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Pathways Recommended: Stem Cell/Wnt Cell Cycle/DNA Damage
Results for "

mouse glioma cell

" in MedChemExpress (MCE) Product Catalog:

5

Inhibitors & Agonists

1

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-150082

    CDK DNA/RNA Synthesis Cancer
    CP681301 is a potent CDK5 inhibitor. CP681301 shows antiproliferative activity. CP681301 decreases the expression of CD133, OLIG2, SOX2, KI67, pCDK5 protein level in GSCs (Glioma stem cells). CP681301 reduces self-renewal in mouse glioma xenografts. CP681301 shows anti-tumor activity in Drosophila .
    CP681301
  • HY-W021040

    CGA-173506

    Fungal Apoptosis Infection Cancer
    Fludioxonil (CGA-173506) is a phenylpyrrole-type fungicide with oral activity that can inhibit the growth of S. sclerotiorum. Fludioxonil promotes tumor growth and metastasis, and induces cardiac toxicity. Fludioxonil causes cytoskeletal disruption, DNA damage, and apoptosis in mouse glioma cells .
    Fludioxonil
  • HY-115925

    SHP2 Phosphatase Cancer
    SHP2-IN-9 is a specific SHP2 inhibitor (IC50 =1.174 μM) with enhanced blood–brain barrier penetration. SHP2-IN-9 shows 85-fold more selective for SHP2 than SHP1. SHP2-IN-9 inhibits SHP2-mediated cell signal transduction and cancer cell proliferation, and inhibits the growth of cervix cancer tumors and glioblastoma growth in vivo .
    SHP2-IN-9
  • HY-W021040S

    CGA-173506-13C3

    Isotope-Labeled Compounds Fungal Apoptosis Infection Cancer
    Fludioxonil- 13C3 (CGA-173506- 13C3) is 13C labeled Fludioxonil. Fludioxonil (CGA-173506) is a phenylpyrrole-type fungicide with oral activity that can inhibit the growth of S. sclerotiorum. Fludioxonil promotes tumor growth and metastasis, and induces cardiac toxicity. Fludioxonil causes cytoskeletal disruption, DNA damage, and apoptosis in mouse glioma cells .
    Fludioxonil-13C3
  • HY-174212

    Apoptosis Cancer
    MXC-017 is a blood-brain barrier (BBB)-penetrant apoptosis inducer that directly targets Vimentin (VIM). MXC-017 prevents radiation-induced glioma stem cell (GSC) formation, while promoting G0/G1 cell cycle arrest and apoptosis. MXC-017 exhibits minimal off-target effects and shows no significant cytotoxicity. MXC-017 significantly prolongs median survival when used in combination with radiation therapy in glioblastoma (GBM) mouse models.
    MXC-017

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