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

AML12 cells

" in MedChemExpress (MCE) Product Catalog:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-148598

    CUR5-8

    Apoptosis Autophagy Metabolic Disease
    Curcumin 5-8 (CUR5-8) is a potent and orally active naturally active curcumin (CUR) analog. Curcumin 5-8 inhibits lipid droplet formation. Curcumin 5-8 increases autophagy and inhibits Apoptosis. Curcumin 5-8 improves insulin resistance and insulin sensitivity .
    Curcumin 5-8
  • HY-111180

    Endogenous Metabolite Metabolic Disease
    ML-262 is an inhibitor of hepatic lipid droplet formation (IC50=6.4 nM in murine AML-12 cells), which is associated with non-alcoholic fatty liver disease.1 ML-262 does not induce cytotoxicity (up to 33 μM) or inhibit fatty acid uptake (up to 50 μM).
    ML262
  • HY-158160

    Sodium Channel Metabolic Disease
    LBA-3 is a selective, orally active inhibitor for sodium-coupled citrate transporter SLC13A5, with an IC50 of 67 nM. LBA-3 decreases levels of triglyceride and total cholesterol in oleic and palmitic acid (OPA)-stimulated AML12 cells, PCN-stimulated primary mouse hepatocytes and in mouse models, without detectable toxicity. LBA-3 is blood-brain barrier permeable .
    LBA-3
  • HY-122209

    HBV Infection
    DVR-01 is a HBV inhibitor with EC50 values of 1.7 and 1.6 μM in AML12HBV10 and HepDES19 cells, respectively. DVR-01 shows antiviral activity against drug-resistant HBV mutants with EC50s of 2.403-3.273 μM. DVR-01 can be used for the research of HBV infection and related diseases .
    DVR-01
  • HY-163746

    Cholinesterase (ChE) Neurological Disease
    BuChE-IN-11 (Compound 3b-1) is an selective BuChE inhibitor with an IC50 of 0.44 μM for hBuChE. BuChE-IN-11 has high blood-brain barrier permeability and exhibits strong antioxidant activity due to its free radical scavenging properties. BuChE-IN-11 interacts with the choline binding site, acetyl binding site, and peripheral anionic site, exhibiting submicromolar BuChE inhibitory activity and preventing β-amyloid (Aβ) self-aggregation. BuChE-IN-11 holds promise for research in the field of Alzheimer's disease .
    BuChE-IN-11

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