Mechanisms of carbon tetrachloride hepatotoxicity.

G A Clawson
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引用次数: 237

Abstract

CCI4 has long served as a model compound for study of hepatotoxicity. While its simple chemical structure held the allure of a simple mechanism of action, decades of study have disclosed a complex series of responses. Significant early damage following CCI4 administration includes: (1) A number of alterations affecting Ca2+ homeostasis, which conspire to redistribute cellular Ca2+ from endoplasmic reticulum and mitochondria to cytosol, and (2) hypomethylation of ribosomal RNA, which disrupts protein synthesis. The genesis of the injury in vivo appears to encompass early 'metabolism-dependent' effects (which appear to be largely independent of CCI4 concentration at the levels studied) and later 'metabolism-independent' effects, which parallel CCI4 concentration. The inability of injured hepatocytes to respond anabolically to early damage may be a critical feature in CCI4 hepatotoxicity.

四氯化碳肝毒性机制。
CCI4一直是肝毒性研究的模型化合物。虽然其简单的化学结构具有简单作用机制的吸引力,但数十年的研究已经揭示了一系列复杂的反应。服用CCI4后的早期损伤包括:(1)影响Ca2+稳态的一些改变,这些改变共同使细胞内Ca2+从内质网和线粒体重新分配到细胞质;(2)核糖体RNA的低甲基化,破坏蛋白质合成。体内损伤的发生似乎包括早期的“代谢依赖”效应(在研究水平上似乎在很大程度上独立于CCI4浓度)和后来的“代谢独立”效应,与CCI4浓度平行。损伤肝细胞无法对早期损伤进行合成代谢反应可能是CCI4肝毒性的一个关键特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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