A potential biomarker of isofenphos-methyl in humans: A chiral view

Isofenphos-methyl (IFP) is a very active and persistent chiral insecticide. However, IFP has lower activity against acetylcholinesterases (AChEs). Previously, it was confirmed that phosphorothioate organophosphorus pesticides with N-alkyl (POPN) require activation by oxidative desulfuration and N-de...

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Veröffentlicht in:Environment international 2019-06, Vol.127, p.694-703
Hauptverfasser: Gao, Beibei, Zhao, Shuangshuang, Zhang, Zhaoxian, Li, Lianshan, Hu, Kunming, Kaziem, Amir E., He, Zongzhe, Hua, Xiude, Shi, Haiyan, Wang, Minghua
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Sprache:eng
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Zusammenfassung:Isofenphos-methyl (IFP) is a very active and persistent chiral insecticide. However, IFP has lower activity against acetylcholinesterases (AChEs). Previously, it was confirmed that phosphorothioate organophosphorus pesticides with N-alkyl (POPN) require activation by oxidative desulfuration and N-dealkylation. In this work, we demonstrated that IFP could be metabolized in human liver microsomes to isofenphos-methyl oxon (IFPO, 52.7%), isocarbophos (ICP, 14.2%) and isocarbophos oxon (ICPO, 11.2%). It was found that (R)-IFP was preferentially degraded compared to the (S)-enantiomer, and the enantiomeric fraction (EF) value reached 0.61 at 60 min. However, (S)-enantiomers of the three metabolites, were degraded preferentially, and the EF values ranged from 0.34 to 0.45. Cytochrome P450 (CYP) isoforms CYP3A4, CYP2E1, and CYP1A2 and carboxylesterase enzyme have an essential role in the enantioselective metabolism of IFP; but, the enzymes that participate in the degradation of IFP metabolites are different. The AChE inhibition bioassay indicated that ICPO is the only effective inhibitor of AChE. The covalent molecular docking has proposed that the metabolites of IFP and its analogs after N-dealkylation and oxidative desulfuration will possess the highest inhibitory activity against AChE. This study is the first to demonstrate that ICPO can be regarded as a potential biomarker for the biomonitoring of IFP and ICP exposure in humans. [Display omitted] •Three chiral metabolites of IFP were found in human liver microsomes.•Enantioselectivity of IFP enantiomers were relied on the cooperation of various CYPs.•Desulfuration and N-dealkylation increase the inhibition activity of OPs to AChEs.•A potential biomarker of isofenphos-methyl in human liver microsomes was confirmed.
ISSN:0160-4120
1873-6750
DOI:10.1016/j.envint.2019.04.018