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Results for "

microsatellite-stable colorectal cancer

" in MedChemExpress (MCE) Product Catalog:

4

Inhibitors & Agonists

1

Oligonucleotides

Targets Recommended:
Cat. No. Nom du produit Target Áreas de investigación Chemical Structure
  • HY-175751

    mTOR Cancer
    LRK-4189 is an orally active PIP4K2C (a regulator of mTOR complex) degrader and type 1 immune activator. LRK-4189 induces the degradation of the lipid kinase PIP4K2C. LRK-4189 triggers the interferon signaling pathway in microsatellite-stable (MSS) colorectal cancer cells, activates immunogenic tumor killing, and induces endogenous cell death. LRK-4189 sensitizes microsatellite-stable colorectal cancer tumors to NK cell killing and dendritic cell phagocytosis. LRK-4189 can be used for the research of microsatellite-stable colorectal cancer .
    LRK-4189
  • HY-176296

    SR-8541A

    Phosphodiesterase (PDE) STING Cancer
    Vizenpistat (SR-8541A) is an orally active ENPP1 inhibitor. Vizenpistat increases cGAMP levels, blocks 2′3′-cGAMP hydrolysis, inhibits adenosine production, regulates innate immune signaling mediated by the STING pathway, and modulates anti-tumor immune responses. Vizenpistat is applicable to research related to breast cancer and metastatic microsatellite-stable colorectal cancer .
    Vizenpistat
  • HY-150212

    IMO-2125

    Toll-like Receptor (TLR) Inflammation/Immunology Cancer
    Tilsotolimod (IMO-2125) is a TLR9 agonist. Tilsotolimod activates the TLR9 signaling pathway, triggers downstream pro-inflammatory and immunostimulatory pathways, enhances the uptake and killing of cancer cells, and induces adaptive immune responses. Tilsotolimod is applicable to research related to melanoma and colorectal cancer .
    Tilsotolimod
  • HY-183866

    Maleimide-KGDEVD-doxorubicin

    Peptide-Drug Conjugates (PDCs) HSP IFNAR Cancer
    MPD-1 (Maleimide-KGDEVD-doxorubicin) is a peptide drug conjugate (PDC). MPD-1 releases Doxorubicin (HY-15142) via radiation-activated caspase-3 cleavage, triggering a cytotoxic amplification cascade at the tumor site. MPD-1 enhances CD8 + T cell tumor infiltration, and activates antigen-presenting cells. MPD-1 enables dual-trigger payload release, amplifies cytotoxicity via in situ feedback, and selectively delivers payload to tumor microenvironments via enhanced albumin metabolism and macropinocytosis. MPD-1 exhibits antitumor efficacy in mouse colorectal cancer models. MPD-1 can be used for the research of colorectal cancer .
    MPD-1

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