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药物性肝损伤中的线粒体动力学

Mitochondrial Dynamics in Drug-Induced Liver Injury.

作者信息

Ramachandran Anup, Umbaugh David S, Jaeschke Hartmut

机构信息

Department of Pharmacology, Toxicology & Therapeutics, University of Kansas Medical Center, Kansas City, KS 66160, USA.

出版信息

Livers. 2021;1(3):102-115. doi: 10.3390/livers1030010. Epub 2021 Jun 23.

Abstract

Mitochondria have been studied for decades from the standpoint of metabolism and ATP generation. However, in recent years mitochondrial dynamics and its influence on bioenergetics and cellular homeostasis is also being appreciated. Mitochondria undergo regular cycles of fusion and fission regulated by various cues including cellular energy requirements and pathophysiological stimuli, and the network of critical proteins and membrane lipids involved in mitochondrial dynamics is being revealed. Hepatocytes are highly metabolic cells which have abundant mitochondria suggesting a biologically relevant role for mitochondrial dynamics in hepatocyte injury and recovery. Here we review information on molecular mediators of mitochondrial dynamics and their alteration in drug-induced liver injury. Based on current information, it is evident that changes in mitochondrial fusion and fission are hallmarks of liver pathophysiology ranging from acetaminophen-induced or cholestatic liver injury to chronic liver diseases. These alterations in mitochondrial dynamics influence multiple related mitochondrial responses such as mitophagy and mitochondrial biogenesis, which are important adaptive responses facilitating liver recovery in several contexts, including drug-induced liver injury. The current focus on characterization of molecular mechanisms of mitochondrial dynamics is of immense relevance to liver pathophysiology and have the potential to provide significant insight into mechanisms of liver recovery and regeneration after injury.

摘要

几十年来,人们一直从新陈代谢和ATP生成的角度研究线粒体。然而,近年来,线粒体动力学及其对生物能量学和细胞稳态的影响也逐渐受到关注。线粒体通过包括细胞能量需求和病理生理刺激在内的各种信号,经历融合和裂变的循环过程,参与线粒体动力学的关键蛋白质和膜脂网络也逐渐被揭示。肝细胞是高代谢细胞,含有丰富的线粒体,这表明线粒体动力学在肝细胞损伤和恢复中具有生物学相关作用。在此,我们综述了线粒体动力学的分子介质及其在药物性肝损伤中的变化的相关信息。基于目前的信息,很明显线粒体融合和裂变的变化是肝脏病理生理学的标志,从对乙酰氨基酚诱导的或胆汁淤积性肝损伤到慢性肝病。线粒体动力学的这些改变影响多种相关的线粒体反应,如线粒体自噬和线粒体生物发生,这些是在包括药物性肝损伤在内的多种情况下促进肝脏恢复的重要适应性反应。目前对线粒体动力学分子机制的表征研究与肝脏病理生理学密切相关,有可能为损伤后肝脏恢复和再生的机制提供重要见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7b9/8412145/271dc747773c/nihms-1723773-f0001.jpg

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