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Results for "

long-chain triglycerides

" in MedChemExpress (MCE) Product Catalog:

4

Inhibitors & Agonists

1

Biochemical Assay Reagents

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-Y1422H

    Environmental Pollutants Biochemical Assay Reagents Lipase Others
    Lipase, Candida cylindracea (Immobilized) is an immobilized hydrolase and biocatalyst with relaxed positional and substrate specificity. Lipase, Candida cylindracea (Immobilized) can target primary and secondary ester bonds to completely hydrolyze triglycerides into fatty acids and glycerol, producing only trace amounts of monoglycerides. Lipase, Candida cylindracea (Immobilized) exhibits chain specificity, with a relatively fast hydrolysis rate for oleic acid and lauric acid chains, and the slowest hydrolysis rate for stearic acid chains. Lipase, Candida cylindracea (Immobilized) shows high catalytic activity toward long-chain triglycerides under the conditions of pH 8.0 and 37°C .
    Lipase,Candida cylindracea (Immobilized)
  • HY-120958

    C24:6n-3

    Endogenous Metabolite Metabolic Disease
    Nisinic acid (C24:6n-3) is a very long chain polyunsaturated fatty acid (VLCPUFA) that is a component of triglycerides and cholesterol esters in mouse and rat testis .
    Nisinic acid
  • HY-167810

    Endogenous Metabolite Biochemical Assay Reagents
    1,3-Dipentadecanoin(C15:0) is a long-chain triglyceride with substrate activity for lipid metabolism studies. 1,3-Dipentadecanoin(C15:0) is used as a model compound for studying the hydrolysis of triglycerides by lipase. 1,3-Dipentadecanoin(C15:0) can help understand the metabolic mechanism of triglycerides in chemical research.
    1,3-Dipentadecanoin(C15:0)
  • HY-186095

    ACSL Family Metabolic Disease
    LP-911888 is an orally active ACSL5/ACSL1 inhibitor, with IC50 values of 1 nM and 3 nM against mouse and human ACSL5, and IC50 values of 2 nM and 9 nM against mouse and human ACSL1, respectively. LP-911888 inhibits intestinal triglyceride uptake; it also reduces body weight and food consumption in diet-induced obese mice, and delays gastric emptying by activating the ileal brake pathway. LP-911888 can be used in studies of diet-induced obesity .
    LP-911888

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