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Chiral polychlorinated biphenyls: absorption, metabolism and excretion-a review

机译:手性多氯联苯:吸收,代谢和排泄-综述

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摘要

Seventy eight out of the 209 possible polychlorinated biphenyl (PCB) congeners are chiral, 19 of which exist under ambient conditions as stable rotational isomers that are non-superimposable mirror images of each other. These congeners (C-PCBs) represent up to 6 % by weight of technical PCB mixtures and undergo considerable atropisomeric enrichment in wildlife, laboratory animals, and humans. The objective of this review is to summarize our current knowledge of the processes involved in the absorption, metabolism, and excretion of C-PCBs and their metabolites in laboratory animals and humans. C-PCBs are absorbed and excreted by passive diffusion, a process that, like other physicochemical processes, is inherently not atropselective. In mammals, metabolism by cytochrome P450 (P450) enzymes represents a major route of elimination for many C-PCBs. In vitro studies demonstrate that C-PCBs with a 2,3,6-trichlorosubstitution pattern in one phenyl ring are readily oxidized to hydroxylated PCB metabolites (HO-PCBs) by P450 enzymes, such as rat CYP2B1, human CYP2B6, and dog CYP2B11. The oxidation of C-PCBs is atropselective, thus resulting in a species- and congener-dependent atropisomeric enrichment of C-PCBs and their metabolites. This atropisomeric enrichment of C-PCBs and their metabolites likely plays a poorly understood role in the atropselective toxicity of C-PCBs and, therefore, warrants further investigation.
机译:在209种可能的多氯联苯(PCB)同类物中,有78种是手性的,其中19种在环境条件下以稳定的旋转异构体形式存在,彼此是不可重叠的镜像。这些同类物(C-PCBs)占技术PCB混合物的重量百分比最高为6%,并且在野生动植物,实验动物和人类中经历了相当大的阻转异构体富集。这篇综述的目的是总结我们目前对实验动物和人类中C-PCBs及其代谢物的吸收,代谢和排泄所涉及的过程的认识。 C-PCBs通过被动扩散吸收和排泄,该过程与其他物理化学过程一样,本质上不是阻转性的。在哺乳动物中,细胞色素P450(P450)酶的代谢代表了许多C-PCB消除的主要途径。体外研究表明,在一个苯环中具有2,3,6-三氯取代模式的C-PCBs容易被P450酶(例如大鼠CYP2B1,人CYP2B6和狗CYP2B11)氧化为羟基化PCB代谢产物(HO-PCBs)。 C-PCBs的氧化是对Atropselective的,因此导致C-PCBs及其代谢物的物种和同类元素的阻转异构体富集。 C-PCBs及其代谢产物的这种阻转异构体富集可能在C-PCBs的阻转选择性毒性中起着鲜为人知的作用,因此,有待进一步研究。

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