6 Results for "

microsomal fraction

" in MedChemExpress (MCE) Product Catalog:
Products (6)

6 Results for "microsomal fraction" in MCE Product Catalog:

Cat. No.: HY-112487
CAS No.: 78934-83-5
Purity:  99.35%
Target:  

Acyltransferase

Research Areas:  

Metabolic Disease

Sandoz 58-035 is a selective acyl-CoA:cholesterol acyltransferase (ACAT) inhibitor. Sandoz 58-035 inhibits this enzyme in intact cells and isolated microsomal fractions. Sandoz 58-035 blocks the esterification of exogenous vesicle-derived cholesterol and the incorporation of oleic acid into cellular cholesterol esters, reducing the formation and accumulation of cholesterol esters. Sandoz 58-035 causes a slight increase in cellular free cholesterol, and at high concentrations, it also causes a slight reduction in overall cellular protein synthesis. Sandoz 58-035 can be used in studies related to cellular cholesterol regulation .
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Cat. No.: HY-177148
CAS No.: 134867-97-3
Research Areas:  

Cardiovascular Disease

G256 is a cytochrome P450 substrate with antiarrhythmic properties. In recombinant monooxygenase systems, G256 undergoes N-hydroxylation of the terminal aminoguanidine nitrogen, as well as ring hydroxylation catalyzed by cytochrome P4502C3. G256 generates N-hydroxyaminoguanidine metabolites via N-hydroxylation in liver microsomal fractions. G256 produces phenol metabolites through ring hydroxylation in both liver microsomal fractions and recombinant cytochrome P450 systems. G256 can be used for research on arrhythmias .
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Cat. No.: HY-177148A
CAS No.: 134867-96-2
Research Areas:  

Cardiovascular Disease

G256 dihydrochloride is a cytochrome P450 substrate with antiarrhythmic properties. In recombinant monooxygenase systems, G256 dihydrochloride undergoes N-hydroxylation of the terminal aminoguanidine nitrogen, as well as ring hydroxylation catalyzed by cytochrome P4502C3. G256 dihydrochloride generates N-hydroxyaminoguanidine metabolites via N-hydroxylation in liver microsomal fractions. G256 dihydrochloride produces phenol metabolites through ring hydroxylation in both liver microsomal fractions and recombinant cytochrome P450 systems. G256 dihydrochloride can be used for research on arrhythmias .
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Cat. No.: HY-131310
CAS No.: 111004-08-1
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

9(S)-HpOTrE is a monohydroperoxy polyunsaturated fatty acid produced by the action of 5-lipoxygenase (5-LO) on α-linolenic acid. It can be further metabolized to colnelenic acid by a divinyl ether synthase activity found in garlic and potato microsomal fractions. 9(S)-HpOTrE also serves as a substrate for further oxidation by both soybean and potato LOs, resulting in the formation of 9,16-dihydroperoxy acid.The suicide inactivation of LOs when 9(S)-HpOTrE is used as a substrate is thought to occur via formation of an unstable epoxide.
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Cat. No.: HY-135225
CAS No.: 75903-70-7
Research Areas:  

Others

CH 402 is an antioxidant and radioprotective agent. CH 402 reduces the level of 60Co-γ ray-induced lipid peroxidation in in vitro liver microsomal preparations. CH 402 inhibits ascorbate-induced non-enzymatic lipid peroxidation in brain homogenates and microsomal fractions of rodents .
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Cat. No.: HY-177148B
CAS No.: 136623-15-9
Research Areas:  

Cardiovascular Disease

(E/Z)-G256 (dihydrochloride) is an isomer of G256 dihydrochloride (HY-177148A). G256 dihydrochloride is a cytochrome P450 substrate with antiarrhythmic properties. In recombinant monooxygenase systems, G256 dihydrochloride undergoes N-hydroxylation of the terminal aminoguanidine nitrogen, as well as ring hydroxylation catalyzed by cytochrome P4502C3. G256 dihydrochloride generates N-hydroxyaminoguanidine metabolites via N-hydroxylation in liver microsomal fractions. G256 dihydrochloride produces phenol metabolites through ring hydroxylation in both liver microsomal fractions and recombinant cytochrome P450 systems. G256 dihydrochloride can be used for research on arrhythmias .
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