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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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Tsvetkov et al. published in Science and demonstrated a copper-induced programmed cell death — Cuproptosis. As a novel programmed cell death, excess copper triggers abnormal aggregation of lipoylated proteins in TCA cycle and clearance of Fe-S cluster proteins, ultimately leading to cell death.
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A comprehensive explanation of ferroptosis
2022-09-15
Ferroptosis is a new type of RCD that depends on iron and characterized by the accumulation of lipid peroxides. In this article, we will pay our attention on ferroptosis and briefly discusses its mechanism. -
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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Autophagy, derived from the Greek meaning "eating of self", plays an indispensable role in maintaining homeostasis. p27 is an inhibitor of cyclin CDKs, but how p27 regulates autophagy remains unknown. This article will cover the mechanism of autophagy and p27-related cell cycle regulation.
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CMA (chaperone-mediated autophagy) plays an essential role in maintaining neuronal protein stability and preventing neurodegeneration. In this article, we will comprehensively clarify the role of CMA in the occurrence and development of neurodegenerative diseases.
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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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Efferocytosis is the process in which phagocytes remove programmed dead cells. It prevents secondary necrosis of dying cells from releasing harmful cell contents (such as oxides and proteases) that may cause inflammation. Here, we will introduce three stages of efferocytosis: Find, Eat, Digest.
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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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Mitophagy:Mechanisms and Detection
2023-05-25
About 60 years ago, Christian de Duve first used the term "autophagy" to describe his observation of the degradation of mitochondria and other intracellular structures in lysosomes of rat liver. Over the years, autophagy has remained a beloved topic of research by the National Natural Science Foundation of China (NSFC).Today, let's talk about mitochondrial autophagy. -
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). -
Cuproptosis, How much do you know?
2024-08-22
Cells die in a variety of ways, including apoptosis, pyroptosis, necrosis, and ferroptosis......And, of course, cuproptosis. So, how much do you know about cuproptosis? -
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! -
Recently, Mol Cell reported the discovery of the first ferroptosis marker, Hyperoxidized PRDX3! Let’s take a look together~
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Cuproptosis's Knowledge Points!
2024-09-25
With the establishment of the cuproptosis mechanism related research has attracted more and more attention from major journals. Expect to use the sharp sword of cuproptosis to stab the tumor cells. -
2024 Nobel Prize Announcements! Curious about the details? Click to dive into the exciting developments!
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A New Form of Cell Death: PANoptosis!
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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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Autophagy is a fundamental process that degrades various components within the cell.
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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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Microglia– the only immune cells within the brain parenchyma. With advancements in imaging technologies, people’s understanding of microglia has shifted from being viewed as 'resting' cells to 'highly active' cells, particularly due to their dynamic processes that seem to be probing surrounding tissues and monitoring neuronal activity. This has made microglia a focal point of research in the field of neuroscience.
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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. -
A November 2025 Cell study discovers Mitoxyperilysis, a new mTOR-regulated, caspase-independent cell death pathway driven by innate immune and metabolic dysregulation via mitochondrial-plasma membrane contact and oxidative damage, and verifies its potential to induce tumor necrosis for cancer therapy with key regulators including BAX, BAK1 and BID.
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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 introduces the major forms of programmed cell death, with a focus on the molecular mechanisms of ferroptosis and the methods used for its detection.
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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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This review provides a practical guide to the fundamental mechanisms, regulatory pathways, and detection methods of pyroptosis.
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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 the overview of engineered EVs, their construction methods, and applications in cancer immunotherapy.
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Highlight single-cell metabolomics and stable isotope tracing (SIT) in uncovering metabolic heterogeneity and nutrient flux dynamics in tumors.
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Explore ADC evolution, immune combination strategies, and clinical advances at the intersection of targeted therapy and immunotherapy.
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Tumor Organoid-Immune Cell Co-Culture Models: Advances, Applications, and Future Directions
2026-05-07
Summarize technical strategies, application advances, and future directions of tumor organoid–immune co-culture systems. -
Review mechanisms, major challenges, and efficacy-enhancing strategies of TCR-T therapy in solid tumors, with implications for future research and clinical translation.
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The Dual Role of Cellular Senescence in Cancer: Mechanisms, Microenvironment, and Therapeutics
2026-05-21
Explore the dual role of cellular senescence in cancer, including tumor suppression, SASP-driven tumor promotion, senescence heterogeneity and plasticity, and advances in senescence-targeted therapies. -
Breaking Immune Resistance in Colorectal Cancer: From Molecular Mechanisms to Precision Therapy
2026-06-25
Explore CRC molecular subtypes, immune landscapes, resistance mechanisms, and emerging precision strategies for improving outcomes across distinct subtypes. -
Explore the mechanisms of tumor immune evasion, dynamic checkpoint regulation, and the evolution of mechanism-driven combinations and patient stratification.
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Review the metabolic regulation of ferroptosis through iron homeostasis, lipid peroxidation and antioxidant defence, and the emerging polyamine–iron buffering axis.
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EC0489, a SMDC for Cancer Therapy
2019-03-25
EC0489, a conjugate of folic acid and desacetyl vinblastine hydrazide, is a SMDC under development for the treatment of solid tumours. -
R916562, a dual Axl/VEGF-R2 inhibitor, could be a potential anti-angiogenic and anti-metastatic drug for cancer chemotherapy.
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Role of PRMT7 Probe SGC3027 in Cancer
2019-03-27
SGC3027 is the first potent, selective and cell active chemical probe for PRMT7. SGC3027 is also a pro-drug, which converts to the active compound SGC8158 -
Alofanib, An Allosteric Inhibitor of FGFR2
2019-03-28
Alofanib is an allosteric inhibitor of FGFR2 and inhibits FGF-mediated proliferation with GI50s of 16-370 nM, showing pronounced antitumor activity. -
AZD5991, a macrocyclic molecule with high selectivity for Mcl-1, reduces Mcl-1 protein in AZD5991-sensitive but not in AZD5991-resistant MM cell lines.
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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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CCB02 is an tubulin binder and has potential in the therapy of cancer cells with extra centrosomes. CCB02 also activates spindle assembly checkpoint.
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H3B-5942 is a selective and irreversible estrogen receptor covalent antagonist, inactivates both ERαWT and ERα mutation.
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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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HS-1371 is a Small Molecule RIP3 Inhibitor
2019-04-09
HS-1371 is a novel kinase inhibitor of RIP3-mediated necroptosis, showing an inhibitory effect on S227 auto-phosphorylation of RIP3 at the basal level. -
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. -
PhiKan 083 is a carbazole derivative, which binds to the surface cavity and stabilizes Y220C (a p53 mutant), with a Kd of 167 μM.
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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. -
Novel Greatwall Kinase Inhibitor GKI-1
2019-04-13
GKI-1, a GWL inhibitor, robustly inhibited ROCK1 with an IC50 of ~11 μM, but only weakly affected PKA and had no observable inhibition towards CDK2. -
SSE15206 is a microtubule polymerization inhibitor, with a GI50 of 197 nM in HCT116 cells. Causes aberrant mitosis resulting in G2/M arrest.
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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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Cevipabulin is a microtubule-active compound and inhibits the binding of [3H] vinblastine to tubulin, with an IC50 of 18-40 nM for in human tumor cell line.
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BTR-1 potently inhibits cell growth. It induces S phase arrest, affects DNA replication. Dose-dependently induces cytotoxicity in leukemic cell lines.
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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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CFI-402257 is a highly selective and oral active TTK/Mps1 inhibitor with an IC50 of 1.7 nM for TTK. CFI-402257 has potential to treat ovary cancer and TNBC.
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RIPGBM is a selective inducer of apoptosis in glioblastoma multiforme (GBM) cancer stem cells (CSCs) with an EC50 less than 500 nM.
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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. -
Riviciclib is a Potent CDKs Inhibitor
2019-06-09
Riviciclib P276-00 free base) is a potent CDK inhibitor, which inhibits CDK9-cyclinT1, CDK4-cyclin D1, and CDK1-cyclinB with IC50s of 20 nM, 63 nM, and 79 nM, respectively -
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. -
CBS9106, a Reversible Oral CRM1 Inhibitor, Causes Arrest of the Cell Cycle and Induces Apoptosis
2019-06-14
CBS9106 (SL-801) is a reversible oral CRM1 inhibitor antitumor activities. CBS9106 causes arrest of the cell cycle and induces apoptosis. -
NU6140 is a selective CDK2-cyclin A inhibitor (IC50, 0.41 μM). NU6140 also potently inhibits Aurora A and Aurora B, with IC50s of 67 and 35 nM, respectively
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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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TH34, an HDAC6/8/10 inhibitor with IC50s of 4.6 μM, 1.9 μM, and 7.7 μM respectively, shows high selectivity over HDAC1/2/3.
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Alisertib (MLN 8237) is an oral active and selective Aurora A kinase inhibitor with an IC50 of 1.2 nM. To treat hematologic malignancies and solid tumors.
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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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S55746 (BLC201) is an orally active and selective BCL-2 inhibitor, with a Ki of 1.3 nM.. S55746 (BLC201) has antitumor activity with low toxicity.
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WYC-209 is a retinoic acid receptor (RAR) agonist. WYC-209 induces apoptosis primarily via the caspase 3 pathway (IC50 = 0.19 μM for mTRCs).
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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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MBM-55 is a potent, selective Nek2 inhibitor with an IC50 of 1 nM. MBM-55 shows antitumor activities and induces cell cycle arrest and apoptosis.
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VERU-111 (ABI-231) is a potent and orally bioavailable α and β tubulin inhibitor, which displays strong antiproliferative activity.
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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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MPT0B392 Induces Apoptosis via Inhibiting Tubulin Polymerization and Inducing c-JNK Activation
2019-08-16
MPT0B392 is a novel microtubule depolymerizing agent that triggers induction of the mitotic arrest and induces JNK activation, leading to apoptosis. -
ZT-12-037-01 is a ATP-competitive and specific STK19 inhibitor and inhibits oncogenic NRAS-driven melanocyte malignant transformation.
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BJE6-106 is a selective PKCδ inhibitor with an IC50 of 0.05 μM and targets selectivity over PKCα. BJE6-106 induces caspase-dependent apoptosis.
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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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AAPK-25 is a potent and selective Aurora kinases and Polo-like Kinases (PLK) dual inhibitor, which shows anti-tumor activity.
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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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Tasisulam is an anticancer agent and induces apoptosis, which also inhibits mitotic progression and induces vascular normalization.
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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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S516 is a potent tubulin polymerization inhibitor with an IC50 of 4.29 μM and has marked antitumor activity against murine and human solid tumors.
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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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ZZW-115, a NUPR1 Inhibitor, Possesses Anticancer Activity via Inducing Necroptosis and Apoptosis
2020-08-29
ZZW-115 is a potent NUPR1 inhibitor, with a Kd of 2.1 μM. ZZW-115 induces tumor cell death by necroptosis and apoptosis. ZZW-115 exerts anticancer activity. -
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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G5-7, an orally active and allosteric JAK2 inhibitor. G5-7 induces cell cycle arrest, apoptosis and possesses antiangiogenic effect.
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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.
Products
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All
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Inhibitors & Agonists
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Isotope-Labeled Compounds
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Fluorescent Dye
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Peptides
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Recombinant Proteins
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Antibodies
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Screening Libraries
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Kits
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Inhibitory Antibodies
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Reference Standards
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GMP Small Molecules
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Enzyme
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Biochemical Assay Reagents
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Natural Products
| Cat. No. | Product Name | Information | Application | Publication |
|---|---|---|---|---|
| HY-L025 | Anti-Cancer Compound Library |
Cancer is the second leading cause of death globally and seriously threatens human health. A neoplasm and malignant tumor are other common names for cancer. Disruption of the normal regulation of cell-cycle progression and division lies at the heart of the events leading to cancer. Target therapy, which targets proteins that control how cancer cells grow, divide and spread, plays an important role in cancer treatment. Recent studies mainly focus on targeting the key proteins for cancer surviving, cancer stem cells, the tumor microenvironment, tumor immunology, etc.
MCE designs a unique collection of 11,237 anti-cancer compounds that target kinases, cell cycle key components, tumorigenesis related signaling pathways, etc. MCE Anti-cancer compound library is a useful tool for anti-cancer drug screening.
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100
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| HY-L031 | Small Molecule Immuno-Oncology Compound Library |
Immuno-Oncology is a type of immunotherapy that has the specific purpose of treating cancer. It works by stimulating our immune system to fight back. Normally, our immune system is able to destroy cancer cells in our body, however sometimes cancer cells can adapt and mutate, effectively hiding from our immune system. This is when tumors can develop and become a threat to our health. Immuno-oncology involves mobilizing lymphocytes to recognize and eliminate cancer cells using the body’s immune system. There are several immuno-oncology treatments available, including Immune cell therapy (CAR-T), monoclonal antibodies (mABs) and checkpoint inhibitors, cytokines and cancer vaccines.
MCE Small Molecule Immuno-Oncology Compound Library offers 831 bioactive tumor immunology compounds that target some important checkpoints such as PD1/PD-L1, CXCR, Sting, IDO, TLR, etc. This library is a useful tool for Immuno-oncology research.
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88
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| HY-L136 | Coagulation and Anti-coagulation Compound Library |
Coagulation, also known as clotting, is the process in which blood changes from a liquid to a solid gel to form a blood clot. Thrombin, which is accurately and evenly generated in the injured part of blood vessels, is a key effector enzyme of the blood coagulation system and participates in many important biological processes, such as platelet activation, fibrinogen conversion to fibrin network, coagulation feedback amplification, etc. At the same time, to avoid the accidental formation of thrombus in the body, there is also an anticoagulant mechanism that inhibits blood coagulation.
Normal coagulation mechanism represents a balance between the pro-coagulant pathway in the injured site and anti-coagulant pathway beyond it. The blood coagulation system may be out of balance during the perioperative period or critical illness, which may lead to thrombosis or excessive bleeding. Therefore, the physiological study of coagulation balance is an important basis for clinical diagnosis and treatment of the abnormal coagulation process.
MCE supplies a unique collection of 1,525 compounds targeting key proteins in coagulation and anti-coagulation system. MCE Coagulation and Anti-coagulation Compound Library is a useful tool for study the mechanism of coagulation and anticoagulation.
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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 3,061 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-L083 | Anti-Cancer Metabolism Compound Library |
Mutations in oncogenes and tumor suppressor genes can modify multiple signaling pathways and in turn cell metabolism, which facilitates tumorigenesis. The paramount hallmark of tumor metabolism is “aerobic glycolysis” or the Warburg effect, coined by Otto Warburg in 1926, in which cancer cells produce most of energy from glycolysis pathway regardless of whether in aerobic or anaerobic condition. Usually, cancer cells are highly glycolytic (glucose addiction) and take up more glucose than do normal cells from outside. The increased uptake of glucose is facilitated by the overexpression of several isoforms of membrane glucose transporters (GLUTs). Likewise, the metabolic pathways of glutamine, amino acid and fat metabolism are also altered. Recent trends in anti-cancer drug discovery suggests that targeting the altered metabolic pathways of cancer cells result in energy crisis inside the cancer cells and can selectively inhibit cancer cell proliferation by delaying or suppressing tumor growth.
MCE provides a unique collection of 3,806 compounds which cover various tumor metabolism-related signaling pathways. These compounds can be used for anti-cancer metabolism targets identification, validation as well anti-cancer drug discovery.
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84
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| HY-L188 | Anti-Brain Cancer Compound Library |
Although brain cancer only accounts for 2% of all tumors, it has a poor prognosis, high mortality and high recurrence rate. Brain cancer can be divided into primary brain cancer and secondary brain cancer. According to the location of the cancer, brain cancer can also be divided into: brain glioma, pituitary adenoma, schwannoma, craniopharyngioma, meningioma and so on. Glioma is the most common primary brain tumor, accounting for about 1/3 of all brain tumors. At present, brain cancer lacks precision targeted therapeutic drugs, and there is still a great clinical demand that has not been met. With the continuous development of high-throughput screening technology, it may be able to help develop effective anti-brain cancer drugs by screening compounds targeting PKC, PD-1, c-Met, PARP, etc targets.
MCE designs a unique collection of 2,134 small molecules with definite or potential anti-brain cancer activity, which is an important tool for studying the pathological mechanism of brain cancer and developing drugs for brain cancer.
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84
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| HY-L074 | Anti-Breast Cancer Compound Library |
Breast cancer is the most frequent cancer among women, impacting 2.1 million women each year, and also causes the greatest number of cancer-related deaths among women. Surgery is usually the first type of treatment for breast cancer, which is usually followed by chemotherapy or radiotherapy or, in some cases, hormone or targeted therapies, especially for metastatic breast cancer (MBC).
Breast cancer is a heterogeneous disease, which is categorized into 3 major subtypes based on the presence or absence of molecular markers for estrogen or progesterone receptors and human epidermal growth factor 2 (ERBB2; formerly HER2): hormone receptor positive/ERBB2 negative (70% of patients), ERBB2 positive (15%-20%), and triple-negative (tumors lacking all 3 standard molecular markers; 15%). Different intrinsic subtypes exhibit different tumor behavior with different prognoses, and may require specific targeted therapies to maximize treatment effectiveness. Otherwise, some signaling pathways also play important roles in the development of breast cancer, such as NF-κB Signaling Pathway, TGF-beta Signaling Pathway, PI3K/AKT/mTOR signaling pathway and Notch Signaling Pathway. These signaling pathways offer ideal targets for development of new targeted therapies for breast cancer.
MCE supplies a unique collection of 3,404 compounds with identified and potential anti-breast cancer activity. MCE Anti-Breast Cancer Compound Library is a useful tool for anti-breast cancer drugs screening.
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83
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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 4,333 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-L103 | Anti-Colorectal Cancer Compound Library |
Colorectal cancer (CRC), also known as bowel cancer, colon cancer, or rectal cancer, arises as adenocarcinoma from glandular epithelial cells of the large intestine comprised of the colon and rectum. The majority of cases of CRC are sporadic and result from risk factors, such as a sedentary lifestyle, obesity, processed diets, alcohol consumption and smoking. CRC is also a common preventable cancer.
Studies showed several cellular signaling pathways dysregulated in CRC, leading to the onset of malignant phenotypes. Therefore, it is necessary to analyze the signaling pathways involved in the occurrence and development of colorectal cancer to study the progression and drug treatment of colorectal cancer. Among them, Wnt/β-catenin, p53, TGF-β/SMAD, NF-κB, Notch, VEGF and other target genes and signaling pathways are the focus of research.
MCE offers a unique collection of 2,653 compounds with identified and potential anti-colorectal cancer activity. MCE anti-colorectal cancer compound library is a useful tool for anti-colorectal cancer drugs screening and other related research.
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83
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| HY-L135 | Cancer Stem Cells Compound Library |
With the progress of modern cancer therapy, the life of cancer patients has been extended. However, after initial treatment and recovery, the development of secondary tumors often leads to cancer recurrence. Cancer stem cells are a small number of cells that tumor growth and reproduction depend on.
Cancer stem cells have strong self-renewal ability, which is the direct cause of tumor occurrence. In addition, cancer stem cells also have the ability to differentiate into different cell types, playing a crucial role in tumor metastasis and development. Chemotherapy and radiotherapy induced DNA damage and apoptosis are common cancer treatments. However, cancer stem cells can effectively protect cancer cells from apoptosis by activating DNA repair ability. Cancer stem cells are regarded as the key "seed" of tumor occurrence, development, metastasis and recurrence. Since its first discovery in leukemia in 1994, cancer stem cells have been considered a promising therapeutic target for cancer treatment.
MCE supplies a unique collection of 3,540 compounds targeting key proteins in cancer stem cells. MCE Cancer Stem Cells Compound Library is a useful tool for cancer stem cells related research and anti-cancer drug development.
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83
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| HY-L156 | Autoimmune Disease Compound Library |
Autoimmune disease is a pathological disease characterized by inflammatory disorders targeting autoantigens. The routine treatment of autoimmune diseases suppresses general immune function to regulate uncontrolled inflammation. The current targeted immunotherapy suppresses the main pro-inflammatory signaling pathways by blocking inflammatory cytokines, cell surface molecules, and intracellular kinases. As key participants in innate immunity, macrophages and dendritic cells (DCs) are crucial for Ag presentation and pro-inflammatory cytokine production, such as TNF and IL-1 β、 IL-6, IL-23, B cell activating factor (BAFF), and the proliferation-inducing ligand (APRIL, also known as TNFSF13A).
MCE designs a unique collection of 1,040 autoimmune disease-related compounds, covering multiple targets and subtypes, such as TNF Receptor, IFNAR, JAK, Btk, TLR, IL-6, IL-17, IL-23, etc. It is a useful tool for screening autoimmune disease drugs.
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83
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| HY-L171 | Anti-Hematopathy Compound Library |
Hematopathy, also known as hematopoietic system diseases, are a class of diseases that hematopoietic system has abnormal changes. Common hematopathy include: aplastic anemia, myeloproliferative diseases, thalassemia, leukemia, lymphoma, myeloma and hemophilia, etc. In recent years, treatments for hematopathy have been developed. In particular, the treatment of malignant hematopathy developed from chemotherapy, radiotherapy, bone marrow development to immunotherapy, induced differentiation therapy, cell therapy, gene therapy and hematopoietic stem cell transplantation. Although these therapies have greatly improved the survival rate of patients, there are still problems such as low cure rate and easy recurrence in the treatment of hematopathy. Therefore, it is of great significance to actively search for new hematopathy therapeutic drugs.
MCE designs a unique collection of 4,388 anti-hematopathy small molecules, which is an effective tool for development and research of anti-hematopathy compounds.
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83
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| HY-L172 | Immunopotentiator Compound Library |
Immunity refers to the ability of the body to resist the invasion of pathogenic microorganisms and resist a variety of diseases. Immunocompromised will inevitably lead to a series of diseases. Immunopotentiator are a class of compounds that enhance immune function and induce immune response. Immunopotentiator can activate the proliferation and differentiation of one or more kinds of immune active cells in the body, promote the secretion of lymphocytes, and then enhance the immune function of the body. Immunopotentiator are mainly used in the treatment of tumors, infectious diseases and immunodeficiency diseases. In addition, immunopotentiator are often used as adjuvants in combination with vaccine antigens to enhance the immunogenicity of vaccines.
MCE designs a unique collection of 150 compounds with definite or potential Immunopotentiating effect, mainly targeting the NOD-like Receptor (NLR), Toll-like Receptor (TLR), NF-κB, etc. It is an effective tool for development and research of anti-cancer, anti-infectious diseases and anti-immunodeficiency diseases compounds.
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83
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| HY-L173 | Anti-Ovarian Cancer Compound Library |
Ovarian cancer is the most common cause of death in female genital malignancies, with the highest mortality rate in female genital malignancies. It is characterized by difficulty in detection in the early stage of the disease, high recurrence rate and poor prognosis. In fact, ovarian cancer includes many pathologic types. It is usually divided into epithelial ovarian cancer, malignant germ cell tumors and sex cord stromal tumors, of which epithelial ovarian cancer is the most dominant form. Clinical treatment of ovarian cancer prioritizes surgery combined with paclitaxel chemotherapy. However, due to the spread and drug resistance of tumor cells, the recurrence of ovarian cancer is high. In this case, combined with traditional methods, the development of new therapeutic agents can help to improve the treatment effect of ovarian cancer.
MCE designs a unique collection of 2,967 compounds with definite or potential anti-ovarian cancer activity, which mainly targeting the main targets of ovarian cancer such as PARP, ATM/ATR, VEGFR and HIF/HIF Prolyl-Hydroxylase, etc. It is an essential tool for development and research of anti-ovarian compounds.
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83
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| HY-L185 | Anti-Fibrosis Compound Library |
Fibrosis is a kind of repair response to long-term tissue damage, which is mainly manifested by excessive deposition of extracellular matrix (ECM) and scar formation. Myofibroblasts are the main generating cells of extracellular matrix, and their activation process is related to various pathological mechanisms including Oxidative stress, chronic inflammation and cytokine secretion. Fibrosis can occur in many organs, such as kidneys, liver, heart, lungs, etc. Continuous fibrosis can lead to the destruction of the normal structure of tissues and organs, and if not controlled in time, may cause organ failure or even life-threatening.
MCE contains 2,568 compounds targeting ant-fibrosis targets such as TGF-β, PI3K, Wnt, MMP, etc. These compounds have clear or potential anti-fibrosis activity and can be used for mechanism research and drug screening of fibrosis diseases.
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83
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| HY-L213 | Anti-Cancer Approved Drug Library |
The anti-cancer drug library meticulously collects all drugs approved by FDA and other major national drug regulatory authorities for cancer treatment. These drugs cover a variety of cancer types, including but not limited to lung cancer, breast cancer, colorectal cancer, leukemia, and other common cancers. The library includes a wide range of drugs, from classic chemotherapeutic agents to cutting-edge targeted therapies and immunotherapies. It contains various types of drug compounds with different mechanisms of action. There are cytotoxic drugs that directly kill cancer cells, as well as drugs that work by modulating the tumor microenvironment, inhibiting tumor angiogenesis, and activating the immune system. This diversity provides researchers with a broad range of perspectives and options for intervention strategies.
This library can be used for basic research on cancer treatment, exploring new targets and new mechanisms of drug action; Conducting drug reuse research to look for potential therapeutic effects of existing drugs on other cancer types or diseases; Or conducting research into combination drugs to optimize cancer treatment.
MCE has collected 265 small-molecule compounds with cancer indications, which are good tools for drug repurposing.
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83
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| HY-L219 | Antimicrobial Peptides Library |
Antimicrobial Peptides (AMPs), also known as antimicrobial peptides or antibiotic peptides, are a class of polypeptides encoded by specific genes in various biological cells and induced by external stimuli. They exhibit broad-spectrum bioactivity against bacteria, fungi, viruses, protozoa, and even tumor cells. AMPs serve as crucial effector molecules in the host's innate immune system.Due to their wide antimicrobial spectrum, low toxicity to normal cells of higher animals, high safety profile, low tendency to induce resistance, and additional benefits such as immune enhancement and antioxidant effects, antimicrobial peptides hold significant promise in new drug development.
MCE offers 58 types of antimicrobial peptides, which can be applied in high-throughput screening for research in anti-infection therapies, immunotherapy, anticancer drug development, and agricultural disease control.
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83
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| HY-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-16141 | Cilengitide |
Cilengitide (EMD 121974) is an integrin (integrin) inhibitor with blood-brain barrier permeability, with IC50 values against human targets as follows: 0.61 nM for αvβ3, 8.4 nM for αvβ5, 14.9 nM for α5β1, 5400 nM for αIIbβ3, 2050 nM for αvβ6, 2350 nM for αvβ8. Cilengitide inhibits the binding of integrins to vitronectin, fibronectin, fibrinogen and LAP (TGF-β), and serves as an internal standard for solid-phase integrin binding assays. Cilengitide inhibits tumor cell viability, induces apoptosis, reduces the phosphorylation levels of STAT3, AKT and mTOR, downregulates the expression of PD-L1, inhibits cell viability and angiogenesis, regulates anti-tumor immune responses and slows tumor growth. Cilengitide can be used in research related to glioblastoma, melanoma, advanced solid tumors and refractory brain tumors.
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75
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| HY-P9904 | Atezolizumab |
Colorectal Cancer
Liver Cancer
Non-Small Cell Lung Cancer
Triple-Negative Breast Cancer
Metastatic Breast Cancer
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42
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| HY-P9902 | Pembrolizumab |
Pembrolizumab (MK-3475) is a humanized IgG4 antibody inhibiting the programmed cell death 1 (PD-1) receptor, used in cancer immunotherapy.
Species: Human |
Non-Small Cell Lung Cancer
Lung Adenocarcinoma
HER-2 Positive Breast Cancer
Triple-Negative Breast Cancer
Metastatic Breast Cancer
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37
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| HY-19991 | BMS-1 |
BMS-1 is an inhibitor of the PD-1/PD-L1 protein/protein interaction (IC50 between 6 and 100 nM).
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Lung Cancer
Breast Cancer
Colorectal Cancer
Gastric Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Ovarian Cancer
Digestive System Inflammation
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34
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| HY-19745 | BMS-202 |
BMS-202 is a potent and nonpeptidic PD-1/PD-L1 complex inhibitor with an IC50 of 18 nM and a KD of 8 μM. BMS-202 binds to PD-L1 and blocks human PD-1/PD-L1 interaction. BMS-202 has antitumor activity.
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Neurological, Eye or Ear Disease
Lung Cancer
Breast Cancer
Colorectal Cancer
Gastric Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Ovarian Cancer
Digestive System Inflammation
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27
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| HY-P99144 | Anti-Mouse PD-1 Antibody (RMP1-14) |
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27
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| HY-P9903 | Nivolumab |
Nivolumab is a programmed death receptor-1 (PD-1) blocking human IgG4 antibody to treat advanced (metastatic) non-small cell lung cancer.
Species: Human |
Non-Small Cell Lung Cancer
Lung Adenocarcinoma
Triple-Negative Breast Cancer
Metastatic Breast Cancer
SARS-CoV-2 Infection
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23
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| HY-P99145 | Anti-Mouse PD-L1/B7-H1 Antibody (10F.9G2) |
Anti-Mouse PD-L1/B7-H1 Antibody (10F.9G2) is an anti-mouse PD-L1/B7-H1 IgG2b antibody inhibitor derived from host rat. Anti-Mouse PD-L1/B7-H1 Antibody (10F.9G2) blocks PD-1 signaling. Anti-Mouse PD-L1/B7-H1 Antibody (10F.9G2) can be used for the research of cancer, such as colon cancer.
Species: Mouse |
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20
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| HY-15096 | MKT-077 |
MKT-077 (FJ-776), a highly water-soluble mitochondrial dye, has significant antitumor activity. MKT-077 exhibits low cytotoxicity, and inhibits broad-spectrum human cancer cell lines (colon cancer, breast cancer, pancreatic cancer). MKT-077 inhibits the growth of tumor in nude mice enograft tumor model. Ex/Em=488/543 nm.
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18
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| HY-P9919 | Durvalumab |
Gastric Cancer
Liver Cancer
Leukemia/Lymphoma/Myeloma
Non-Small Cell Lung Cancer
Lung Adenocarcinoma
Triple-Negative Breast Cancer
Metastatic Breast Cancer
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7
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| HY-P9901 | Ipilimumab |
Ipilimumab is a fully human monoclonal antibody IgG1κ that blocks the inhibitory receptor cytotoxic T lymphocyte antigen 4 (CTLA-4) on T cells. Ipilimumab can be used in unresectable or metastatic melanoma (MM) studies.
Species: Human |
Non-Small Cell Lung Cancer
Lung Adenocarcinoma
Triple-Negative Breast Cancer
Metastatic Breast Cancer
Metastatic Melanoma
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5
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| HY-139109 | IR-783 |
IR-783 (ADS 780WS) is a heptamethine cyanine dye. IR-783 induces Mitochondrial membrane potential loss, ATP depletion, mitochondrial permeability transition pore opening, Cytochrome c release and Apoptosis in breast cancer cells. IR-783 promotes the translocation of Drp1 from the cytosol to mitochondria. IR-783 increases the expression of mitochondrial fission proteins such as MFF and Fission-1. IR-783 possesses imaging, cancer-targeting and anticancer properties. IR-783 exerts anticancer effects against breast cancer. IR-783 can be used in breast cancer-related research.
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4
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| HY-P7696 | CA125 Protein, Human (HEK293, His) |
CA125 is a giant mucin-like glycoprotein expressed by epithelial ovarian neoplasms and cells, which is an antigenic tumor marker. CA125 provides a protective, lubricating barrier against particles and infectious agents at mucosal surfaces. CA125 binds to mesothelin (MSLN) mediates heterotypic cell adhesion, contributing to the metastasis of ovarian cancer to the peritoneum by initiating cell attachment to the mesothelial epithelium. CA125 is widely used for monitoring with ovarian epithelial cancer. CA125 Protein, Human (HEK293, His) is a recombinant human cancer antigen 125 (CA125) with a His label and is expressed in HEK293 cells.
Species: Human; Source: HEK293 |
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4
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| HY-108829A | Abatacept (powder) |
Abatacept (CTLA4lg; BMS-188667) powder is a soluble fusion protein consisting of the extra-cellular domain of human CTLA4 and a fragment of the Fc portion of human IgG1 (hinge and CH2 and 3 domains). Abatacept powder is a selective T-cell co-stimulation modulator and a protein agent for the autoimmune diseases.
Species: Human |
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3
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| HY-P1876B | NLS (PKKKRKV) (hydrochloride) |
NLS (PKKKRKV) hydrochloride is the hydrochloride form of NLS (PKKKRKV) (HY-P1876). NLS (PKKKRKV) is a nuclear localization signal (NLS) derived from the simian virus 40 large tumor antigen (SV40 large T antigen), that mediates binding of the karyophilic protein to importin α. NLS (PKKKRKV) can function as a method to enhance nuclear entry in the field of gene transfer research.
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3
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| HY-P99132 | Anti-Mouse CTLA-4 Antibody (9D9) |
Anti-Mouse CTLA-4 Antibody (9D9) is an anti-mouse CTLA-4 IgG2b monoclonal antibody. Anti-Mouse CTLA-4 Antibody (9D9) can bind to CTLA-4 and block its binding to B7. Anti-Mouse CTLA-4 Antibody (9D9) enhances T cell function by increasing the ratio of CD8+ T cells to regulatory T cells (Tregs). Anti-Mouse CTLA-4 Antibody (9D9) can be used for research on cancer such as colon cancer and melanoma.
Species: Mouse |
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3
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| HY-108829 | Abatacept |
Abatacept (CTLA4lg) is a soluble fusion protein consisting of the extra-cellular domain of human CTLA4 and a fragment of the Fc portion of human IgG1 (hinge and CH2 and 3 domains). Abatacept is a selective T-cell co-stimulation modulator and a protein agent for the autoimmune diseases.
Species: Human |
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3
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| HY-P990587 | FR104 |
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2
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| HY-P99051 | Tinurilimab |
Tinurilimab (Bay 1834942) is an anti-CEACAM6 (carcinoembryonic antigen-related cell adhesion molecule 6) humanized IgG2 monoclonal antibody. CEACAM6 is an immune checkpoint regulator suppressing the activity of effector T-cells against tumors. Tinurilimab shows an increased tumor cell killing effect in the tumor-cell/T-cell co-culture system.
Species: Human |
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2
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| HY-P99123 | Anti-Mouse CD28 Antibody (37.51) |
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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-P99931 | Epcoritamab |
Epcoritamab (GEN3013) is an bispecific IgG1 antibody redirecting T-cells toward CD3×CD20+ tumor cells. Epcoritamab induces potent T-cell-mediated cytotoxicity towards B-cell NHL cell lines.
Species: Human |
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2
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| HY-N1480R | (-)-Fucose (Standard) |
(-)-Fucose (Standard) is the analytical standard of (-)-Fucose. This product is intended for research and analytical applications. (-)-Fucose is classified as a member of the hexoses, plays a role in A and B blood group antigen substructure determination, selectin-mediated leukocyte-endothelial adhesion, and host-microbe interactions. (-)-Fucose is orally active, inhibits CL11-induced inflammatory response in kidney and tumor growth.
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1
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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-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-P99420 | Acazicolcept |
Acazicolcept (ALPN-101), an Fc fusion protein, is a dual inducible T cell costimulator (ICOS)/CD28 antagonist. Acazicolcept has anti-inflammatory activities.
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1
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| HY-P99293 | Galiximab |
Galiximab (IDEC-114) is a primatized monoclonal IgG1 antibody targeting CD80. Galiximab variable regions are primatized, and the constant regions are humanized. Galiximab induces antibody-dependent cellular cytotoxicity by blocking CD80-CD28 binding. Galiximab has antitumor activity and can induce apoptosis in tumor cells. Galiximab can be used in the research of relapsed Hodgkin lymphoma and solid tumors.
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-D1244 | CO probe 1 |
CO probe 1 (probe 2) is a highly efficient fluorescent CO probe (Ex=493 nm) with an allyl ether reaction site. In the presence of PdCl₂, CO reduces Pd2+ to Pd0, triggering a Tsuji-Trost reaction that removes the allyl protecting group, releases fluorescein, and generates a significant fluorescence signal. CO probe 1 has high selectivity, rapid response (fluorescence enhancement of 150 times within 20 minutes), and low cytotoxicity, and can be used for real-time imaging of CO in living cells. CO probe 1 may be used to study pathological mechanisms involving CO signaling regulation, such as inflammation, vascular disease, or cancer.
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1
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| HY-P99302 | Lulizumab |
Lulizumab (Humanized Anti-CD28 Recombinant Antibody) is an anti-CD28 domain antibody antagonist. Lulizumab inhibits T-cell activation by selectively targeting the CD28 signal. In a sensitized non-human primate kidney transplantation model, when combined with Carfilzomib (HY-10455), Lulizumab can regulate immune cells and prolong the survival time of the graft.
Species: Human |
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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-121608 | Lumiflavin |
Lumiflavin (Lumiflavine), a riboflavine analog, causes significant inhibition of riboflavine uptake. Lumiflavin can effectively reduce the riboflavin enrichment in cancer stem-like cells (CSCs) and sensitize the effect of cisplatin Diamminedichloroplatinum (DDP) on CSCs. Lumiflavin is promising for research of ovarian cancer.
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1
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| HY-P99394 | Talquetamab |
Talquetamab (JNJ-64407564) is a humanized bispecific antibody that binds to GPRC5D (member of G protein-coupled receptor family C5 group D) and CD3 to induce T cell-mediated killing of GPRC5D-expressing MM cells through T cell recruitment and activation. Talquetamab (JNJ-64407564) has antitumor activity.
Species: Human |
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1
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| HY-P99592 | Solitomab |
Solitomab (AMG 110) is a bispecific anti-CD3 and anti-epithelial-cell-adhesion-molecule (EpCAM) antibody. Solitomab can be used for the research of primary uterine and ovarian carcinosarcoma cancer.
Species: Human |
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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). The Fc region of Mosunetuzumab incorporates a "knob-into-hole" structural modification and an N297G point mutation to achieve heterodimerization and eliminate Fc glycosylation, thereby effectively silencing antibody effector functions.
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-K6105 | Human Gastric Cancer Organoid Kit |
MCE Human Gastric Cancer Organoid Kit contains Gastric Cancer Organoid Basal Medium A, Gastric Cancer Organoid Supplement B (50×), Gastric Cancer Organoid Supplement C (250×). This product can be used to efficiently construct human gastric cancer organoid. |
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1
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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-B2099S | Buformin-d9 hydrochloride |
Buformin-d9 (hydrochloride) is the deuterium labeled Buformin. Buformin (1-Butylbiguanide), a potent AMPK activator, acts as an orally active biguanide antidiabetic agent. Buformin decreases hepatic gluconeogenesis and lowers blood glucose production in vivo. Buformin also has anti-cancer activities and is applied in cancer study (such as, cervical cancer and breast cancer, et al).
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| HY-B1589S | (±)-Carbinoxamine-d6 |
(±)-Carbinoxamine-d6 is the deuterium labeled (±)-Carbinoxamine (HY-B1589). (±)-Carbinoxamine is a blood-brain barrier-permeable histamine H1 receptor antagonist. (±)-Carbinoxamine blocks the action of histamine on H1 receptors, reducing symptoms such as sneezing, rhinitis, rhinorrhea, erythema, pruritus and urticaria. (±)-Carbinoxamine inhibits influenza virus entry into cells via endocytosis, targets the early stage of the viral life cycle, and simultaneously reduces viral replication levels in the lungs, alleviating pathological damage and inflammatory responses in lung tissues. (±)-Carbinoxamine can be used in research on allergic rhinitis, influenza, etc.
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| HY-17436S1 | Clevidipine-d7 |
Clevidipine-d7 is the deuterium labeled Clevidipine. Clevidipine is a short-acting dihydropyridine calcium channel antagonist (IC50= 7.1 nM, V(H) = -40 mV ) under development for treatment of perioperative hypertension.
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| HY-N17453 | (+)-Mornaphthoate E |
(+)-Mornaphthoate E is a growth inhibitor that suppresses cancer cell proliferation. It can be used in research on cancers such as lung cancer and breast cancer.
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| HY-N13723 | Methyl lucidenate D |
Methyl lucidenate D is a selective inhibitor of Epstein-Barr virus early antigen (EBV-EA) activation with an IC50 of 290 mol ratio/32 pmol TPA. Methyl lucidenate D exerts potential anti-tumor promoting activity by inhibiting TPA-induced EBV-EA activation and maintains major Raji cell survival (70%) at effective concentrations. Methyl lucidenate D can be used in the field of cancer chemoprevention.
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| HY-N17825 | Terrestroside A |
Terrestroside A is an anticancer agent. Terrestroside A inhibits the growth of various cancer cells in vitro. Terrestroside A can be used for the research of lung cancer, central nervous system cancer and breast cancer.
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| HY-P11624 | PP-60 |
PP-60 is an apoptosis inducer. PP-60 inhibits the proliferation of cancer cells and induces cancer cell apoptosis. PP-60 exerts anti-tumor effects in nude mouse liver tumor models. PP-60 is applicable to research related to cancers such as liver cancer, lung cancer, and prostate cancer.
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| HY-P11255 | SPDI-48-T1 |
SPDI-48-T1 is a lysine-stapled peptide. SPDI-48-T1 exhibits discernible binding affinities for MDM2 and MDMX, with Kd values of 396 nM and 456 nM, respectively. SPDI-48-T1 exhibits anticancer activity against breast cancer, colorectal cancer, non-small cell lung cancer, cervical cancer, and malignant melanoma.
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| HY-N19739 | Efrapeptin F |
Efrapeptin F is a mitochondrial complex V inhibitor and cytotoxic agent with in vivo antitumor activity. Efrapeptin F induces cell death in glucose-limiting conditions, with preferential cytotoxicity to nutrient-deprived cancer cells under hypoxic conditions. Efrapeptin F can be used for the research of pancreatic cancer, prostate cancer, breast cancer, central nervous system cancer, colon cancer, lung cancer, melanoma, ovarian cancer, kidney cancer, stomach cancer.
Source: Tolypocladium geodes |
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| HY-D3158 | LGP-CL |
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| HY-N18236 | 3β-Acetoxyl-atractylenolide I |
3β-Acetoxyl-atractylenolide I is a LSD1 inhibitor with an IC50 of 57 μM. 3β-Acetoxyl-atractylenolide I blocks tumor growth, metastasis and invasion. 3β-Acetoxyl-atractylenolide I is used in the research of various cancers including prostate cancer, breast cancer, neuroblastoma, gastric cancer, colon cancer, bladder cancer, esophageal cancer, acute myeloid leukemia and retinoblastoma.
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Breast Cancer
Prostate Cancer
Gastric Cancer
Bladder Cancer
Acute Myeloid Leukemia
Esophageal Cancer
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| HY-P11658 | Anticancer peptoid 1 |
Anticancer peptoid 1 (Peptoid 1) is a peptoid with antitumor activity. Anticancer peptoid 1 exerts cytotoxicity primarily via plasma membrane damage. Anticancer peptoid 1 exerts cytotoxicity against a broad range of cancer cell lines, including those with multidrug resistance. Anticancer peptoid 1 inhibits tumor growth in a human breast cancer xenotransplantation mouse model without noticeable acute adverse effects. Anticancer peptoid 1 can be used for the research of cancer, such as breast cancer, and prostate cancer.
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| HY-182259 | Montanastatin |
Montanastatin is an antitumor agent that can be isolated from the terrestrial actinomycete Streptomyces anulatus. Montanastatin inhibits the growth of various cancer cells. Montanastatin can be used in research related to lymphocytic leukemia, ovarian cancer, brain cancer, renal cancer, lung cancer, colon cancer and melanoma.
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| HY-17436S3 | (R)-Clevidipine-13C,d3 |
(R)-Clevidipine-13C,d3 is the deuterium and 13C labeled Clevidipine. Clevidipine is a short-acting dihydropyridine calcium channel antagonist (IC50= 7.1 nM, V(H) = -40 mV ) under development for treatment of perioperative hypertension.
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| HY-P11078 | LARLLT |
LARLLT (D4) is an EGFR-binding peptide. LARLLT has the potential for research of EGFR overexpressing cancers, such as lung, ovarian and colorectal cancer.
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| HY-158498 | FA2 glycan (G0F) |
FA2 glycan (G0F) (FA2 N-linked oligosaccharide; F(6)A2 glycan) is a core-fucosylated biantennary N-linked oligosaccharide that serves as a prostate cancer biomarker. The level of FA2 glycan (G0F) is higher in prostate cancer than in benign prostatic hyperplasia, and it is further elevated in advanced prostate cancer with a Gleason score ≥8 compared with both benign prostatic hyperplasia and low-/intermediate-risk prostate cancer. FA2 glycan (G0F) can be used in prostate cancer research.
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| HY-15947G | Ravoxertinib (GMP) |
Ravoxertinib GMP is Ravoxertinib (HY-15947) produced by using GMP guidelines. GMP small molecules works appropriately as an auxiliary reagent for cell therapy manufacture. Ravoxertinib (GDC-0994) is an orally active ERK1/2 inhibitor. Ravoxertinib inhibits the ERK1/2 MAPK signaling pathway and reduces the expression levels of c-Myc, HK2 and LDHA. Ravoxertinib decreases mammosphere formation, and exerts additive and/or superadditive cytotoxicity when combined with Ipatasertib (HY-15186) in 3D tumor sphere models. Ravoxertinib can be used in research related to various cancers including breast cancer, melanoma, head and neck cancer, non-small cell lung cancer, ovarian cancer and Merkel cell carcinoma.
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| HY-P2595 | SKF 103784 |
SKF 103784 is an vasopressin antagonist with activity against vasopressin. SKF 103784 inhibits the physiological response caused by antidiuretic and is therefore used to study biological processes related to water and salt balance. SKF 103784 can also be used to explore pathological mechanisms related to cardiovascular diseases and endocrine dysfunction.
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| HY-N21630 | Phanginin F |
Phanginin F is a cassane-type furanoditerpenoid anticancer agent. Phanginin F can be isolated from the seeds of Caesalpinia sappan Linn. Phanginin F exhibits anticancer activity against ovarian cancer, gastric cancer, and non-small cell lung cancer. Phanginin F can be used in research on ovarian cancer, gastric cancer, and non-small cell lung cancer.
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| HY-D3182 | AldRed 588-A |
AldeRed 588-A is a fluorescent labeling reagent and a substrate for aldehyde dehydrogenase (ALDH). AldeRed 588-A is metabolized by functionally active ALDH enzymes, thereby specifically labeling viable ALDHbright cell populations with red-shifted fluorescence. AldeRed 588-A supports one-step isolation and sorting of ALDH-expressing cells (including normal stem cells and cancer stem cells), and can be used in combination with green fluorophores for multicolor experimental applications. AldeRed 588-A is widely applicable to research related to various cancers such as bladder cancer, breast cancer, and head and neck cancer.
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| HY-P10522 | MBP Ac1-9 |
MBP Ac1-9 refers to a peptide fragment of myelin basic protein (MBP). MBP Ac1-9 is an immunodominant epitope in the experimental autoimmune encephalomyelitis (EAE) model, which can induce T cell immune response and lead to pathological changes similar to multiple sclerosis. MBP Ac1-9 can be used to study T cell activation and autoimmune response.
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| HY-P991235 | FS102 |
FS102 is a selective Fc fragment with antigen binding (Fcab) that targets HER2 with a KD value of 0.8 nM. FS102 induces the degradation of HER2, activates Caspase 3/7 and disrupts the integrity of the cell membrane, triggering apoptosis of tumor cells. FS102 is promising for research of cancers such as breast cancer, gastric cancer, and colorectal cancer.
Species: Human |
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| HY-B1589AS | Carbinoxamine-d6 maleate |
Carbinoxamine-d6 (maleate) is the deuterium labeled Carbinoxamine maleate salt. Carbinoxamine maleate salt is a blood-brain barrier-permeable histamine H1 receptor antagonist. Carbinoxamine maleate salt blocks the action of histamine on H1 receptors, reducing symptoms such as sneezing, rhinitis, rhinorrhea, erythema, pruritus and urticaria. Carbinoxamine maleate salt inhibits influenza virus entry into cells via endocytosis, targets the early stage of the viral life cycle, and simultaneously reduces viral replication levels in the lungs, alleviating pathological damage and inflammatory responses in lung tissues. Carbinoxamine maleate salt can be used in research on allergic rhinitis, influenza, etc.
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| HY-D3185 | AlDeSense AM |
AlDeSense AM is a cell-permeable ALDH1A1-selective fluorescent reporter. AlDeSense AM is oxidized by ALDH1A1, which eliminates photoinduced electron transfer quenching and enhances the fluorescent signal. AlDeSense AM can be used to detect cells with cancer stem cell properties, as well as to monitor the plasticity of cancer stem cells in cell culture systems and animal models. AlDeSense AM is applicable to the study of cancers associated with cancer stem cells, including chronic myeloid leukemia, melanoma, and breast cancer.
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| HY-P992321 | BAY-356 |
BAY-356, a potent TWEAK receptor agonist, is an aglycosylated anti-TWEAK receptor antibody. BAY-356 triggers TWEAKR hyperactivation, activates NFκB and STAT1 pathways, and undergoes TWEAKR-dependent internalization. BAY-356 can be used for the research of colorectal cancer, bladder cancer, non-small cell lung cancer and pancreatic cancer[1][2].
Species: Human |
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| HY-13673S1 | Goserelin-d7 |
Goserelin-d7 (ICI 118630-d7) is deuterium labeled Goserelin. Goserelin (ICI 118630), a decapeptide analogue of gonadotropin-releasing hormone (GnRH/LHRH), functions as a GnRH agonist. Goserelin can be used for the research of breast cancer, epithelial ovarian cancer and prostate cancer.
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| HY-P4144 | Onvitrelin ucalontide |
Onvitrelin ucalontide (Phor18-LHRH (338613); EP-100) is a luteinizing hormone-releasing hormone (LHRH) receptor ligand. Onvitrelin ucalontide binds to functional LHRH receptors on cancer cells and mediates targeted cytotoxicity. Onvitrelin ucalontide reduces tumor volume, weight and the number of viable tumor cells in xenograft models. Onvitrelin ucalontide can be used for the research of breast cancer, ovarian cancer and prostate cancer.
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| HY-P991980 | H2Mab-139 |
H2Mab-139 (H2Mab-141;H2Mab-19) is an anti-HER2 monoclonal antibody. H2Mab-139 specifically binds to HER2 on various cancer cells. H2Mab-139 can detect HER2 overexpression in colorectal cancer via flow cytometry and immunohistochemical analysis. H2Mab-139 exhibits anti-tumor activity in mouse oral cancer and breast cancer xenografts. H2Mab-139 is applicable to research related to multiple cancers including colon cancer, oral cancer, and breast cancer.
Species: Human |
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| HY-P1828 | EGFRvIII peptide (PEPvIII) |
EGFRvIII peptide (PEPvIII) is a tumor-specific mutation that is widely expressed in glioblastoma multiforme (GBM) and other neoplasms and its expression enhances tumorigenicity. EGFRvIII peptide represents a truly tumor-specific target for antitumor immunotherapy.
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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-W714047 | Valerianol |
Valerianol is a sesquiterpene alcohol with anticancer, antibacterial, and antiviral activities. Valerianol selectively inhibits TPA (HY-18739)-induced Epstein-Barr virus early antigen (EBV-EA) activation (IC50=300 μM). Valerianol inhibits tumor promoter-mediated EBV-EA activation and also inhibits pathogenic bacteria such as Staphylococcus aureus.
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| HY-N19127 | Aspergillusidone E |
Aspergillusidone E is an aromatase inhibitor with an aromatase IC50 of 1.0 μM. Aspergillusidone E exhibits cytotoxicity against cancer cells. Aspergillusidone E can be used in research related to various cancers such as breast cancer and liver cancer.
Source: Aspergillus unguis |
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| HY-P10789 | P160 peptide |
The P160 peptide is a breast cancer-targeting peptide that binds to the keratin 1 (KRT1) receptor on breast cancer cells, with a Kd of approximately 1.1 μM, demonstrating significant potential for targeted drug delivery to breast cancer cells. The P160 peptide enhances the cellular uptake and anticancer activity of the pro-apoptotic antimicrobial peptide MccJ25 (microcin J25). The P160 peptide can be used in cancer research.
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| HY-P1700 | BCMA72-80 |
BCMA72-80 is a HLA-A2-specific B-cell maturation antigen (BCMA) peptide, with great affinity to HLA-A2, used in the research of multiple myeloma or other B-cell maturation antigen expressing tumors.
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| HY-D3196 | AG2 |
AG2 is a glucose uptake tracer and two-photon fluorescent probe. AG2 is taken up by cells via glucose-specific transport systems, rather than passive diffusion; it preferentially accumulates in cancer cells and colon cancer tissues compared with normal cells and tissues; it mainly localizes to mitochondria, with a small amount also distributed in the cytoplasm and cell membrane. AG2 can be used for colon cancer research.
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| HY-W742805 | Sulindac Sulfone-d6 |
Sulindac Sulfone-d6 is the deuterium labeled Sulindac sulfone (HY-B1787). Sulindac sulfone is an mTORC1 pathway inhibitor and a metabolite of Sulindac. Sulindac sulfone inhibits colon cancer cell growth and induces cell cycle arrest. Sulindac sulfone is used in cancer research.
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| HY-N21702 | Hypelodin A |
Hypelodin A is a Hypelodin. Hypelodin A can be isolated from H. beanii. Hypelodin A can be used in research on colorectal cancer, breast cancer, and liver cancer.
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| HY-P991378 | MORAb-066 |
MORAb-066 is a human monoclonal antibody (mAb) targeting CD142/F3/TF. MORAb-066 can be used in Breast cancer, Colorectal cancer, Non-small cell lung cancer and Pancreatic cancer research.
Species: Human |
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| HY-100187S | (Rac)-[6]-Gingerol-13C,d3 |
(Rac)-[6]-Gingerol-13C,d3 ((±)-[6]-Gingerol-13C,d3) is the deuterium and 13C-labeled (Rac)-[6]-Gingerol (HY-100187). (Rac)-[6]-Gingerol is a natural product. (Rac)-[6]-Gingerol can be isolated from rhizomes of Z. officinale. (Rac)-[6]-Gingerol shows moderate anticancer activity against lung cancer, ovarian cancer, melanoma, and colon cancer.
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| HY-P5292 | HYNIC-iPSMA |
HYNIC-iPSMA is a PSMA-targeted ligand for tumor molecular imaging, with a Ki value of 3.11 nM. HYNIC-iPSMA consists of two components: HYNIC (6-hydrazinonicotinamide) and iPSMA (Inhibitor of Prostate-Specific Membrane Antigen). HYNIC acts as a chelating moiety to link radionuclides to the targeting molecule; iPSMA is a specific inhibitor that targets Prostate-Specific Membrane Antigen (PSMA). 68Ga-labeled iPSMA is used for prostate cancer detection via PET imaging, while the further developed 99mTc-EDDA/HYNIC-iPSMA TFA exhibits excellent specificity and sensitivity. HYNIC-iPSMA can be used for the synthesis and research of radionuclide-conjugated drugs (RDC).
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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-P11598 | PSMA-N5 |
PSMA-N5 (Compound 15) is a PSMA ligand with a Ki value of 0.71 nM. PSMA-N5 acts as a PET radiotracer for prostate cancer imaging. PSMA-N5 is applicable to the research of prostate cancer and other related cancers.
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| HY-N17638 | 7-Oxomogroside V |
7-Oxomogroside V is a cucurbitane-type glycoside isolated from the fruits of Siraitia grosvenorii. 7-Oxomogroside V inhibits the activation of Epstein-Barr virus early antigen (EBV-EA) induced by TPA (HY-18739). 7-Oxomogroside V also exerts weak inhibitory effects on the activation of the nitric oxide donor NOR 1. 7-Oxomogroside V is applicable to tumor-related research.
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| HY-16562AS | Irinotecan-d5 hydrochloride |
Irinotecan-d5 hydrochloride is deuterated labeled Irinotecan hydrochloride (HY-16562A). Irinotecan hydrochloride ((+)-Irinotecan hydrochloride) is a topoisomerase I inhibitor mainly used to treat colon cancer and rectal cancer.
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| HY-N18186 | Neojiangyouaconitine |
Neojiangyouaconitine is a diterpenoid alkaloid cytotoxin isolated from Aconitum soongaricum var. pubescens. Neojiangyouaconitine exhibits cytotoxic activity against human breast cancer, prostate cancer and lung cancer cells, with weak inhibitory effect on HeLa cells. Neojiangyouaconitine has the ability to kill specific tumor cell lines and can be applied to the research on the mechanisms of related cancers such as breast cancer, prostate cancer and lung cancer.
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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-P991417 | LYN00101 |
LYN00101 is a human monoclonal antibody (mAb) targeting VEGFA. LYN00101 can be used in Cervical cancer, Colorectal cancer, Gastric cancer and Ovarian cancer research.
Species: Human |
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| HY-E70188 | N-Acetylgalactosamine-6-Sulfatase |
N-Acetylgalactosamine-6-Sulfatase (GALNS) is a potential general biomarker for multiple malignancies (such as lung cancer, breast cancer, head and neck cancer, etc.). N-Acetylgalactosamine-6-Sulfatase deficiency causes mucopolysaccharidosis type IVA (MPS IVA), also known as Morquio A syndrome. N-Acetylgalactosamine-6-Sulfatase can be used in MPS IVA as well as cancer research.
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| HY-P991654 | SAR228810 |
SAR228810 is a humanized IgG4 monoclonal antibody inhibitor targeting amyloid β (Aβ) with a KD? of ?0.43 ?nM for protofibrillar Aβ over monomeric Aβ. SAR228810 significantly inhibits the brain amyloid plaque formation and oligomer-induced synaptic dysfunction and neurite loss. SAR228810 has significant protection against Aβ-mediated neuritotoxicity. MINT1526A can be used for Alzheimer’s disease imaging and immunotherapy research.
Species: Human |
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| HY-N19463 | Dicatenarin |
Dicatenarin is a caspase‑3 activator with growth‑inhibitory activity against human cancer cells. Dicatenarin increases caspase‑3 activity, induces intracellular ROS generation, and activates the mitochondrial‑mediated apoptotic pathway. Dicatenarin exerts growth‑inhibitory effects against a panel of human cancer cell lines. Dicatenarin can be used in research on pancreatic cancer, lung cancer, colon cancer, breast cancer, prostate cancer, and ovarian cancer.
Source: Penicillium pinophilum |
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| HY-169232 | PCC16 chloride |
PCC16 chloride is a dual PROTAC degrader targeting DHHC3 and PD-L1, with a DC50 of 0.103 μM for PD-L1 degradation. PCC16 chloride induces DHHC3 degradation via the ubiquitin-proteasome pathway by recruiting the CRBN E3 ubiquitin ligase (E3 ubiquitin ligase). By targeting DHHC3-which is essential for PD-L1 palmitoylation and membrane stability-PCC16 chloride reduces PD-L1 levels, decreases PD-L1 membrane retention time, and impairs its immunosuppressive function. PCC16 chloride enhances anti-tumor immunity by disrupting PD-L1-mediated immunosuppression. PCC16 chloride can be used in the research of immune checkpoint blockade-resistant cancers.
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| HY-N1420AS2 | Rhamnose-13C-2 monohydrate |
Rhamnose-13C-2 (monohydrate) is the 13C labeled Rhamnose monohydrate. Rhamnose monohydrate (L-Rhamnose monohydrate) is a monosaccharide found in plants and bacteria. Rhamnose monohydrate-conjugated immunogens is used in immunotherapies. Rhamnose monohydrate
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| HY-P991332 | JAB-BX102 |
JAB-BX102 is a human monoclonal antibody (mAb) targeting NT5E/CD73. JAB-BX102 can be used in the study of cancers such as breast cancer, pancreatic cancer, and prostate cancer.
Species: Human |
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| HY-W248121 | Pyrromethene 567 |
Pyrromethene 567 is a commercially available BODIPY dye with a photodynamic cytotoxicity IC50 of 6.8 ± 1.8 μM.Pyrromethene 567 shows cytoplasmic localization and limited cellular uptake in cancer cells.Pyrromethene 567 can be used for the research of lung cancer.
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| HY-13673S | Goserelin-d10 |
Goserelin-d10 (ICI 118630-d10) is deuterium labeled Goserelin. Goserelin (ICI 118630), a decapeptide analogue of gonadotropin-releasing hormone (GnRH/LHRH), functions as a GnRH agonist. Goserelin can be used for the research of breast cancer, epithelial ovarian cancer and prostate cancer.
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| HY-N0475R | Triptophenolide (Standard) |
Triptophenolide (Standard) (Hypolide) is the analytical standard of Triptophenolide (HY-N0475). This product is intended for research and analytical applications. Triptophenolide is a colorless crystal isolated from the ethyl acetate extract of Tripterygium wilfordii. Triptophenolide is an orally active pan‑antagonist of the androgen receptor (AR) with an IC50 of 467 nM against human wild‑type AR. Triptophenolide reduces AR expression, inhibits AR nuclear translocation, downregulates prostate‑specific antigen mRNA levels, and suppresses the growth of AR‑positive prostate cancer cells. Triptophenolide shows anti-tumor effects against breast cancer by inhibiting cell proliferation and migration, inducing G1-phase arrest and apoptosis, repressing xenograft tumor growth. Triptophenolide inhibits pyroptosis, alleviates tissue inflammation, and ameliorates synovial injury. Triptophenolide can be used for the study of prostate cancer, rheumatoid arthritis and breast cancer.
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| HY-N12978 | Benzyl β-gentiobioside |
Benzyl β-gentiobioside is a phenyl alcohol glycoside found in peach kernels (Prunus persica seeds). Benzyl β-gentiobioside has anti-tumor promoting activity by inhibiting TPA (12-O-tetradecanoylphorbol 13-acetate, a tumor promoter)-induced Epstein-Barr virus early antigen (EBV-EA) activation.
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| HY-152003S | Ganglioside GM2-d3 ammonium |
Ganglioside GM2-d3 (ammonium) is the deuterium labeled Ganglioside GM2 (HY-148385). Ganglioside GM2 is a human tumor antigen predominantly found in human tumor cells and fetal brain tissue. As a sialylated glycosphingolipid, Ganglioside GM2 is involved in processes such as cell signaling, adhesion, and motility. Ganglioside GM2 abnormal expression and accumulation are associated with tumors and neurodegenerative disorders. Ganglioside GM2 promotes tumor cell migration and invasion by directly binding to the integrin β1 receptor, activating the FAK/Src/Erk-MAPK signaling pathway, and inducing actin cytoskeleton remodeling.
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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-108692S | Enterolactone-d6 |
Enterolactone-d6 is the deuterium labeled Enterolactone. Enterolactone is a bioactive phenolic metabolite known as a mammalian lignan derived from dietary lignans. Enterolactone has estrogenic properties and anti-breast cancer activity. Enterolactone is a radiosensitizer for human breast cancer cell lines through impaired DNA repair and increased apoptosis.
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| HY-W1123936B | DBCO-PEG1000-FA |
DBCO-PEG1000-FA (DBCO-PEG1000-Folate) is a multifunctional bioconjugation reagent, which is a copolymer of DBCO and Folic acid (FA) (HY-16637) and can target folate receptors (FR). Folate receptors are highly overexpressed on the surface of many cancer cells (such as lung cancer, nasopharyngeal cancer, ovarian cancer, etc.), but exhibit extremely low expression levels in normal tissues. DBCO-PEG-FA can be used for click chemistry conjugation via its DBCO terminal, and thus applies to various bioconjugation and drug delivery applications.
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| HY-W777317 | Elacridar-d4(Major) |
Elacridar-d4(Major) is the deuterium labeled Elacridar (HY-50879). Elacridar is an orally active P-glycoprotein (Pgp) and breast cancer resistance protein (BCRP) inhibitor. Elacridar can be used to examine the influence of efflux transporters on agent distribution to brain and the research of cancer.
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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-N1420AS | Rhamnose-13C monohydrate |
Rhamnose-13C (monohydrate) is the 13C labeled Rhamnose monohydrate. Rhamnose monohydrate (L-Rhamnose monohydrate) is a monosaccharide found in plants and bacteria. Rhamnose monohydrate-conjugated immunogens is used in immunotherapies. Rhamnose monohydrate c
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| HY-P992107 | Dulpatatug |
Dulpatatug is a monoclonal antibody targeting ERBB2, which can be used for research on gastric cancer, breast cancer and non-small cell lung cancer.
Species: Human |
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| HY-148775 | PLGA-PEG-MAL (60kDA-3.4kDA, LA:GA ratio 75:25) |
PLGA-PEG-MAL (60kDa-3.4kDa, LA:GA ratio 75:25) is a biodegradable amphipathic polymeric nanocarrier of poly (lactic-co-glycolic acid)-block-poly (ethylene glycol) (PLGA-PEG-Mal) that allows covalent modification of functional molecules. PLGA-PEG-MAL (60kDa-3.4kDa, LA:GA ratio 75:25) modified with Angiopep-2 can cross the blood-brain barrier and exhibits targeting selectivity for glioblastoma cells. PLGA-PEG-MAL (60kDa-3.4kDa, LA:GA ratio 75:25) can capture tumor-derived protein antigens, and exerts immunomodulatory effects when conjugated with anti-OX40 antibody; when used in combination with A2-CL/Dbait nanoparticles and radiotherapy, it prolongs survival time and reduces tumor volume in glioblastoma mouse models. PLGA-PEG-MAL (60kDa-3.4kDa, LA:GA ratio 75:25) can be used for studies related to bacterial wound infections and glioblastoma.
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| HY-13673S2 | Goserelin-d7 TFA |
Goserelin-d7 (TFA) is deuterium labeled Goserelin. Goserelin (ICI 118630), a decapeptide analogue of gonadotropin-releasing hormone (GnRH/LHRH), functions as a GnRH agonist. Goserelin can be used for the research of breast cancer, epithelial ovarian cancer and prostate cancer.
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| HY-116038 | Kulinone |
Kulinone is a triterpenoid anticancer agent. Kulinone induces cytotoxic effects in lung cancer and gastric cancer cells. Kulinone is isolated from the bark of Melia azedarach. Kulinone is applicable to research related to lung cancer and gastric cancer.
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| HY-P11078A | LARLLT TFA |
LARLLT TFA is an EGFR-binding peptide. LARLLT has the potential for research of EGFR overexpressing cancers, such as lung, ovarian and colorectal cancer.
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| HY-P99551 | Tosatoxumab |
Tosatoxumab (AR-301; KBSA301) is a human immunoglobulin G1 monoclonal antibody that specifically neutralizes alpha-toxin (alpha-hemolysin; Hla) of S. aureus. Tosatoxumab binds to an N-terminal epitope of alpha-toxin, thereby preventing functional toxin pore oligomerisation. Tosatoxumab has the potential for passive immunotherapy in the S. aureus pneumonia as an adjunctive therapy to standard antibiotic agent. Recommend Isotope Control: Human IgG1 lambda1, Isotype Control (HY-P99992).
Species: Human |
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| HY-P991176 | RG-6333 |
RG-6333 is a bispecific agonist targeting CD19 and CD28. RG-6333 specifically recognizes and binds to the CD19 antigen on the surface of B-cell malignancies to locate tumor cells. RG-6333 activates T cells by binding to CD28, overcoming activation barriers to enhance anti-tumor immunity. RG-6333 can be used in the study of relapsed/refractory non-Hodgkin's lymphoma. The recommended isotype control is human IgG1 kappa, isotype control (HY-P99001).
Species: Human |
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| HY-145622 | Mecbotamab vedotin |
Mecbotamab vedotin (BA3011) is a pH dependent antibody drug conjugate (ADC) targeting AXL. Mecbotamab vedotin can significantly inhibit AXL in DU145 cells and LCLC-103H cells and kills cells. Mecbotamab vedotin can be used for research on cancer such as lung cancer, pancreatic cancer and prostate cancer. The antibody component is Mecbotamab (HY-P9988), and the ADC toxin molecule is Monomethyl auristatin E (MMAE) (HY-15162).
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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-W001603 | Ethyl diethoxyacetate |
Ethyl diethoxyacetate is a reagent used in organic synthesis. Ethyl diethoxyacetate has moderate antiproliferative effects on cervical cancer and liver cancer.
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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-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-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-P99254 | Racotumomab |
Racotumomab (Anti-Human NGcGM3 Recombinant Antibody) is an anti-idiotype monoclonal antibody (MAb). Racotumomab reacts to Neu-glycolyl (NeuGc)-containing gangliosides, sulfatides, and other antigens expressed in tumors. Racotumomab is an active anticancer agent for lung cancer.
Species: Human |
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| HY-P991214 | Tucotuzumab celmoleukin |
Tucotuzumab celmoleukin (EMD 273066) is an immunocytokine. Tucotuzumab celmoleukin consists of the following components: an IgG1 monoclonal antibody targeting human EpCAM antigen, and two molecules of IL2. Tucotuzumab celmoleukin binds to EpCAM. Tucotuzumab celmoleukin exerts anti-tumor effects on colon adenocarcinoma in synergy with radiofrequency ablation. Tucotuzumab celmoleukin can be used in research related to colon adenocarcinoma and colon cancer.
Species: Human |
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| HY-P1828A | EGFRvIII peptide (PEPvIII) TFA |
EGFRvIII peptide (PEPvIII) TFA is a tumor-specific mutation that is widely expressed in glioblastoma multiforme (GBM) and other neoplasms and its expression enhances tumorigenicity. EGFRvIII peptide TFA represents a truly tumor-specific target for antitumor immunotherapy.
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| HY-P990901 | Aplitabart |
Aplitabart (IGM-8444) is a pentameric IgM death receptor 5 (DR5) agonist antibody with a KD of 85 nM and an apparent affinity of 11 pM. Aplitabart induces DR5 multimerization, thereby triggering cancer cell apoptosis via the extrinsic apoptotic pathway apoptosis. Aplitabart is applicable to cancer-related research such as colorectal cancer and gastric cancer.
Species: Human |
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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-W115609 | N-Phenylbenzamide |
N-Phenylbenzamide (N-Benzoylaniline) is a compound skeleton. N-Phenylbenzamide can be used for the researches of cancer and infection, such as enterovirus and cervical cancer.
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| HY-P991198 | M6903 |
M6903 is a humanized monoclonal IgG2 antibody targeting T cell immunoglobulin and mucin domain-3 (TIM-3) (KD for human TIM-3 is 2.3 nM). M6903 binds to TIM-3, blocking the binding of TIM-3 to phosphatidylserine (PtdSer), carcinoembryonic antigen cell adhesion-related molecule 1 (CEACAM1), and galectin 9 (Gal-9), thus relieving TIM-3-mediated T cell inhibition and exerting the activities of activating antigen-specific T cells and enhancing anti-tumor immunity. M6903 is promising for research of cancers.
Species: Human |
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| HY-P991723 | Varsetatug |
Varsetatug (CX-2051 antibody) is a humanized IgG1κ monoclonal antibody inhibitor targeting EpCAM/TROP1/CD326. Varsetatug serves as the antibody component of the ADC compound CX-2051. It can be used in research on cancers including breast cancer, prostate cancer and ovarian cancer.
Species: Human |
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| HY-P5292A | HYNIC-iPSMA TFA |
HYNIC-iPSMA TFA is a PSMA-targeted ligand for tumor molecular imaging, with a Ki value of 3.11 nM. HYNIC-iPSMA TFA consists of two components: HYNIC (6-hydrazinonicotinamide) and iPSMA (Inhibitor of Prostate-Specific Membrane Antigen). HYNIC serves as a chelating moiety to link radionuclides to the targeting molecule; iPSMA is a specific inhibitor that targets Prostate-Specific Membrane Antigen (PSMA). 68Ga-labeled iPSMA is used for prostate cancer detection via PET imaging, while the further developed 99mTc-EDDA/HYNIC-iPSMA TFA exhibits excellent specificity and sensitivity. HYNIC-iPSMA TFA can be used for the synthesis and research of radionuclide-conjugated drugs (RDC).
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| HY-P991271 | NN-8828 |
NN-8828 (NNC-114-0005; NN9828; NNC01140006) is a human IgG1 monoclonal antibody inhibitor targeting IL-21 that binds and neutralizes soluble IL-21 with a Kd of 0.19 pM. NN-8828 restores the balance between effector T cells and regulatory T cells, inhibits pathological antibody production, and alleviates IL-21-mediated inflammatory responses without inducing antibody-dependent cellular cytotoxicity. NN-8828 exhibits favorable biosafety. NN-8828 can be used in research related to rheumatoid arthritis, type 1 diabetes, and systemic lupus erythematosus.
Species: Human |
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| HY-P991490 | ISB2001 |
ISB2001 is a trispecific antibody targeting CD38, CD3 and BCMA. ISB2001 effectively counteracts tumor immune escape mechanisms caused by antigen downregulation, antigen loss, soluble factor competition and other factors. ISB2001 is applicable to relevant research on multiple myeloma and relapsed/refractory multiple myeloma.
Species: Human |
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| HY-P5290 | HYNIC-PSMA |
HYNIC-PSMA is a ligand for molecular imaging of tumors. Hynic-psma consists of two components: HYNIC (6-hydrazinonicotinamide) and PSMA (Prostate-Specific Membrane Antigen). HYNIC is a compound used to attach radioactive isotopes to targeted molecules, such as 188Re-HYNIC-PSMA. PSMA is a membrane antigen that is specifically expressed on the surface of prostate cancer cells. HYNIC-PSMA can be used in prostate cancer research. HYNIC-PSMA can be used for the synthesis/research of Radionuclide-Drug Conjugates (RDCs).
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| HY-N10534 | Lewis X trisaccharide |
Lewis X trisaccharide (Lewis X, Lex) is a potent TH2 regulator, antagonizes LPS-induced IL-12 immune expression. Lewis X trisaccharide is a human histo-blood group antigen, plays an key role in cell-cell adhesion, and servers as a tumor marker. Lewis X trisaccharide is highly expressed in the outer membrane of the parasite, can be used for the immunology research of schistosomiasis.
Source: human |
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| HY-N7691 | 3,29-O-Dibenzoyloxykarounidiol |
3,29-O-Dibenzoyloxykarounidiol (Karounidiol dibenzoate) is a multiflorane-type triterpene benzoate that inhibits Phorbol 12-myristate 13-acetate (TPA) (HY-18739)-induced Epstein-Barr virus early antigen activation and exhibits tumor-promotion inhibitory activity. 3,29-O-Dibenzoyloxykarounidiol is used in cancer-related research.
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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-114491 | Rineterkib |
Rineterkib (compound B) is an orally available ERK1 and ERK2 inhibitor in the treatment of a proliferative disease characterized by activating mutations in the MAPK pathway. The activity is particularly related to the treatment of KRAS-mutant NSCLC, BRAF-mutant NSCLC, KRAS-mutant pancreatic cancer, KRAS-mutant colorectal cancer (CRC) and KRAS-mutant ovarian cancer. Rineterkib hydrochloride can also inhibit RAF.
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| HY-P99328 | Tucotuzumab |
Tucotuzumab (Anti-EPCAM Recombinant Antibody) is an antigen-specific IgG1 monoclonal antibody that targets human epithelial cell adhesion molecule (EpCAM). Tucotuzumab links two IL-2 molecules and is an immunosuppressant and anti-tumor active molecule.
Species: Human |
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| HY-N0475 | Triptophenolide |
Triptophenolide (Hypolide) is a colorless crystal isolated from the ethyl acetate extract of Tripterygium wilfordii. Triptophenolide is an orally active pan‑antagonist of the androgen receptor (AR) with an IC50 of 467 nM against human wild‑type AR. Triptophenolide reduces AR expression, inhibits AR nuclear translocation, downregulates prostate‑specific antigen mRNA levels, and suppresses the growth of AR‑positive prostate cancer cells. Triptophenolide shows anti-tumor effects against breast cancer by inhibiting cell proliferation and migration, inducing G1-phase arrest and apoptosis, repressing xenograft tumor growth. Triptophenolide inhibits pyroptosis, alleviates tissue inflammation, and ameliorates synovial injury. Triptophenolide can be used for the study of prostate cancer, rheumatoid arthritis and breast cancer.
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| HY-P99166 | Vudalimab |
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| HY-P990042 | Gotistobart |
Gotistobart (ONC-392; BNT 316) is a humanized anti-CTLA-4 antibody with selective regulatory T cell depletion activity in the tumor microenvironment. Gotistobart can be used for the research of cancer, such as non-small cell lung cancer.
Species: Human |
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| HY-P990690 | Volrustomig |
Volrustomig (MEDI-5752) is a human IgG1 κ monoclonal antibody targeting CTLA4/PD1. The isotype control for Volrustomig is Human IgG1 kappa, Isotype Control (HY-P99001). Volrustomig anchors to the surface of T cells by binding PD-1, induces PD-1 internalization and degradation, and preferentially inhibits CTLA-4 on activated PD-1+ T cells. Volrustomig binds to tumor-infiltrating lymphocytes and a subset of PD-1+ B cells, enhances T cell function and IFNγ secretion. Volrustomig reduces the activation of non-tumor-infiltrating lymphocytes and exhibits manageable toxicity. Volrustomig can be used in research on various cancers, such as non-small cell lung cancer, gastric cancer, hepatobiliary cancer, and cervical cancer.
Species: Human |
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| HY-P2506A | Gp100 (25-33), mouse TFA |
Gp100 (25-33), mouse TFA sequence is found in residues 25 to 33 of the mouse self/tumor antigen glycoprotein (mgp100). Mgp100 is an enzyme involved in pigment synthesis, and the epitope fragment is expressed in both normal melanocytes and melanoma cells.
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| HY-W020952 | Palladium(Ⅱ) acetylacetonate |
Palladium(II) acetylacetonate is a metal-organic complex. Palladium(II) acetylacetonate upregulates the expression of GRP78, ATF-4, XBP-1, CHOP, and phosphorylated c-Jun. Palladium(II) acetylacetonate induces Apoptosis. Palladium(II) acetylacetonate has anticancer effects against non-small cell lung cancer, gastric cancer, leukemia, and cervical cancer.
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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-78216 | 2-Thiooxamic acid ethyl ester |
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| HY-122822 | GSK699 |
GSK699 is a KAT2A/B/PCAF/GCN5 PROTAC degrader. GSK699 induces proteasome-dependent degradation of KAT2A, KAT2B, PCAF and GCN5, regulates the histone acetyltransferase activity of the SAGA complex, and reduces the level of histone H3K9ac. GSK699 inhibits the growth of neuroblastoma, acute myeloid leukemia and small cell lung cancer cells. GSK699 reduces the production of inflammatory cytokines and chemokines, and impairs LPS-stimulated immune cell responses. GSK699 is applicable to research related to acute myeloid leukemia, small cell lung cancer, neuroblastoma and inflammatory diseases.
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| HY-P2506 | Gp100 (25-33), mouse |
Gp100 (25-33), mouse sequence is found in residues 25 to 33 of the mouse self/tumor antigen glycoprotein (mgp100). Mgp100 is an enzyme involved in pigment synthesis, and the epitope fragment is expressed in both normal melanocytes and melanoma cells.
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| HY-P990789 | Anti-Mouse CTLA-4 Antibody (9H10) |
Anti-Mouse CTLA-4 Antibody (9H10) is a kind of syrian hamster IgG antibody inhibitor, targeting to CTLA-4. Anti-Mouse CTLA-4 Antibody (9H10) binds mouse CTLA-4 and blocks the interaction between CTLA-4 and its ligand. Anti-Mouse CTLA-4 Antibody (9H10) shows potent anti-tumor effect in various tumor models, such as breast and colon cancer.
Species: Mouse |
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| HY-P99961 | Tifcemalimab |
Tifcemalimab (JS004; Icatolimab) is a humanized IgG4 monoclonal antibody against BTLA (B and T lymphocyte attenuator). By binding to BTLA, tifcemalimab blocks the interaction of HVEM-BTLA, thereby inhibiting the BTLA-mediated inhibitory signaling pathway. Tifcemalimab can be used in research related to squamous cell non-small cell lung cancer.
Species: Human |
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| HY-P990865 | Anti-CD28 Antibody (9.3) |
Anti-CD28 Antibody (9.3) is an anti-human CD28 IgG2a monoclonal antibody. Anti-CD28 Antibody (9.3) can activate T cells. Anti-CD28 Antibody (9.3) can be used for research on immunology. The recommend isotype control of Anti-CD28 Antibody (9.3): Mouse IgG2a kappa, Isotype Control (HY-P99978).
Species: Human |
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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-33287 | 2-Bromothiazole-5-carboxylic acid |
2-Bromothiazole-5-carboxylic acid is a starting compound in the synthesis of active compounds. 2-Bromothiazole-5-carboxylic acid can be used in the synthesis of NAMPT/HDAC inhibitors. 2-Bromothiazole-5-carboxylic acid can be used in the research of colon cancer, lung cancer, and liver cancer.
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| HY-P10493 | NY-ESO-1 (157-165) peptide |
NY-ESO-1 (157-165) peptide is a peptide fragment from NY-ESO-1 protein. NY-ESO-1 (157-165) peptide can activate the immune system, especially for HLA-A2 positive individuals, it can be recognized by CD8+ T cells, thus triggering an immune response. NY-ESO-1 (157-165) peptide is expressed in a variety of tumors and can be used as a target for tumor immunotherapy.
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| HY-20167A | H-Glu(OtBu)-OtBu hydrochloride |
H-Glu(OtBu)-OtBu hydrochloride is a key intermediate that can be used to synthesize prostate-specific membrane antigen (PSMA) targeting probes. H-Glu(OtBu)-OtBu hydrochloride can reduce nonspecific background binding through negatively charged linkers, improve tumor/background contrast, and can be used in prostate cancer PET/SPECT imaging studies.
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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-N1480 | (-)-Fucose |
(-)-Fucose is classified as a member of the hexoses, plays a role in A and B blood group antigen substructure determination, selectin-mediated leukocyte-endothelial adhesion, and host-microbe interactions. (-)-Fucose is orally active, inhibits CL11-induced inflammatory response in kidney and tumor growth.
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| HY-156002 | LUNA18 |
LUNA18 is an orally-available cyclic peptide KRAS and ERK inhibitor. LUNA18 phosphorylates ERK and AKT and decreases cell proliferation in RAS-mutated cancer cells. LUNA18 exhibits RAS signal inhibition and potent anti-cancer activities through inhibiting interaction between RAS and guanine nucleotide exchange factors (GEFs) in a mouse xenograft model. LUNA18 shows significant cellular efficacy against cell lines with KRAS genetic alterations, such as colon cancer, stomach cancer, non-small cell lung cancer and pancreaticcancer.
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| HY-P9986 | Tiragolumab |
Tiragolumab is an immune checkpoint inhibitor binding to the T-cell immunoglobulin and ITIM domain (TIGIT). Tiragolumab in combination with Atezolizumab (HY-P9904) and Bevacizumab (HY-P9906) has benefit in unresectable hepatocellular carcinoma. Tiragolumab can be used to study non-small cell lung cancer (NSCLC) and melanoma.
Species: Human |
Respiratory Disease
Non-Small Cell Lung Cancer
Triple-Negative Breast Cancer
Metastatic Breast Cancer
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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-P991028 | Surovatamig |
Surovatamig (AZD0486; TNB-486) is a fully human anti-CD19/CD3 IgG4 bispecific antibody. Surovatamig triggers T cell activation, releases cytotoxic granules, and induces T cell-dependent cellular cytotoxicity and tumor cell lysis. Surovatamig can reduces release of pro-inflammatory cytokines including IL-2, IFNγ, TNF. Surovatamig can be used for the research of cancer, such as B cell non-Hodgkin lymphoma.
Species: Human |
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| HY-P9918 | Tremelimumab |
Tremelimumab (Ticilimumab) is a fully human monoclonal antibody specific for cytotoxic T-lymphocyte antigen-4 (CTLA-4) and can be used for metastatic melanoma research.
Species: Human |
Inflammation or Immune System Disease
Non-Small Cell Lung Cancer
Triple-Negative Breast Cancer
Metastatic Breast Cancer
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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-P9954 | Catumaxomab |
Catumaxomab, a trifunctional IgG2 antibody, is composed of mouse and rat heavy and light chains and binds to human EpCAM and human CD 3 receptors. The Fc region of Catumaxomab region has binding affinity for FcγR1 (CD 64), FcγRIIA (CD 32a), and FcγRIII (CD 16). Catumaxomab can be used for anti-tumor research, especially epithelial cancers.
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-P71043 | SNCG Protein, Human |
SNCG proteins help maintain the integrity of neurofilament networks and may influence axonal structure during development and adulthood. In vitro, it enhances the sensitivity of neurofilament-H to calcium-dependent proteases. SNCG Protein, Human is the recombinant human-derived SNCG protein, expressed by E. coli , with tag free.
Species: Human; Source: E. coli |
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| HY-P71928 | TFF1 Protein, Human |
TFF1 protein functions as a mucous gel stabilizer, vital for fortifying the gastrointestinal mucosa against noxious agents. It contributes to the mucous layer's integrity, providing a crucial physical barrier for the gastrointestinal tract, safeguarding it from potential harm. TFF1's stabilizing role emphasizes its significance in preserving the mucosal barrier, essential for overall gastrointestinal health and protection. TFF1 Protein, Human is the recombinant human-derived TFF1 protein, expressed by E. coli , with tag free.
Species: Human; Source: E. coli |
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| HY-P703091 | BRCA1 Protein, Human |
BRCA1 Protein, Human is the recombinant human-derived BRCA1, expressed by E. coli, with tag free labeled tag.
Species: Human; Source: E. coli |
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| HY-P7677 | BIN2 Protein, Human (His) |
BIN2 Protein, Human (His) is a recombinant human bridging integrator 2 (BIN2) with a His tag.
Species: Human; Source: E. coli |
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| HY-P72054 | RCVRN Protein, Human (sf9, His-Myc) |
The RCVRN protein is a calcium sensor that regulates phototransduction in cone and rod photoreceptors, enhancing the light sensitivity of cone photoreceptors in dark conditions. Under low light, it prolongs RHO/rhodopsin activation in rod photoreceptor cells by inhibiting GRK1-mediated phosphorylation. RCVRN Protein, Human (sf9, His-Myc) is the recombinant human-derived RCVRN protein, expressed by sf9 insect cells , with N-10*His, C-Myc labeled tag.
Species: Human; Source: Sf9 insect cells |
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| HY-P71778 | RCVRN Protein, Human (P.pastoris, His) |
The RCVRN protein is a calcium sensor that regulates phototransduction in cone and rod photoreceptors, enhancing the light sensitivity of cone photoreceptors in dark conditions. Under low light, it prolongs RHO/rhodopsin activation in rod photoreceptor cells by inhibiting GRK1-mediated phosphorylation. RCVRN Protein, Human (P.pastoris, His) is the recombinant human-derived RCVRN protein, expressed by P. pastoris , with N-His labeled tag.
Species: Human; Source: P. pastoris |
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| HY-P76849 | CSAG1 Protein, Human (HEK293, Fc) |
CSAG1 Protein is a potential key player in maintaining centrosome integrity during mitosis, impacting chromosome segregation. The mechanisms underlying its contribution to centrosome stability require elucidation. Its putative involvement highlights significance in mitosis-related cellular events. Further research is essential to unravel precise details of CSAG1's function and its implications for centrosome integrity during mitosis. CSAG1 Protein, Human (HEK293, Fc) is the recombinant human-derived CSAG1 protein, expressed by HEK293 , with N-hFc labeled tag.
Species: Human; Source: HEK293 |
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| HY-P73700 | PRAC Protein, Human (His-SUMO) |
PRAC Protein exhibits high expression in the prostate, rectum, and distal colon, with weaker expression in the bladder. Its prominence in prostate cancer cell lines suggests a potential link to prostate cancer pathology. The tissue-specific expression emphasizes PRAC Protein's potential roles in normal physiological processes and cancer contexts. PRAC Protein, Human (His-SUMO) is the recombinant human-derived PRAC protein, expressed by E. coli , with N-His, N-SUMO labeled tag.
Species: Human; Source: E. coli |
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| HY-P703092 | BRCA2 Protein, Human (HEK293, His, Strep, Flag) |
BRCA2 Protein, Human (HEK293, His, Strep, Flag) is the recombinant human-derived BRCA2, expressed by HEK293, with Strep, His, Flag labeled tag.
Species: Human; Source: HEK293 |
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| HY-P86790 | BRCA2 Antibody (YA6483) |
BRCA2 Antibody (YA6483) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to BRCA2.
Host: Rabbit; Reactivity: Human |
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| HY-P86827 | CTAG1B Antibody (YA6520) |
CTAG1B Antibody (YA6520) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to CTAG1B.
Host: Rabbit; Reactivity: Human |
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| HY-P811127 | Recoverin Antibody |
Recoverin Antibody is a Rabbit-derived and non-conjugated IgG Polyclonal antibody, targeting to Recoverin.
Host: Rabbit; Reactivity: Human, Mouse, Rat |
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| HY-P811296 | CTAG1B Antibody |
CTAG1B Antibody is a Rabbit-derived and non-conjugated IgG Polyclonal antibody, targeting to CTAG1B.
Host: Rabbit; Reactivity: Human |
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| HY-P83052 | CEP55 Antibody (YA2797) |
CEP55 Antibody (YA2797) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to CEP55.
Host: Rabbit; Reactivity: Human, Rat |
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| HY-P83052A | CEP55 Antibody (YA2797)(PBS only) |
CEP55 Antibody (YA2797) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to CEP55.
Host: Rabbit; Reactivity: Human, Rat |
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| HY-P86253 | NABC1 Antibody (YA5945) |
NABC1 Antibody (YA5945) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to NABC1.
Host: Rabbit; Reactivity: Human |
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| HY-P86753 | MUC16 Antibody (YA6445) |
MUC16 Antibody (YA6445) is a Mouse-derived and non-conjugated IgG monoclonal antibody, targeting to MUC16.
Host: Mouse; Reactivity: Human |
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| HY-P86753A | MUC16 Antibody (YA6445)(PBS only) |
MUC16 Antibody (YA6445) is a Mouse-derived and non-conjugated IgG monoclonal antibody, targeting to MUC16.
Host: Mouse; Reactivity: Human |
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| HY-P87366 | BLCAP Antibody (YA7049) |
BLCAP Antibody (YA7049) is a Mouse-derived and non-conjugated IgG2a monoclonal antibody, targeting to BLCAP.
Host: Mouse; Reactivity: Human, Rat |
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| HY-K2033 | OptiLNP Antibody-ctLNP pDNA Transfection Reagent (Jurkat Cells) |
MCE OptiLNP Antibody-ctLNP pDNA Transfection Reagent (Jurkat Cells) utilizes antibody-conjugated cell-targeted lipid nanoparticle (Cell-targeted Lipid Nanoparticle, ctLNP) technology to achieve highly efficient nucleic acid(eg. pDNA、mRNA、sgRNA、siRNA) delivery into Jurkat cells. It is designed for in vitro transfection of Jurkat cells and is well suited for applications in immunotherapy, tumor immunology, and other immune cell-related research. |
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| HY-K6101 | Human Breast Cancer Organoid Kit |
MCE Human Breast Cancer Organoid Kit contains Breast Cancer Organoid Basal Medium A, Breast Cancer Organoid Supplement B (50×), Breast Cancer Organoid Supplement C (250×). This product can be used to efficiently construct human breast cancer organoid. |
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| HY-K6103 | Human Small Cell Lung Cancer Organoid Kit |
MCE Human Small Cell Lung Cancer Organoid Kit contains Small Cell Lung Cancer Organoid Basal Medium A, Small Cell Lung Cancer Organoid Supplement B (50×),Small Cell Lung Cancer Organoid Supplement C (250×). This product can be used to efficiently construct human small cell lung cancer organoid. |
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| HY-K6104 | Human Colorectal Cancer Organoid Kit |
MCE Human Colorectal Cancer Organoid Kit contains Colorectal Cancer Organoid Basal Medium A, Colorectal Cancer Organoid Supplement B (50×), Colorectal Cancer Organoid Supplement C (250×). This product can be used to efficiently construct human colorectal cancer organoid. |
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| HY-K6107 | Human Cervical Cancer Organoid Kit |
MCE Human Cervical cancer Organoid Kit contains Cervical cancer Organoid Basal Medium A, Cervical cancer Organoid Supplement B (50×), Cervical cancer Organoid Supplement C (250×). This product can be used to efficiently construct human cervical cancer organoid. |
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| HY-K6108 | Human Esophageal Cancer Organoid Kit |
MCE Human Esophageal Cancer Organoid Kit contains Esophageal Cancer Organoid Basal Medium A, Esophageal Cancer Organoid Supplement B (50×), Esophageal Cancer Organoid Supplement C (250×). This product can be used to efficiently construct human esophageal cancer organoid. |
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| HY-K6109 | Human Endometrial Cancer Organoid Kit |
MCE Human Endometrial Cancer Organoid Kit contains Endometrial Cancer Organoid Basal Medium A, Endometrial Cancer Organoid Supplement B (50×), Endometrial Cancer Organoid Supplement C (250×). This product can be used to efficiently construct human endometrial cancer organoid. |
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| HY-K6110 | Human Pancreatic Cancer Organoid Kit |
MCE Human Pancreatic Cancer Organoid Kit contains Pancreatic Cancer Organoid Basal Medium A, Pancreatic Cancer Organoid Supplement B (50×), Pancreatic Cancer Organoid Supplement C (250×). This product can be used to efficiently construct human pancreatic cancer organoid. |
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| HY-K6123 | Human Ovarian Cancer Organoid Kit |
MCE Human Ovarian Cancer Organoid Kit includes a basic culture medium for ovarian cancer organoids, as well as culture supplements, and is designed for the effective construction of human ovarian cancer organoids. |
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| HY-K6126 | Human Kidney Cancer Organoid Kit |
MCE Human Kidney Cancer Organoid Kit includes a basic culture medium for Kidney Cancer organoids, as well as culture supplements, and is designed for the effective construction of human Kidney Cancer organoids. |
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