RRC ID 51872
著者 Fujino C, Tamura Y, Tange S, Nakajima H, Sanoh S, Watanabe Y, Uramaru N, Kojima H, Yoshinari K, Ohta S, Kitamura S.
タイトル Metabolism of methiocarb and carbaryl by rat and human livers and plasma, and effect on their PXR, CAR and PPARα activities.
ジャーナル J Toxicol Sci
Abstract The oxidative, reductive, and hydrolytic metabolism of methiocarb and the hydrolytic metabolism of carbaryl by liver microsomes and plasma of rats or humans were examined. The effects of the metabolism of methiocarb and carbaryl on their nuclear receptor activities were also examined. When methiocarb was incubated with rat liver microsomes in the presence of NADPH, methiocarb sulfoxide, and a novel metabolite, methiocarb sulfone were detected. Methiocarb sulfoxide was oxidized to the sulfone by liver microsomes and reduced back to methiocarb by liver cytosol. Thus, the interconversion between methiocarb and the sulfoxide was found to be a new metabolic pathway for methiocarb by liver microsomes. The product of methiocarb hydrolysis, which is methylthio-3,5-xylenol (MX), was also oxidized to sulfoxide form by rat liver microsomes. The oxidations were catalyzed by human flavin-containing monooxygenase isoform (FMO1). CYP2C19, which is a human cytochrome P450 (CYP) isoform, catalyzed the sulfoxidations of methiocarb and MX, while CYP1A2 also exhibited oxidase activity toward MX. Methiocarb and carbaryl were not enzymatically hydrolyzed by the liver microsomes, but they were mainly hydrolyzed by plasma and albumin to MX and 1-naphthol, respectively. Both methiocarb and carbaryl exhibited PXR and PPARα agonistic activities; however, methiocarb sulfoxide and sulfone showed markedly reduced activities. In fact, when methiocarb was incubated with liver microsomes, the receptor activities were decreased. In contrast, MX and 1-naphthol showed nuclear receptor activities equivalent to those of their parent carbamates. Thus, the hydrolysis of methiocarb and carbaryl and the oxidation of methiocarb markedly modified their nuclear receptor activities.
巻・号 41(5)
ページ 677-91
公開日 2016-1-1
DOI 10.2131/jts.41.677
PMID 27665777
MeSH Animals Biotransformation COS Cells Carbaryl / blood Carbaryl / metabolism* Carbaryl / toxicity* Chlorocebus aethiops Cholinesterase Inhibitors / metabolism* Cholinesterase Inhibitors / toxicity* Constitutive Androstane Receptor Cytochrome P-450 CYP1A2 / metabolism Cytochrome P-450 CYP2C19 / metabolism Humans Hydrolysis Liver / metabolism* Male Methiocarb / blood Methiocarb / metabolism* Methiocarb / toxicity* Microsomes, Liver / metabolism Oxidation-Reduction PPAR alpha / agonists* PPAR alpha / genetics PPAR alpha / metabolism Pregnane X Receptor Rats, Sprague-Dawley Receptors, Cytoplasmic and Nuclear / agonists* Receptors, Cytoplasmic and Nuclear / genetics Receptors, Cytoplasmic and Nuclear / metabolism Receptors, Steroid / agonists* Receptors, Steroid / genetics Receptors, Steroid / metabolism Transfection
IF 1.737
引用数 7
リソース情報
ヒト・動物細胞 COS-1(RCB0143)