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

SGC-7901 cells

" in MedChemExpress (MCE) Product Catalog:

14

Inhibitors & Agonists

6

Natural
Products

1

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-N7980

    NF-κB Cancer
    Rubipodanone A, a naphthohydroquinone dimer, shows cytotoxicity against A549, BEL-7402, HeLa, HepG2, SGC-7901 and U251 cells. Rubipodanone A also shows obvious activating effect at 20 and 40 μM for NF-κB .
    Rubipodanone A
  • HY-W015084

    Apoptosis Cancer
    β-Ionone is effective in the induction of apoptosis in gastric adenocarcinoma SGC7901 cells. Anti-cancer activity .
    β-Ionone
  • HY-N10201

    Endogenous Metabolite Cancer
    Cytoglobosin C, a cytochalasan derivative, shows potent cytotoxicity against both SGC-7901 and A549 cell lines (IC50<10 μM) .
    Cytoglobosin C
  • HY-161351

    Akt STAT Apoptosis Cancer
    STAT3/AKT-IN-1 is a dual inhibitor for the signal transducer and activator of transcription 3 (STAT3) and protein kinase B (AKT) signalling pathway, exhibits antitumor activity against gastric cancer and induces cell apoptosis in SGC-7901 cells .
    STAT3/AKT-IN-1
  • HY-N1841

    3'-Hydroxyrocaglamide

    Rocaglamide D (3'-Hydroxyrocaglamide) (compound 1) is a lignan that can be found in Aglaia odorata. Rocaglamide D shows cytotoxicity with IC50s of 0.32, 0.12, 0.25 µM for HeLa, SGC-7901, A549 cells, respectively .
    Rocaglamide D
  • HY-N9046

    NO Synthase Inflammation/Immunology Cancer
    Citroside A is a megastigmane sesquiterpenoid with cytotoxic and anti-inflammatory activities. Citroside A displays potential effects against NO production with an IC50 of 34.25 μM. Citroside A exhibits pronounced cytotoxicity against SGC-7901 and HeLa cells with IC50 values of 27.52 μM and 29.51 μM, respectively .
    Citroside A
  • HY-155360

    YAP Apoptosis Cancer
    MY-1076 is an inhibitor of YAP. MY-1076 induces YAP degradation and cell apoptosis. MY-1076 inhibits MGC-803, SGC-7901, HCT-116 and KYSE450 cells proliferation with IC50 s of 0.019, 0.017, 0.020 and 0.044 μM, respectively .
    MY-1076
  • HY-156098

    c-Met/HGFR Cancer
    c-Met-IN-19 (Compound 21j) is a c-Met inhibitor (IC50: 1.99 nM). c-Met-IN-19 shows cytotoxicity against A549, HT-29, SGC-7901, MDA-MB-231 cells with IC50s of 0.25, 0.36, 0.98, 0.76 μM .
    c-Met-IN-19
  • HY-146311

    Microtubule/Tubulin Cancer
    Tubulin polymerization-IN-16 (compound 5g) is a potent inhibitor of tubulin polymerization. Tubulin polymerization-IN-16 shows most potent against cancer cells, with IC50 values of 0.084-0.221 μM. Tubulin polymerization-IN-16 potently disrupts microtubule/tubulin dynamics, induces cell cycle arrest at G2/M phase in SGC-7901 cells .
    Tubulin polymerization-IN-16
  • HY-W015084S

    Isotope-Labeled Compounds Apoptosis Cancer
    β-Ionone- 13C3 is the 13C-labeled β-Ionone. β-Ionone is effective in the induction of apoptosis in gastric adenocarcinoma SGC7901 cells. Anti-cancer activity[1].
    β-Ionone-13C3
  • HY-W015084A

    β-Lonone

    Apoptosis Cancer
    (E)-β-Ionone is the isomer of β-Ionone (HY-W015084). β-Ionone is effective in the induction of apoptosis in gastric adenocarcinoma SGC7901 cells. β-Ionone has anti-cancer activity .
    (E)-β-Ionone
  • HY-147947

    Microtubule/Tubulin Cancer
    Tubulin polymerization-IN-30 (compound 6e) is a potent Tubulin polymerization inhibitor. Tubulin polymerization-IN-30 is a colchicine binding site inhibitor. Tubulin polymerization-IN-30 can disrupt intracellular microtubule organization, arrest cell cycle at the G2/M phase. Tubulin polymerization-IN-30 exhibits the high potency against the cancer cell lines including SGC-7901, A549 and HeLa, with IC50 values of 2.16, 2.21, and 0.403 μM .
    Tubulin polymerization-IN-30
  • HY-155686

    Microtubule/Tubulin Cancer
    Tubulinpolymer-in-44 (compound 7w) is a strong and effective Tubulin inhibitor, with an IC50 value of 0.21 μM. Tubulinpolymer-in-44 induces apoptosis by arresting G2/M phase, which can be used for cancer research.
    Tubulin polymerization-IN-44
  • HY-122928

    Apoptosis Caspase Cancer
    Rosamultic acid is an A-ring contracted triterpene, that can be isolated from the roots of Rosa rnultiflora. Rosamultic acid inhibits gastric cancer cells proliferation by inducing apoptosis mediated through cell cycle arrest, downregulation of cell cycle related protein expressions, inhibition of cell migration, DNA damage, and activation of caspases .
    Rosamultic acid

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