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Nonalcoholic Fatty Liver Disease: Pathogenesis and Therapeutics from a Mitochondria-Centric Perspective

机译:非酒精性脂肪性肝病:线粒体-中心视角下的发病机制和治疗方法。

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Nonalcoholic fatty liver disease (NAFLD) describes a spectrum of disorders characterized by the accumulation of triglycerides within the liver. The global prevalence of NAFLD has been increasing as the obesity epidemic shows no sign of relenting. Mitochondria play a central role in hepatic lipid metabolism and also are affected by upstream signaling pathways involved in hepatic metabolism. This review will focus on the role of mitochondria in the pathophysiology of NAFLD and touch on some of the therapeutic approaches targeting mitochondria as well as metabolically important signaling pathways. Mitochondria are able to adapt to lipid accumulation in hepatocytes by increasing rates of beta-oxidation; however increased substrate delivery to the mitochondrial electron transport chain (ETC) leads to increased reactive oxygen species (ROS) production and eventually ETC dysfunction. Decreased ETC function combined with increased rates of fatty acid beta-oxidation leads to the accumulation of incomplete products of beta-oxidation, which combined with increased levels of ROS contribute to insulin resistance. Several related signaling pathways, nuclear receptors, and transcription factors also regulate hepatic lipid metabolism, many of which are redox sensitive and regulated by ROS.
机译:非酒精性脂肪肝疾病(NAFLD)描述了一系列以肝脏内甘油三酸酯的积累为特征的疾病。由于肥胖病的流行没有缓和的迹象,因此,NAFLD的全球患病率一直在上升。线粒体在肝脂质代谢中起着核心作用,并且还受肝代谢中涉及的上游信号通路的影响。本文将重点探讨线粒体在NAFLD病理生理中的作用,并探讨针对线粒体的某些治疗方法以及重要的代谢信号通路。线粒体能够通过增加β-氧化的速率来适应肝细胞中脂质的积累。然而,底物向线粒体电子传输链(ETC)的传递增加导致活性氧(ROS)产生增加,最终导致ETC功能障碍。 ETC功能下降与脂肪酸β-氧化速率增加相结合会导致β-氧化不完全产物的积聚,这与ROS水平升高相结合会导致胰岛素抵抗。几种相关的信号传导途径,核受体和转录因子也调节肝脂质代谢,其中许多对氧化还原敏感并受ROS调节。

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