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Identification of products arising from the metabolism of cis- and trans-chlordane in rat liver microsomes in vitro: Outline of a possible metabolic pathway

机译:鉴定大鼠肝微粒体在大鼠肝微粒体中产生的产品产生的产品:可能的代谢途径概述

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摘要

The metabolism of pure cis- and trans- chlordane was studied in vitro. Microsomal preparations from the livers of male rats induced with cis- or trans-chlordane in feed for ten days were used to metabolize the pure compound corresponding to the inducer. Subsequent extraction, column fractionation and combined gas chromatography-mass spectroscopy resulted in the characterization of four compounds not previously reported from an in vitro system.In addition to the substrate, trans-chlordane extracts contained species with the following molecular weights and empirical formulae: m/e 370, c 10 H 5 Cl 7 , heptachlor; m/e 352, c 10 H 6 0C1 6, a hydroxylated chlordene; and m/e 422, c 10 H 6 0C1 8 , a hydroxylated chlordane. Dichlo rochlo rdene, oxychlordane and 1- chloro- 2 -hydroxychlordene chlorohydrin were also present, With the exception of the hydroxychlordane and heptachlor, cis - chlordane extracts contained all of the metabolites found in the trans-incubates. Additionally, a fully saturated compound m/e 372, c 10 H 7 c1 7, a dihydroheptachlor, was present. The 1, 2-trans-dihydrodiol of heptachlor found in previous in vitro incubates of cis-chlordane was not present in this extract.This information has been incorporated into a proposed route for the biotransformation of the chlordanes that offers an explanation for the observed differences in the metabolism of cis - and trans-chlordane . The pathway is based on the reductive dechlorination of the chlordanes through dihydroheptachlor to dihydrochlordene. Parallel pathways of hydroxylation, desaturation and epoxide formation arise at each of these species and at chlordane itself. The trans-isomer is predominantly desaturated or hydroxylated while the cis-isomer mainly undergoes dehaloge nation.
机译:在体外研究了纯CIS-和转氯烷的代谢。用CIS-或反式氯烷饲料中诱导十天的雄性大鼠肝脏的微粒体制剂用于代谢对应于诱导剂的纯化合物。随后的萃取,柱分级和组合的气相色谱 - 质谱导致先前从体外系统报道的四种化合物的表征。除了基材外,反式氯烷提取物质具有以下分子量和经验公式的物种:M / e 370,C 10 H 5 Cl 7,eptachlor; M / E 352,C 10 H 6 0C1 6,羟基化Chlordene;和M / E 422,C 10 H 6 0C1 8,羟基化氯氮。还存在二氯甲酸罗氏rdene,牛替兰甲烷和1-氯-2-羟基氯醇氯醇,除了羟基氯兰甲烷和庚烷外,CIS - 氯乙烷提取物含有在反式孵育中发现的所有代谢物。另外,存在完全饱和的化合物M / E 372,C 10 H 7 C1 7,二氢庚烷。在此提取物中未存在于先前的Cis-Chlordane的体外孵育中的1,2-反式二氢醇。本提取物已被纳入所提出的碳氟烷基的途径,为观察到的差异提供解释在CIS - 和Trans-Chlordane的新陈代谢。该途径基于氯烷烃通过二氢庚烷的还原脱氯至二羟基oldene。在这些物种中的每一个和氯葡萄酒本身中出现羟基化,去饱和和环氧化物形成的平行途径。反式异构体主要是不饱和的或羟基化,而顺式异构体主要经历Dehaloge Nation。

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