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Results for "

MMP-9-IN-9

" in MedChemExpress (MCE) Product Catalog:

10

Inhibitors & Agonists

1

Biochemical Assay Reagents

1

Natural
Products

1

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-116302

    MMP Neurological Disease Inflammation/Immunology
    MMP-9-IN-9 (compound 4f) is a slective MMP-9 inhibitor with an IC50 of 5 nM. MMP-9-IN-9 shows selective for MMP-9 over MMP-1 and MMP-13. MMP-9-IN-9 shows strong anti-inflammatory and neuroprotective effects .
    MMP-9-IN-9
  • HY-B0099
    Edaravone
    Maximum Cited Publications
    24 Publications Verification

    MCI-186

    MMP Apoptosis Neurological Disease
    Edaravone is a strong novel free radical scavenger, and inhibits MMP-9-related brain hemorrhage in rats treated with tissue plasminogen activator.
    Edaravone
  • HY-B0099R

    MMP Apoptosis Neurological Disease
    Edaravone (Standard) is the analytical standard of Edaravone. This product is intended for research and analytical applications. Edaravone is a strong novel free radical scavenger, and inhibits MMP-9-related brain hemorrhage in rats treated with tissue plasminogen activator.
    Edaravone (Standard)
  • HY-B0099S

    MCI-186-d5

    Isotope-Labeled Compounds MMP Apoptosis Neurological Disease
    Edaravone-d5 is a deuterium labeled Edaravone. Edaravone is a strong novel free radical scavenger, and inhibits MMP-9-related brain hemorrhage in rats treated with tissue plasminogen activator .
    Edaravone-d5
  • HY-N0084
    Betulinaldehyde
    4 Publications Verification

    BetulINic aldehyde; Betunal

    Bacterial Infection Cardiovascular Disease Cancer
    Betulinaldehyde (Betunal) Has anti-cancer and anti-staphylococcus aureus activity. Betulinaldehyde Suppressible Akt, MAPK sum STAT3 Signal path, increase self-transfer, Suppression A549 Cellular vitality, increase and transfer. Betulinaldehyde suppresses PLCγ1/Ca 2+/MMP9 signal pathway, has a key effect on vascular plasticity, and is available for cardiovascular disease (CVD) research.
    Betulinaldehyde
  • HY-W016412
    Coenzyme Q0
    2 Publications Verification

    CoQ0

    Apoptosis Autophagy EGFR Akt mTOR Caspase Bcl-2 Family Reactive Oxygen Species PARP COX NO Synthase TNF Receptor Interleukin Related MMP NF-κB Neurological Disease Inflammation/Immunology Cancer
    Coenzyme Q0 (CoQ0) is a potent, oral active ubiquinone compound can be derived from Antrodia cinnamomea. Coenzyme Q0 induces apoptosis and autophagy, suppresses of HER-2/AKT/mTOR signaling to potentiate the apoptosis and autophagy mechanisms. Coenzyme Q0 regulates NFκB/AP-1 activation and enhances Nrf2 stabilization in attenuation of inflammation and redox imbalance. Coenzyme Q0 has anti-angiogenic activity through downregulation of MMP-9/NF-κB and upregulation of HO-1 signaling .
    Coenzyme Q0
  • HY-146218

    MMP Akt Apoptosis Cancer
    MMP-9-IN-5 is a MMP-9 inhibitor (IC50: 4.49 nM) that forms hydrogen bond with MMP-9. MMP-9-IN-5 also inhibits AKT activity (IC50: 1.34 nM). MMP-9-IN-5 shows cell cytotoxicity and induces cell apoptosis. MMP-9-IN-5 can be used in the research of cancers .
    MMP-9-IN-5
  • HY-146216

    MMP Akt Apoptosis Cancer
    MMP-9-IN-3 is a MMP-9 inhibitor (IC50: 5.56 nM) that forms hydrogen bond with MMP-9. MMP-9-IN-3 also inhibits AKT activity (IC50: 2.11 nM). MMP-9-IN-3 shows cell cytotoxicity and induces cell apoptosis. MMP-9-IN-3 can be used in the research of cancers .
    MMP-9-IN-3
  • HY-146217

    MMP Akt Apoptosis Cancer
    MMP-9-IN-4 is a MMP-9 inhibitor (IC50: 7.46 nM) that has H-π interactions with MMP-9. MMP-9-IN-4 also inhibits AKT activity (IC50: 8.82 nM). MMP-9-IN-4 shows cell cytotoxicity and induces cell apoptosis. MMP-9-IN-4 can be used in the research of cancers .
    MMP-9-IN-4
  • HY-124068

    Apoptosis GSK-3 MMP Reactive Oxygen Species Infection Inflammation/Immunology Cancer
    LQB-118 is an orally active compound derived from sandalwood. LQB-118 can inhibit the migration of glioblastoma cells and induce cell death. LQB-118 can suppress the migration and invasion of prostate cancer cells by regulating the AKT/GSK3β pathway and the expression of the MMP-9/reck genes. LQB-118 can also inhibit yeast polysaccharide-induced inflammation both in vivo and in vitro. Additionally, LQB-118 selectively induces ROS-triggered and mitochondrial-dependent apoptosis in Leishmania amazonensis. LQB-118 can be used in studies related to inflammation, infections, and cancer diseases .
    LQB-118

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