66 Results for "

subsets

" in MedChemExpress (MCE) Product Catalog:
Products (66)

66 Results for "subsets" in MCE Product Catalog:

Cat. No.: HY-180576
CAS No.: 2231746-53-3
Nurr1/RXR dual agonist 1 is a dual activator of Nurr1 (EC50 = 2.6 µM) and RXR with K s of 0.6 and 1.1 µM, respectively. Nurr1/RXR dual agonist 1 exclusively activates the heterodimer response element DR5 by selectively destabilizing the Nurr1 homodimer and stabilizing the Nurr1:RXR heterodimer. Nurr1/RXR dual agonist 1 enhances expression of a specific subset of neuroprotective Nurr1 target genes while avoiding induction of genes associated with potential off-target effects in neuronal cells. Nurr1/RXR dual agonist 1 can be used for neurodegenerative diseases research .
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Cat. No.: HY-184555
Research Areas:  

Cancer

TP-18 is a potent and orally active dual EP2/EP4 antagonist with IC50 values of 9.5 nM (EP2) and 3.3 nM (EP4). TP-18 effectively depletes a highly immunosuppressive VSIG4high tumor-associated macrophage (TAM) subset and enhances cytotoxic CD8+ T cell-mediated colorectal cancer (CRC) tumor elimination. TP-18 dampens the expression of VSIG4 by blunting EP2/EP4-Gαs-PKA signaling. TP-18 enhances the sensitivity of anti-PD-1 therapy in CRC mouse models and in patient-derived tumor immune organoids. TP-18 can be used to study colorectal cancer .
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Cat. No.: HY-P992000

Target:  

Interleukin Related

Research Areas:  

Inflammation/Immunology

F8-IL-4 is an immune cytokine targeting IL-4. F8-IL-4 specifically delivers IL-4 to inflammatory sites via binding to targets expressed on neovascular vessels. F8-IL-4 alleviates collagen-induced arthritis in mice by regulating T cell subsets and macrophage polarization. When combined with Dexamethasone (HY-14648), F8-IL-4 produces a synergistic and long-lasting therapeutic effect, and prevents arthritis recurrence after drug withdrawal by maintaining anti-inflammatory cell phenotypes and cytokine profiles. F8-IL-4 can be used in the research of collagen-induced arthritis .
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Cat. No.: HY-P991754
Research Areas:  

Cancer

Anti-Mouse TREM2 Antibody (178) is an antibody targeting mouse TREM2, which blocks the binding of ligands to TREM2 and inhibits TREM2-mediated signaling pathways. Anti-Mouse TREM2 Antibody (178) inhibits the tumor growth of MCA/1956 sarcoma in mice. Anti-Mouse TREM2 Antibody (178) enhances IFNγ production by intratumoral CD8 + T cells and TNFα production by intratumoral CD4 + T cells. Anti-Mouse TREM2 Antibody (178) can be used in the research of sarcoma, colorectal cancer and breast tumors. The recommended isotype control is Rat IgG2a kappa, Isotype Control (HY-P990679) .
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Cat. No.: HY-P992375

Target:  

Interleukin Related

Research Areas:  

Inflammation/Immunology

HuMax-IL15 is a human IgG1 monoclonal antibody against IL-15. HuMax-IL15 is applicable to the research of rheumatoid arthritis. The recommended isotype control is human IgG1 kappa (HY-P99001) .
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Cat. No.: HY-L073
394 compounds

Hepatitis C virus (HCV) is a hepatotropic enveloped positive- strand RNA virus (family Flaviviridae) that infects the parenchymal cells of the liver. HCV infection is a significant public health burden. Globally, an estimated 71 million people have chronic hepatitis C virus infection. A significant number of those who are chronically infected will develop cirrhosis or liver cancer. To date, there is no vaccine against HCV, and combination pegylated alpha interferon (pIFN-) and ribavirin, the main standard-of-care treatment for HCV, is effective in only a subset of patients and is associated with a wide spectrum of toxic side effects and complications. More recently, new therapeutic approaches that target essential components of the HCV life cycle have been developed, including direct-acting antiviral (DAA) that specifically block a viral enzyme or functional protein and host-targeted agents (HTA) that block interactions between host proteins and viral components that are essential to the viral life cycle. However, the genetic diversity of HCV viruses and the stage of liver disease (i.e., cirrhosis) are revealing themselves as obstacles for effective, pan-genotypic treatments. There still exists a need for the discovery and development of new HCV inhibitors. In particular, since the future of HCV therapy will likely consist of a cocktail approach using multiple inhibitors that target different steps of infection, new antivirals targeting all steps of the viral infection cycle.

MCE offers a unique collection of 394 compounds with identified and potential anti-HCV activity. MCE Anti- Hepatitis C Virus Compound Library is a useful tool for discovery new anti-HCV drugs and other anti-infection research.