6 Results for "

immune cell populations

" in MedChemExpress (MCE) Product Catalog:
Products (6)

6 Results for "immune cell populations" in MCE Product Catalog:

Cat. No.: HY-P990023
CAS No.: 2622254-57-1
Synonyms: ADX-914
Target:  

Interleukin Related

Research Areas:  

Inflammation/Immunology

Bempikibart (ADX-914) is a fully human IgG1-κ monoclonal antibody targeting IL-7Rα. Bempikibart binds to the IL-7 receptor alpha and blocks IL-7 and TSLP signaling. Bempikibart reduces T cell populations while relatively preserving regulatory T cells. Bempikibart inhibits Th1, Th2, and Th17 immune pathways. Bempikibart can be used in research on alopecia areata and atopic dermatitis .
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Cat. No.: HY-160229
Synonyms: R-1075 sodium
ssRNA40 sodium (R-1075 sodium) is a single-stranded RNA40 derived from HIV-1. ssRNA40 sodium activates the TLR7, TLR8, TLR2, RIG-I, MDA5, MyD88, Caspase-3, IRE1α, NLRP3 inflammasome and IRF7 signaling pathways. ssRNA40 sodium alters mRNA expression in neutrophils, induces pro-inflammatory cytokines, ROS, autophagy (autophagy), pyroptosis (pyroptosis), neuronal death, neurodegeneration, aggregate formation and NK cell activation. ssRNA40 sodium activates the expression of CD62L, CD11b, CD69, MX1, OAS1, ATG7, LC3B and XBP1 in immune cell and neuronal populations. ssRNA40 sodium causes cortical neuron loss and axonal damage in mice in a TLR7-dependent manner. ssRNA40 sodium can be used in research on HIV-1 infection, neurodegeneration, COVID-19 and HIV-associated neurological disorders .
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Cat. No.: HY-P992356

Target:  

Topoisomerase

Research Areas:  

Cancer

GENA-104A16 is a humanized monoclonal antibody targeting CNTN4, with multiple functions including immunostimulation, cytotoxicity and immunoregulation. By binding to CNTN4, GENA-104A16 blocks its interaction with APP, thereby restoring T cell function, inducing tumor cell death and regulating tumor-infiltrating immune cell populations. GENA-104A16 also exerts topoisomerase I inhibitory activity via the payload Exatecan (HY-13631). GENA-104A16 can be used in research related to colon cancer liver metastasis and other CNTN4-expressing solid tumors .
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Cat. No.: HY-133488
CAS No.: 1402703-50-7
Research Areas:  

Inflammation/Immunology Cancer

ST1072 is an inhibitor of CerS4 and CerS6. ST1072 preferentially inhibits CerS6 over CerS4, and reduces the production of C16 ceramide. ST1072 impairs TCR-mediated N-RAS activation, ERK signaling pathway, and the colocalization of CD3/PKCθ. ST1072 decreases the production of IFN-γ as well as the migration of donor cells to target organs. ST1072 regulates immune cell populations and the expression of co-stimulatory molecules. ST1072 can be used in research related to colon cancer, cervical cancer, graft-versus-host disease, and hematologic malignancies .
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Cat. No.: HY-N2595
CAS No.: 5574-24-3
Synonyms: O-Methylatheroline
Oxoglaucine (O-Methylatheroline) is a natural product with multiple activities including autophagy activation, anti-inflammation, antibacterial activity, and immunoregulation. Oxoglaucine inhibits the TRPV5/calmodulin/CAMK-II pathway, suppresses TGFβ-induced Smad2 phosphorylation by upregulating Smad7, blocks Ca 2+ influx, activates autophagy, alleviates apoptosis and inflammation, inhibits ROS production and the expression of fibrosis markers in hepatocytes, and regulates immune cell populations and responses. Oxoglaucine protects against infections caused by Candida albicans and Klebsiella pneumoniae, and exerts effects on adjuvant-induced arthritis. Oxoglaucine can be used in studies related to arthritis, liver fibrosis, bacterial infections, and fungal infections .
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Cat. No.: HY-W154247
CAS No.: 103313-38-8
Target:  

Bacterial

Research Areas:  

Infection

IP6C is a specific inhibitor and phage sensitizer targeting type II Thoeris systems. IP6C competitively binds to histidine in the catalytic pocket of ThsB, blocks the production of the His-ADPR alarm signal and inhibits ThsA activation, thereby relieving bacterial stasis of phage replication. IP6C selectively resensitizes drug-resistant bacteria carrying type II Thoeris systems (such as Pseudomonas aeruginosa) to phage lysis, without affecting other bacteria, and shows no toxicity to mice and human cell lines. IP6C significantly improves the survival rate of infected mice, and can be used to overcome bacterial phage defense mechanisms and study Pseudomonas aeruginosa infections .
Thoeris system: (named after the Egyptian goddess of fertility and protection), is a widespread anti-phage immune defense system in bacteria and archaea. Thoeris system belongs to the "Abortion Infection (Abi)" mechanism of bacteria: when an individual bacterium detects phage invasion, it initiates a suicide program and dies, thereby blocking phage replication and spread, and protecting the surrounding bacterial population from infection.
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