney-pancreas transplant rejection, and can also be used to study graft-versus-host disease in bone marrow transplant patients.
Species: Human |
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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-P99339 | Tebentafusp |
Tebentafusp (IMCgp100) is a bispecific fusion protein to target gp100 peptide-HLA-A*02:01 (a melanoma-associated antigen). Tebentafusp guides T cells to kill gp100-expressing tumor cells via a high affinity T-cell receptor (TCR) binding domain and an anti-CD3 T-cell engaging domain. Tebentafusp leads to inflammatory cytokines and cytolytic proteins production, resulting in the direct lysis of tumour cells.
Species: Human |
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| HY-P99539 | Ubamatamab |
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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-P990864 | Anti-CD3 Antibody (OKT-3) |
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| HY-P990534 | Anti-TSHR Antibody (K1-70) |
Anti-TSHR Antibody (K1-70) is an anti-TSHR monoclonal antibody. Anti-TSHR Antibody (K1-70) incorporates a single-chain variable fragment into a chimeric antigen receptor to redirect T cells to TSHR-expressing cells. Anti-TSHR Antibody (K1-70) shows antitumor activity with no apparent toxicity. Anti-TSHR Antibody (K1-70) can be used for the research of differentiated thyroid cancer (DTC).
Species: Human |
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| HY-P991015 | Pasritamig |
Pasritamig (JNJ-78278343; KLCB-245) is a bispecific T-cell engager (BiTE) that targets the complex of human kallikrein KLK2 and CD3 receptor. Pasritamig redirects the cytotoxicity of T cells to KLK2-expressing tumor cells and induces T cell-mediated lysis of KLK2-expressing prostate cancer cells. Administered via subcutaneous injection, subcutaneous infusion or intravenous infusion, Pasritamig exhibits antitumor activity against metastatic castration-resistant prostate cancer. Pasritamig has a safety profile with an extremely low incidence of cytokine release syndrome and can be safely administered in an outpatient setting. Pasritamig is applicable to the research of metastatic castration-resistant prostate cancer.
Species: Human |
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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-P9975 | Theralizumab |
Theralizumab (TGN1412) is a humanized lgG4 superagonistic anti-CD28 monoclonal antibody that directly stimulates T cells. Theralizumab can cause cytokine release syndrome (CRS). Theralizumab can be used for the research of rheumatoid arthritis.
Species: Human |
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| HY-P99392 | Teclistamab |
Teclistamab is a human bispecific antibody to BCMA and CD3 that recognizes BCMA on target cells and CD3 on T cells and induces T cell-mediated cytotoxicity leading to T cell activation and subsequent target cell lysis. Teclistamab can be used in studies of diseases related to multiple myeloma (MM).
Species: Human |
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| HY-P9999 | Trontinemab |
Trontinemab (RG6102) is a brain-penetrant, anti-amyloid, bispecific and humanizedized IgG1-κ antibody, targeting to Aβ plaques and transferrin receptor 1 (TFR1). Trontinemab binds to fibrillar Aβ as well as Aβ plaques triggering plaque clearance by engaging immune cells on Alzheimer disease (AD) brain sections. Trontinemab also shows specific affinity to cynomolgus and human TFR1.
Species: Human |
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| HY-P72015 | TROP-2 Protein, Human (HEK293, hFc) |
The TROP-2 protein emerged as a potential growth factor receptor, implying involvement in cellular processes related to growth and signaling. As a putative receptor, TROP-2 may play a crucial role in transducing signals that regulate cell growth and proliferation. TROP-2 Protein, Human (HEK293, hFc) is the recombinant human-derived TROP-2 protein, expressed by HEK293 , with C-hFc labeled tag.
Species: Human; Source: HEK293 |
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| HY-P78223 | TROP-2 Protein, Human (Biotinylated, HEK293, His-Avi) |
The TROP-2 protein emerged as a potential growth factor receptor, implying involvement in cellular processes related to growth and signaling. As a putative receptor, TROP-2 may play a crucial role in transducing signals that regulate cell growth and proliferation. TROP-2 Protein, Human (Biotinylated, HEK293, His-Avi) is the recombinant human-derived TROP-2 protein, expressed by HEK293 , with C-Avi, C-His labeled tag.
Species: Human; Source: HEK293 |
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| HY-P77610 | CD3D-CD3E Heterodimer Protein, Human (HEK293, Fc) |
CD3D protein is a component of the TCR-CD3 complex on T lymphocytes and plays a key role in adaptive immunity. It transmits signals through the CD3D, CD3E, CD3G, and CD3Z chains upon TCR engagement. CD3D-CD3E Heterodimer Protein, Human (HEK293, Fc) is a recombinant protein dimer complex containing human-derived CD3D-CD3E Heterodimer protein, expressed by HEK293 , with C-hFc labeled tag. CD3D-CD3E Heterodimer Protein, Human (HEK293, Fc), has molecular weight of 40-53 kDa.
Species: Human; Source: HEK293 |
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| HY-P700677 | CD3D-CD3E Heterodimer Protein, Human (Biotinylated, HEK293, His) |
CD3 epsilon is an important component of the TCR-CD3 complex on T lymphocytes and promotes TCR-mediated signaling. When APC activates the TCR, CD3 epsilon, together with CD3D, CD3G, and CD3Z, transmits signals across the cell membrane through ITAMs. CD3E-CD3D Heterodimer Protein, Human (Biotinylated, HEK293, His) is a recombinant protein dimer complex containing human-derived CD3E-CD3D Heterodimer protein, expressed by HEK293 , with C-His labeled tag. CD3E-CD3D Heterodimer Protein, Human (Biotinylated, HEK293, His), has molecular weight of 25-40 kDa.
Species: Human; Source: HEK293 |
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| HY-P71387 | TROP-2 Protein, Mouse (HEK293, His) |
The TROP-2 protein functions as a growth factor receptor and has been shown to play a critical role in mediating cellular responses associated with growth regulation. Its involvement indicates that it plays a crucial role in signal transduction during cell growth. TROP-2 Protein, Mouse (HEK293, His) is the recombinant mouse-derived TROP-2 protein, expressed by HEK293 , with C-6*His labeled tag.
Species: Mouse; Source: HEK293 |
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| HY-P77612 | CD3D-CD3E Heterodimer Protein, Human (Biotinylated, HEK293, Fc-Avi) |
CD3D protein is a component of the TCR-CD3 complex on T lymphocytes and plays a key role in adaptive immunity. It transmits signals through the CD3D, CD3E, CD3G, and CD3Z chains upon TCR engagement. CD3D-CD3E Heterodimer Protein, Human (Biotinylated, HEK293, Fc-Avi) is a recombinant protein dimer complex containing human-derived CD3D-CD3E Heterodimer protein, expressed by HEK293 , with C-Avi, C-hFc labeled tag. CD3D-CD3E Heterodimer Protein, Human (Biotinylated, HEK293, Fc-Avi), has molecular weight of 48-60 kDa.
Species: Human; Source: HEK293 |
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| HY-P77861 | TROP-2 Protein, Cynomolgus (HEK293, His) |
The TROP-2 protein emerged as a potential growth factor receptor, implying involvement in cellular processes related to growth and signaling. As a putative receptor, TROP-2 may play a crucial role in transducing signals that regulate cell growth and proliferation. TROP-2 Protein, Cynomolgus (HEK293, His) is the recombinant cynomolgus-derived TROP-2 protein, expressed by HEK293 , with C-His labeled tag.
Species: Cynomolgus; Source: HEK293 |
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| HY-P74488 | TROP-2 Protein, Mouse (HEK293, hFc) |
The TROP-2 protein functions as a growth factor receptor and has been shown to play a critical role in mediating cellular responses associated with growth regulation. Its involvement indicates that it plays a crucial role in signal transduction during cell growth. TROP-2 Protein, Mouse (HEK293, hFc) is the recombinant mouse-derived TROP-2 protein, expressed by HEK293 , with C-hFc labeled tag.
Species: Mouse; Source: HEK293 |
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| HY-P71388 | TROP-2 Protein, Rhesus macaque (HEK293, His) |
Tumor associated calcium signal transducer 2 (TACSTD2) is a carcinoma-associated antigen which is a cell surface receptor that transduces calcium signals and may also function as a growth factor receptor. TACSTD2 is involved in negative regulation of branching involved in ureteric bud morphogenesis; negative regulation of cellular component organization; negative regulation of substrate adhesion-dependent cell spreading; positive regulation of stem cell differentiation; and regulation of epithelial cell proliferation. TROP-2 Protein, Rhesus macaque (HEK293, His) is the recombinant Rhesus Macaque-derived TROP-2 protein, expressed by HEK293 , with C-6*His labeled tag.
Species: Rhesus Macaque; Source: HEK293 |
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| HY-P704103 | CD3D-CD3E Heterodimer Protein, Cynomolgus (HEK293, His, flag) |
Species: Cynomolgus; Source: HEK293 |
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| HY-P70770 | TROP-2 Protein, Human (HEK293, His-Avi) |
The TROP-2 protein emerged as a potential growth factor receptor, implying involvement in cellular processes related to growth and signaling. As a putative receptor, TROP-2 may play a crucial role in transducing signals that regulate cell growth and proliferation. TROP-2 Protein, Human (HEK293, His-Avi) is the recombinant human-derived TROP-2 protein, expressed by HEK293 , with C-Avi, C-6*His labeled tag.
Species: Human; Source: HEK293 |
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| HY-P74490 | TROP-2 Protein, Human (HEK293, His-hFc) |
The TROP-2 protein emerged as a potential growth factor receptor, implying involvement in cellular processes related to growth and signaling. As a putative receptor, TROP-2 may play a crucial role in transducing signals that regulate cell growth and proliferation. TROP-2 Protein, Human (HEK293, His-hFc) is the recombinant human-derived TROP-2 protein, expressed by HEK293 , with C-hFc, C-His labeled tag.
Species: Human; Source: HEK293 |
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| HY-P77613 | CD3E-CD3G Heterodimer Protein, Human (Biotinylated, HEK293, Fc-Avi) |
CD3 epsilon is an important component of the TCR-CD3 complex on T lymphocytes and promotes TCR-mediated signaling. When APC activates the TCR, CD3 epsilon, together with CD3D, CD3G, and CD3Z, transmits signals across the cell membrane through ITAMs. CD3E-CD3G Heterodimer Protein, Human (Biotinylated, HEK293, Fc-Avi) is a recombinant protein dimer complex containing human-derived CD3E-CD3G Heterodimer protein, expressed by HEK293 , with C-Avi, C-hFc labeled tag. CD3E-CD3G Heterodimer Protein, Human (Biotinylated, HEK293, Fc-Avi), has molecular weight of 48-55 kDa.
Species: Human; Source: HEK293 |
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| HY-P77603 | CD3D-CD3E Heterodimer Protein, Cynomolgus (HEK293, Fc) |
The CD3E/CD3 epsilon 1-27 peptide is critical in the TCR-CD3 complex, transmitting signals during T cell activation. When APC activates the TCR, CD3E undergoes LCK/FYN-mediated phosphorylation together with ITAM, initiating downstream signaling. CD3D-CD3E Heterodimer Protein, Cynomolgus (HEK293, Fc) is a recombinant protein dimer complex containing cynomolgus-derived CD3D-CD3E Heterodimer protein, expressed by HEK293 , with C-hFc labeled tag. CD3D-CD3E Heterodimer Protein, Cynomolgus (HEK293, Fc), has molecular weight of 58-62 kDa.
Species: Cynomolgus; Source: HEK293 |
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| HY-P77606 | CD3E-CD3G Heterodimer Protein, Cynomolgus (Biotinylated, HEK293, Fc) |
The CD3E/CD3 epsilon 1-27 peptide is critical in the TCR-CD3 complex, transmitting signals during T cell activation. When APC activates the TCR, CD3E undergoes LCK/FYN-mediated phosphorylation together with ITAM, initiating downstream signaling. CD3E-CD3G Heterodimer Protein, Cynomolgus (Biotinylated, HEK293, Fc) is a recombinant protein dimer complex containing cynomolgus-derived CD3E-CD3G Heterodimer protein, expressed by HEK293 , with C-hFc labeled tag. CD3E-CD3G Heterodimer Protein, Cynomolgus (Biotinylated, HEK293, Fc), has molecular weight of 44-46 kDa.
Species: Cynomolgus; Source: HEK293 |
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| HY-P78631 | TROP-2 Protein, Canine (HEK293, His) |
The TROP-2 protein emerged as a potential growth factor receptor, implying involvement in cellular processes related to growth and signaling. As a putative receptor, TROP-2 may play a crucial role in transducing signals that regulate cell growth and proliferation. TROP-2 Protein, Canine (HEK293, His) is the recombinant canine-derived TROP-2 protein, expressed by HEK293 , with C-His labeled tag. The total length of TROP-2 Protein, Canine (HEK293, His) is 243 a.a., with molecular weight of 40-50 kDa.
Species: Canine; Source: HEK293 |
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| HY-P700678 | CD3E-CD3G Heterodimer Protein, Human (Biotinylated, HEK293, His) |
CD3 epsilon is an important component of the TCR-CD3 complex on T lymphocytes and promotes TCR-mediated signaling. When APC activates the TCR, CD3 epsilon, together with CD3D, CD3G, and CD3Z, transmits signals across the cell membrane through ITAMs. CD3E-CD3G Heterodimer Protein, Human (Biotinylated, HEK293, His) is a recombinant protein dimer complex containing human-derived CD3E-CD3G Heterodimer protein, expressed by HEK293 , with C-His labeled tag. CD3E-CD3G Heterodimer Protein, Human (Biotinylated, HEK293, His), has molecular weight of 25-40 kDa.
Species: Human; Source: HEK293 |
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| HY-P704960 | CD3D-CD3E Heterodimer Protein, Mouse (HEK293, Fc, His, Flag) |
Species: Mouse; Source: HEK293 |
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| HY-P705116 | CD3E-CD3G Heterodimer Protein, Human (Biotinylated, HEK293, His-Avi) |
Species: Human; Source: HEK293 |
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| HY-P86568 | CD3 epsilon Antibody (YA6260) |
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| HY-P83341 | Mucin 1 Antibody (YA3086) |
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| HY-P80601 | CD3G Antibody (YA538) |
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| HY-P81354 | FOLR1 Antibody (YA1099) |
FOLR1 Antibody (YA1099) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Folate Binding Protein.
Host: Rabbit; Reactivity: Human |
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| HY-P83994 | CD3 epsilon Antibody (YA3691) |
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| HY-P84176 | CD3 zeta Antibody (YA3873) |
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| HY-P85914 | Galectin-3 Antibody (YA5606) |
Galectin-3 Antibody (YA5606) is a Mouse-derived and non-conjugated IgG2b monoclonal antibody, targeting to Galectin-3.
Host: Mouse; Reactivity: Human |
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| HY-P810310 | FOLR1 Antibody (YA9643) |
FOLR1 Antibody (YA9643) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Folate Binding Protein.
Host: Rabbit; Reactivity: Human |
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| HY-P80601A | CD3G Antibody (YA538)(PBS only) |
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| HY-P81354A | FOLR1 Antibody (YA1099)(PBS only) |
FOLR1 Antibody (YA1099) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Folate Binding Protein.
Host: Rabbit; Reactivity: Human |
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| HY-P83994A | CD3 epsilon Antibody (YA3691)(PBS only) |
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| HY-P84932 | Mucin 1 Antibody |
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| HY-P85086 | CD3 zeta Antibody (YA4778) |
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| HY-P85834 | Mucin 1 Antibody (YA5526) |
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| HY-P86024 | Mucin 1 Antibody (YA5716) |
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| HY-P80598A | CD3 epsilon Antibody (YA542)(PBS only) |
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| HY-K0354 | Mouse CD3/CD28 T Cell Activation Magnetic Beads |
MCE Mouse CD3/CD28 T Cell Activation Magnetic Beads are based on the two important co-stimulatory signals, without relying on feeder cells (antigen-presenting cells) or antigens, CD3 and CD28, without relying on feeder cells (antigen-presenting cells) or antigens, enabling simple and rapid T cell activation. |
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| HY-K0355 | Mouse CD3 Cell Depletion Magnetic Beads (Positive Selection) |
MCE Mouse CD3 Cell Depletion Magnetic Beads (Positive Selection) are magnetic beads covalently coupled with anti-mouse CD3 antibodies, enabling the specific binding and magnetic removal of CD3+ cells from single-cell suspensions derived from mouse spleen and other tissues. This allows efficient enrichment of the non-CD3+ cell population. |
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| HY-K0356 | Human CD3 Cell Depletion Magnetic Beads (Positive Selection) |
MCE Human CD3 Cell Depletion Magnetic Beads (Positive Selection) are magnetic beads covalently coupled with anti-human CD3 antibodies, enabling the specific binding and magnetic removal of CD3+ cells from single-cell suspensions derived from human peripheral blood mononuclear cells (PBMCs) or human peripheral blood leukocytes (WBCs). This allows efficient enrichment of the non-CD3+ cell population. |
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