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SUM149PT

" in MedChemExpress (MCE) Product Catalog:
Cat. No. 상품명 Target 연구분야 Chemical Structure
  • HY-161934

    PARP Reactive Oxygen Species (ROS) Apoptosis Cancer
    PARP1-IN-27 (Compound 9B) is the inhibitor for PARP1 and PARP2, with IC50 of 2.53 nM and 6.45 nM in cell SUM149PT. PARP1-IN-27 inhibits the proliferation of BRCA-mutated cancer cells SUM149PT, HCC1937 and Capan-1, with IC50 of 0.62, 1.91 and 4.26 μM respectively. PARP1-IN-27 aggravates DNA double-strand breaks, increases ROS generation, arrests cell cycle at G2/M phase, and induces apoptosis in SUM149PT .
    PARP1-IN-27
  • HY-179268

    Glycosidase Cancer
    DNPH1-IN-1 (Compound 38) is a potent, cell-active non-nucleoside DNPH1 inhibitor, with a pIC50 of 9.3. DNPH1-IN-1 increases DNA-bound hmdU. DNPH1-IN-1 can be used in the research of breast cancer .
    DNPH1-IN-1
  • HY-108919

    HDAC Apoptosis MDM-2/p53 Aurora Kinase NEKs DNA/RNA Synthesis Bcl-2 Family Inflammation/Immunology Cancer
    CG-1521 is a histone deacetylase (HDAC) inhibitor that stabilizes Ac-Lys373 P53, increases P21 levels and HDAC2 degradation. CG-1521 can inhibit proliferation, induce cell cycle arrest and apoptosis. CG-1521 promotes Bax translocation to the mitochondria and cleavage. CG-1521 downregulates KIF4, Aurora B and Nek2 protein expression and DNA synthesis. CG-1521 can be used for the research of prostate cancer and inflammatory breast cancer .
    CG-1521
  • HY-183581

    Deubiquitinase DNA/RNA Synthesis Cancer
    USP1-IN-18 is an orally active USP1 inhibitor with a human IC50 of 17.0 nM. USP1-IN-18 inhibits USP1-UAF1 deubiquitinase activity and drives ubiquitinated PCNA accumulation. USP1-IN-18 induces DNA damage, replication stress, and G2-M phase cell cycle arrest. USP1-IN-18 can be used for the research of triple-negative breast cancer .
    USP1-IN-18
  • HY-182312

    CDK Apoptosis Cancer
    CTX-439 is an orally active, ATP-competitive small-molecule inhibitor of CDK12 and CDK13, with an IC50 of 3.1 nM and a Kd of 0.38 nM against CDK12, and an IC50 of 9.2 nM against CDK13. CTX-439 induces DNA damage and apoptosis in tumor cells. CTX-439 is applicable for the research of breast cancer and ovarian cancer .
    CTX-439

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