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Pathways Recommended: Cell Cycle/DNA Damage
Results for "

kidney damage

" in MedChemExpress (MCE) Product Catalog:

11

Inhibitors & Agonists

1

Screening Libraries

5

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-44307

    Ferroptosis Cancer
    84-B10 is a 3-phenylglutaric acid derivative. 84-B10 inhibits cisplatin (HY-17394) induced tubular ferroptosis. 84-B10 attenuates cisplatin-induced mitochondrial damage and oxidative stress. 84-B10 ameliorates cisplatin-induced acute kidney injury (AKI) .
    84-B10
  • HY-128442

    Phenyl hydrogen sulfate

    Endogenous Metabolite Metabolic Disease
    Phenyl sulfate is an orally active gut microbiota-derived metabolite. Phenyl sulfate induces albuminuria and podocyte damage in experimental models of diabetes. Phenyl sulfate can be used as a disease marker and future therapeutic target in diabetic kidney disease .
    Phenyl sulfate
  • HY-156368

    RIP kinase Inflammation/Immunology
    RIPK3-IN-4 (Compound 42) is a RIPK3 inhibitor. RIPK3-IN-4 inhibits HK-2 cell damage, necroptosis and inflammatory responses. RIPK3-IN-4 reduces Cisplatin (HY-17394)- and I/R-induced kidney damage, inflammatory response and necroptosis in acute kidney injury .
    RIPK3-IN-4
  • HY-144429

    TRP Channel Metabolic Disease
    TRPC5-IN-4 is potent and safe TRPC inhibitor with IC50 value of 14.07 nM and 65 nM for TRPC5 and TRPC4, respectively. TRPC5-IN-4 shows no damage on the cellular component of liver and kidney. TRPC5-IN-4 can be used for the research of chronic kidney disease (CKD) .
    TRPC5-IN-4
  • HY-N12007

    Others Metabolic Disease
    OAT1/3-IN-1 (compound 7) is a dual inhibitor of OAT1 and OAT3. OAT1/3-IN-1 can reverse the toxicity of Cys-Hg on HEK-OAT1 cells (10 μM) and has a potential protective effect on the kidneys. OAT1/3-IN-1 can be used to study mercury-induced kidney damage .
    OAT1/3-IN-1
  • HY-N12008

    Others Metabolic Disease
    OAT1/3-IN-2 (compound 8) is a dual inhibitor of OAT1 and OAT3. OAT1/3-IN-2 can reverse the toxicity of Cys-Hg on HEK-OAT1 cells (10 μM) and has a potential protective effect on the kidneys. OAT1/3-IN-2 can be used to study mercury-induced kidney damage .
    OAT1/3-IN-2
  • HY-N1960

    Ophiopogonin A is a natural steroid that can be found in Ophiopogon japonicus. Ophiopogonin A dose-dependently inhibits hemorrhagic shock (HS)-induced tissue damage and apoptosis. ophiopogonin A dose-dependently promotes the phosphorylation of ERK in HS kidney tissues and hypoxia-treated HK-2 cells .
    Ophiopogonin A
  • HY-N7741

    Dehydrozaluzanin C-derivative

    Others Infection Inflammation/Immunology
    Isozaluzanin C (Dehydrozaluzanin c-derivative) is an anti-inflammatory agent that can be isolated from Saussurea lappa and has immunomodulatory effects. Isozaluzanin C improves tissue damage (lung, kidney, and liver) and excessive inflammation in mice induced by LPS (HY-D1056) or CRKP infection. Isozaluzanin C can be used in the study of bacterial infections and sepsi .
    Isozaluzanin C
  • HY-100594
    EUK-134
    1 Publications Verification

    EUK-134, a synthetic superoxide dismutase and catalase mimetic, protects rat kidneys from ischemia-reperfusion-induced damage. EUK-134 is a superoxide dismutase (SOD) mimetics (SODm) with catalase activity. EUK-134 is a mitoprotective antioxidant. EUK-134 reduces the expression of NF-κB, MDA level, and protein carbonylation in H9C2 cells .
    EUK-134
  • HY-155194

    Others Inflammation/Immunology
    P2X7 receptor antagonist-4 (Compound 14a) is a P2X7R antagonist. The P2X7 receptor antagonist-4 values of P2X7R IC50 in human and mouse are 64.7 and 10.1 nM, respectively. P2X7 receptor antagonist-4 can inhibit the activation of NLRP3 inflammasome, thereby inhibiting the expression of caspase-1, gasdermin D, IL-1β and IL-18 in the damaged kidney of sepsis mice .
    P2X7 receptor antagonist-4
  • HY-Y0966
    Glycine
    4 Publications Verification

    Endogenous Metabolite iGluR VEGFR Small Interfering RNA (siRNA) Neurological Disease
    Glycine is an inhibitory neurotransmitter in the CNS and also acts as a co-agonist along with glutamate, facilitating an excitatory potential at the glutaminergic N-methyl-D-aspartic acid (NMDA) receptors. Glycine is orally active. Glycine can be used to study cell protection, cancer, neurological diseases, and angiogenesis .
    Glycine

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