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氯丹和七氯在大鼠肝微粒体中代谢具有对映体选择性。

Chlordane and heptachlor are metabolized enantioselectively by rat liver microsomes.

机构信息

Department of Occupational and Environmental Health, College of Public Health, The University of Iowa, Iowa City, Iowa, USA.

出版信息

Environ Sci Technol. 2013 Aug 6;47(15):8913-22. doi: 10.1021/es401916a. Epub 2013 Jul 10.

Abstract

Chlordane, heptachlor, and their metabolites are chiral persistent organic pollutants that undergo enantiomeric enrichment in the environment. This study investigated the enantioselective metabolism of both chlordane isomers and heptachlor, major components of technical chlordane, by liver microsomes prepared from male rats treated with corn oil (CO) or inducers of CYP2B (PB; phenobarbital) and CYP3A enzymes (DX; dexamethasone), isoforms induced by chlordane treatment. The extent of the metabolism of all three parent compounds was dependent on the microsomal preparation used and followed the rank order PB > DX > CO. The mass balances ranged from 49 to 130% of the parent compound added to the microsomal incubations. Both cis- and trans-chlordane were enantioselectively metabolized to oxychlordane (EF = 0.45-0.89) and 1,2-dichlorochlordene (EF = 0.42-0.90). Heptachlor was metabolized enantioselectively, with heptachlor epoxide B (EF = 0.44-0.54) being the only metabolite. Interestingly, the direction on the enrichment for oxychlordane, 1,2-dichlorochlordene, and heptachlor epoxide differed depending on the microsomal preparation. These findings demonstrate that the direction and extent of the enantioselective metabolism of both chlordane isomers and heptachlor is P450 isoform-dependent and can be modulated by the induction of P450 enzymes.

摘要

氯丹、七氯及其代谢物是手性持久性有机污染物,在环境中会发生对映体富集。本研究通过雄性大鼠肝微粒体(用玉米油(CO)或 CYP2B 诱导剂(PB;苯巴比妥)和 CYP3A 酶(DX;地塞米松)处理后制备的),研究了技术氯丹中的主要成分氯丹对映体和顺式氯丹和七氯的对映体选择性代谢。所有三种母体化合物的代谢程度取决于所用的微粒体制备物,其遵循 PB>DX>CO 的顺序。质量平衡范围为加入到微粒体孵育物中的母体化合物的 49%至 130%。顺式和反式氯丹均被对映选择性代谢为氧氯丹(EF=0.45-0.89)和 1,2-二氯氯丹(EF=0.42-0.90)。七氯被对映选择性代谢,只有七氯环氧化物 B(EF=0.44-0.54)是代谢产物。有趣的是,氧氯丹、1,2-二氯氯丹和七氯环氧化物的富集方向因微粒体制备物而异。这些发现表明,两种氯丹对映体和顺式氯丹和七氯的对映体选择性代谢的方向和程度均依赖于 P450 同工酶,并且可以通过 P450 酶的诱导进行调节。

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