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维甲酸-外源性物质相互作用:阴阳之道。

Retinoid-xenobiotic interactions: the Ying and the Yang.

作者信息

Shmarakov Igor O

机构信息

Department of Biochemistry and Biotechnology, Chernivtsi National University, Chernivtsi, Ukraine.

出版信息

Hepatobiliary Surg Nutr. 2015 Aug;4(4):243-67. doi: 10.3978/j.issn.2304-3881.2015.05.05.

Abstract

The literature provides compelling evidence pointing to tight metabolic interactions between retinoids and xenobiotics. These are extensive and important for understanding xenobiotic actions in the body. Within the body, retinoids affect xenobiotic metabolism and actions and conversely, xenobiotics affect retinoid metabolism and actions. This article summarizes data that establish the importance of retinoid-dependent metabolic pathways for sustaining the body's responses to xenobiotic exposure, including the roles of all-trans- and 9-cis-retinoic acid for protecting mammals from harmful xenobiotic effects and for ensuring xenobiotic elimination from the body. This review will also consider molecular mechanisms underlying xenobiotic toxicity focusing on how this may contribute to retinoid deficiency and disruption of normal retinoid homeostasis. Special attention is paid to xenobiotic molecular targets (nuclear receptors, regulatory proteins, enzymes, and transporters) which affect retinoid metabolism and signaling.

摘要

文献提供了令人信服的证据,表明类视黄醇与外源性物质之间存在紧密的代谢相互作用。这些相互作用广泛且对于理解外源性物质在体内的作用很重要。在体内,类视黄醇影响外源性物质的代谢和作用,反之,外源性物质也影响类视黄醇的代谢和作用。本文总结了一些数据,这些数据证实了依赖类视黄醇的代谢途径对于维持机体对外源性物质暴露的反应的重要性,包括全反式视黄酸和9-顺式视黄酸在保护哺乳动物免受有害外源性物质影响以及确保外源性物质从体内清除方面的作用。本综述还将考虑外源性物质毒性的分子机制,并重点关注其如何导致类视黄醇缺乏和正常类视黄醇稳态的破坏。特别关注影响类视黄醇代谢和信号传导的外源性物质分子靶点(核受体、调节蛋白、酶和转运蛋白)。

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