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异氟烷与二氯二氟乙烯在人肝微粒体中的相互作用。细胞色素P4502B6在卤代乙烯代谢增强中的作用。

Isoflurane-chlorodifluoroethene interaction in human liver microsomes. Role of cytochrome P4502B6 in potentiation of haloethene metabolism.

作者信息

Baker M T, Olson M J, Wang Y, Ronnenberg W C, Johnson J T, Brady A N

机构信息

Department of Anesthesia, University of Iowa, Iowa City 52242-1181.

出版信息

Drug Metab Dispos. 1995 Jan;23(1):60-4.

PMID:7720526
Abstract

Short-chain saturated halocarbons, including isoflurane and the chlorofluorocarbon substitute HCFC-123, can strongly potentiate the cytochrome P450-dependent oxidation of gaseous haloethenes, such as 2-chloro-1,1-difluoroethene (CDE) and vinyl chloride, in vivo and in vitro. P450 isozyme specificity in this effect is suggested by the fact that the interaction is pronounced in microsomes from rats treated with phenobarbital, but does not occur in microsomes of isoniazid- or beta-naphthoflavone-treated animals. We examined the effect of isoflurane on CDE defluorination in liver microsomes from 10 human organ donors to determine whether saturated halocarbon/haloethene interactions also occur in humans and, if so, to determine the cytochromes P450 involved. Three of the samples exhibited isoflurane-stimulated increases (24, 32, and 41%) in CDE defluorination; isoflurane either inhibited or had no effect on CDE metabolism in the other seven samples. Two samples in which isoflurane potentiated CDE metabolism to the greatest rates had higher coumarin 7-hydroxylase (indicative of CYP2A6), 7-ethoxycoumarin O-deethylase (CYP2B6), and nifedipine oxidase (CYP3A4) activities than the other eight samples. However, all 10 subjects had similar rates of phenacetin O-deethylation (CYP1A2) and chlorzoxazone 6-hydroxylation (CYP2E1). In microsomes from cells transfected with cDNAs coding for individual human P450s, CDE metabolism by CYP2B6 was stimulated (216%) by isoflurane, whereas isoflurane did not stimulate CDE metabolism by human CYP2A6, CYP3A4, CYP2D6, or CYP2E1. Isoflurane highly increased CDE defluorination in purified rat CYP2B1 (470%).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

短链饱和卤代烃,包括异氟烷和氯氟烃替代品HCFC - 123,在体内和体外均能强烈增强细胞色素P450依赖性的气态卤代乙烯(如2 - 氯 - 1,1 - 二氟乙烯(CDE)和氯乙烯)的氧化作用。这种作用中P450同工酶的特异性体现在以下事实上:在用苯巴比妥处理的大鼠微粒体中这种相互作用很明显,但在用异烟肼或β - 萘黄酮处理的动物微粒体中则不会发生。我们检测了异氟烷对10位人体器官捐献者肝脏微粒体中CDE脱氟作用的影响,以确定饱和卤代烃/卤代乙烯相互作用在人体中是否也会发生,如果发生,确定涉及的细胞色素P450。其中三个样本显示异氟烷刺激CDE脱氟增加(分别为24%、32%和41%);在其他七个样本中,异氟烷对CDE代谢有抑制作用或无影响。异氟烷使CDE代谢速率增加最多的两个样本,其香豆素7 - 羟化酶(指示CYP2A6)、7 - 乙氧基香豆素O - 脱乙基酶(CYP2B6)和硝苯地平氧化酶(CYP3A4)的活性高于其他八个样本。然而,所有10位受试者的非那西丁O - 脱乙基作用(CYP1A2)和氯唑沙宗6 - 羟化作用(CYP2E1)速率相似。在转染了编码个体人类P450的cDNA的细胞微粒体中,异氟烷刺激CYP2B6的CDE代谢(增加216%),而异氟烷不会刺激人类CYP2A6、CYP3A4、CYP2D6或CYP2E1的CDE代谢。异氟烷使纯化的大鼠CYP2B1中的CDE脱氟大幅增加(470%)。(摘要截选至250字)

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