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Results for "

phenolic mediator

" in MedChemExpress (MCE) Product Catalog:

7

Inhibitors & Agonists

4

Natural
Products

1

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-W002116

    TRP Channel COX Phosphatase Bacterial Infection Metabolic Disease Inflammation/Immunology Cancer
    Methyl syringate is a selective TRPA1 agonist. Methyl syringate regulates food intake and gastric emptying through a TRPA1-mediated pathway. Methyl syringate is an efficient phenolic mediator for bacterial and fungal laccases. Methyl syringate is a chemical marker of Asphodel monofloral honey. Methyl syringate contributes to the antibacterial activity of honey. Methyl syringate inhibits aflatoxin production. Methyl syringate can contribute to weight suppression. Methyl syringate can be studies for cancer prevention (e.g. lung cancer), suppression of hypoxia-induced inflammatory response and tumorigenesis .
    Methyl syringate
  • HY-14570

    Apoptosis Cancer
    Triphen diol is a phenol diol derivative, which has excellent anticancer activity against pancreatic cancer and cholangiocarcinoma, and can induce pancreatic cell apoptosis through two mechanisms, caspase-mediated and caspase-independent .
    Triphen diol
  • HY-N6966
    Ethyl Caffeate
    1 Publications Verification

    NF-κB NO Synthase COX PGE synthase Inflammation/Immunology Cancer
    Ethyl Caffeate is a natural phenolic compound isolated from Bidens pilosa. Ethyl caffeate suppresses NF-κB activation and its downstream inflammatory mediators, inducible nitric oxide synthase (iNOS), cyclooxygenase-2 (COX-2), and prostaglandin E2 (PGE2) in vitro or in mouse skin .
    Ethyl Caffeate
  • HY-N2673

    5-n-Heptadecylresorcinol; AR-C17

    Sirtuin Cardiovascular Disease Metabolic Disease
    5-Heptadecylresorcinol (AR-C17), a phenolic lipid component, is also an orally active mitochondrial protector. 5-Heptadecylresorcinol improves mitochondrial function via sirtuin3 signaling pathway, thus alleviates endothelial cell damage and apoptosis. 5-Heptadecylresorcinol induces sirtuin3-mediated autophagy. 5-Heptadecylresorcinol reduces the atherosclerotic plaques in the aortic root region of mice heart. 5-Heptadecylresorcinol can be used for research of atherosclerosis prevention and obesity .
    5-Heptadecylresorcinol
  • HY-N6966A

    Others Inflammation/Immunology
    Ethyl trans-caffeate is the trans form of Ethyl Caffeate (HY-N6966). Ethyl Caffeate is a natural phenolic compound isolated from Bidens pilosa. Ethyl caffeate suppresses NF-κB activation and its downstream inflammatory mediators, inducible nitric oxide synthase (iNOS), cyclooxygenase-2 (COX-2), and prostaglandin E2 (PGE2) in vitro or in mouse skin .
    Ethyl trans-caffeate
  • HY-W002116S

    TRP Channel COX Phosphatase Bacterial Infection Metabolic Disease Inflammation/Immunology Cancer
    Methyl syringate-d6 is the deuterium labeled Methyl syringate. Methyl syringate is a selective TRPA1agonist. Methyl syringate regulates food intake and gastric emptying through a TRPA1-mediated pathway. Methyl syringate is an efficient phenolic mediator for bacterial and fungal laccases. Methyl syringate is a chemical marker of Asphodel monofloral honey. Methyl syringate contributes to the antibacterial activity of honey. Methyl syringate inhibits aflatoxin production. Methyl syringate can contribute to weight suppression. Methyl syringate can be studies for cancer prevention (e.g. lung cancer), suppression of hypoxia-induced inflammatory response and tumorigenesis .
    Methyl syringate-d6
  • HY-150175

    Fluorescent Dye Inflammation/Immunology
    HKSOX-1 and its derivatives (HKSOX-1r and HKSOX-1m) are novel fluorescent probes designed for highly sensitive and selective detection of the superoxide anion radical (O2 •−) in cellular environments. These probes utilize an aryl trifluoromethanesulfonate group that undergoes O2 •−-mediated cleavage, releasing a free phenol and emitting fluorescence. They demonstrate excellent specificity and sensitivity across various pH ranges, withstand interference from strong oxidants and reductants typical in cellular contexts. HKSOX-1r, optimized for cellular retention, has been effectively employed in diverse assays including confocal imaging, flow cytometry, and zebrafish embryo studies, highlighting its utility in investigating O2 •− roles in inflammation, mitochondrial stress, and other physiological processes .
    HKSOX-1

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