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

adult neural stem cells

" in MedChemExpress (MCE) Product Catalog:

8

Inhibitors & Agonists

1

Screening Libraries

1

Fluorescent Dyes

1

Biochemical Assay Reagents

1

GMP Molecules

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-12323
    ISX-9
    Maximum Cited Publications
    11 Publications Verification

    Isoxazole 9

    Calcium Channel Neurological Disease
    ISX-9 (Isoxazole 9) is a potent inducer of adult neural stem cell differentiation. ISX-9 activates Ca 2+ influx through both voltage-gated Ca 2+ channels and NMDA receptors and increases neuroD expression. ISX-9 also induces cardiomyogenic differentiation of Notch-activated epicardium-derived cells (NECs) .
    ISX-9
  • HY-112680A

    G-quadruplex Neurological Disease
    Carboxy pyridostatin trifluoroacetate salt is a G-quadruplex ligand. Carboxy pyridostatin trifluoroacetate salt has a highly molecular specificity to RNA on DNA G4s and reduces ATF-5 protein. Carboxy pyridostatin trifluoroacetate salt reduces cell proliferation and hinders stress granule (SG) formation .
    Carboxy pyridostatin trifluoroacetate salt
  • HY-112680

    G-quadruplex Neurological Disease
    Carboxypyridostatin is a G-quadruplex ligand. Carboxypyridostatin has a highly molecular specificity to RNA on DNA G4s and reduces ATF-5 protein. Carboxypyridostatin reduces cell proliferation and hinders stress granule (SG) formation .
    Carboxypyridostatin
  • HY-12323G

    Isoxazole 9

    Calcium Channel Cardiovascular Disease Neurological Disease
    ISX-9 (Isoxazole 9) is a potent inducer of adult neural stem cell differentiation.
    ISX-9
  • HY-157343A

    Apoptosis Mitochondrial Metabolism Caspase Neurological Disease Cancer
    GD3 Ganglioside sodium is an Apoptosis inducer and biomarker for mouse neural stem cells. GD3 Ganglioside sodium expresses in neural stem cells and the subventricular zone of the adult mouse brain. GD3 Ganglioside sodium targets the mitochondrial permeability transition pore complex, induces pore opening, dissipates mitochondrial transmembrane potential, triggers Mitochondrial swelling, releases pro-apoptotic factors, and activates Caspase-9. GD3 Ganglioside sodium is applicable to research related to glioblastoma .
    GD3 Ganglioside sodium
  • HY-157343

    Apoptosis Mitochondrial Metabolism Caspase Neurological Disease Cancer
    GD3 Ganglioside is an Apoptosis inducer and a biomarker for mouse neural stem cells. GD3 Ganglioside expresses in neural stem cells and the subventricular zone of the adult mouse brain. GD3 Ganglioside targets the mitochondrial permeability transition pore complex, induces pore opening, dissipates mitochondrial transmembrane potential, triggers Mitochondrial swelling, releases pro-apoptotic factors, and activates Caspase-9. GD3 Ganglioside is applicable to research related to glioblastoma .
    GD3 Ganglioside
  • HY-157343B

    Apoptosis Mitochondrial Metabolism Caspase Neurological Disease Cancer
    GD3 Ganglioside ammonium is an Apoptosis inducer and biomarker for mouse neural stem cells. GD3 Ganglioside ammonium expresses in neural stem cells and the subventricular zone of the adult mouse brain. GD3 Ganglioside ammonium targets the mitochondrial permeability transition pore complex, induces pore opening, dissipates mitochondrial transmembrane potential, triggers Mitochondrial swelling, releases pro-apoptotic factors, and activates Caspase-9. GD3 Ganglioside ammonium is applicable to research related to glioblastoma .
    GD3 Ganglioside ammonium
  • HY-162830

    Lipoxygenase Monoamine Oxidase Neurological Disease
    5-LOX/MAOs-IN-1 (compound 3) is a 5-LOX/MAOs inhibitor and a potent free radical scavenger with antioxidant properties. 5-LOX/MAOs-IN-1 also showed neuroprotective activity in oxidative stress-damaged cell models and can activate the neurogenesis microenvironment of adult mouse neural stem cells. 5-LOX/MAOs-IN-1 can be used for the study of neurodegenerative diseases .
    5-LOX/MAOs-IN-1

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