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Results for "

11,12-EET

" in MedChemExpress (MCE) Product Catalog:

5

Inhibitors & Agonists

2

Natural
Products

2

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-130494

    11,12-EET

    NOD-like Receptor (NLR) Cardiovascular Disease Inflammation/Immunology
    (±)11(12)-EET is a NLRP3 inflammasome inhibitor. (±)11(12)-EET can be used for the research of anti-inflammatory, angiogenic and cardioprotective .
    (±)<em>11(12)-EET</em>
  • HY-130494S

    (±)11,12-EET-d11

    NOD-like Receptor (NLR) Cardiovascular Disease Inflammation/Immunology
    (±)11(12)-EET-d11 is the deuterium labeled (±)11(12)-EET. (±)11(12)-EET is a NLRP3 inflammasome inhibitor. (±)11(12)-EET can be used for the research of anti-inflammatory, angiogenic and cardioprotective[1][2][3][4][6].
    (±)<em>11(12)-EET</em>-d11
  • HY-139938S

    Isotope-Labeled Compounds Others
    (±)11(12)-EET-d11 methyl ester is the deuterium labeled (±)11(12)-EET methyl ester[1].
    (±)<em>11(12)-EET</em>-d11 methyl ester
  • HY-N12962

    Others Others
    11S(12R)-EET is a dominant enantiomer of epoxytrienoic acid (EET) that is metabolized at a higher rate in rat organs. It shows enantiomeric-dependent reaction selectivity in hydration, especially in the case of 11,12-EET, where water addition is non-regioselective, while in 8,9-EET, water addition occurs mainly at the C9 position. In addition, 11S(12R)-EET generates diol products with specific stereochemistry through enzymatic hydration reactions, which are affected by the selective recognition of epoxidases, reaction conversion rates, and substrate binding parameters .
    11S(12R)-EET
  • HY-N12962A

    Others Others
    11R(12S)-EET is a cis-epoxytrienoic acid (EETs) derivative that is metabolized by cytoplasmic cyclooxygenases. Studies have shown that 14(R), 15(S)-, 11(S),12(R)-, and 8(S),9(R)-EETs are metabolized at significantly higher rates than their enantiomers. Enzyme-catalyzed hydration revealed that water addition was non-regioselective for the 11,12-EET enantiomers, whereas water addition occurred primarily at the C9 position for both enantiomers of 8,9-EET. These results suggest that the metabolic properties of 11R(12S)-EET and other EET enantiomers in enzyme-catalyzed processes are significantly affected by their stereostructures .
    11R(12S)-EET

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