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线粒体适应和代谢灵活性在肥胖和胰岛素抵抗的病理生理学中的作用:最新综述。

The Role of Mitochondrial Adaptation and Metabolic Flexibility in the Pathophysiology of Obesity and Insulin Resistance: an Updated Overview.

机构信息

First Department of Propaedeutic Internal Medicine, School of Medicine, Laiko General Hospital, National and Kapodistrian University of Athens, Athens, Greece.

Department of Internal Medicine I and Clinical Chemistry, University of Heidelberg, Heidelberg, Germany.

出版信息

Curr Obes Rep. 2021 Sep;10(3):191-213. doi: 10.1007/s13679-021-00434-0. Epub 2021 Apr 10.

Abstract

PURPOSE OF REVIEW

The term "metabolic flexibility" denotes the dynamic responses of the cellular oxidative machinery in order to adapt to changes in energy substrate availability. A progressive loss of this adaptive capacity has been implicated in the development of obesity-related comorbidities. Mitochondria are dynamic intracellular organelles which play a fundamental role in energy metabolism, and the mitochondrial adaptation to environmental challenges may be viewed as the functional component of metabolic flexibility. Herein, we attempt to comprehensively review the available evidence regarding the role of mitochondrial adaptation and metabolic flexibility in the pathogenesis of obesity and related morbidities, namely insulin resistance states and non-alcoholic fatty liver disease (NAFLD).

RECENT FINDINGS

Overall, there is a concrete body of evidence to support the presence of impaired mitochondrial adaptation as a principal component of systemic metabolic inflexibility in conditions related to obesity. There are still many unresolved questions regarding the relationship between the gradual loss of mitochondrial adaptability and the progression of obesity-related complications, such as causality issues, the timely appearance and reversibility of the described disturbances, and the generalizability of the findings to the mitochondrial content of every affected tissue or organ. The evidence regarding the causality between the observed associations remains inconclusive, although most of the available data points towards a bidirectional, potentially mutually amplifying relationship. The spectrum of NAFLD is of particular interest, since functional and pathological changes in the course of its development closely mirror the progression of dysmetabolism, if not constituting a dynamic component of the latter.

摘要

目的综述

“代谢灵活性”一词表示细胞氧化机制的动态反应,以适应能量底物可用性的变化。这种适应能力的逐渐丧失与肥胖相关并发症的发展有关。线粒体是动态的细胞内细胞器,在能量代谢中起着至关重要的作用,线粒体对环境挑战的适应可以被视为代谢灵活性的功能组成部分。在此,我们试图全面综述关于线粒体适应和代谢灵活性在肥胖及其相关并发症(即胰岛素抵抗状态和非酒精性脂肪性肝病(NAFLD))发病机制中的作用的现有证据。

最新发现

总的来说,有大量证据支持在与肥胖相关的情况下,存在系统代谢灵活性受损的线粒体适应不良作为其主要组成部分。关于线粒体适应能力逐渐丧失与肥胖相关并发症进展之间的关系,仍有许多悬而未决的问题,例如因果关系问题、描述的紊乱出现和可逆转性的时间以及这些发现对受影响组织或器官的每个线粒体含量的普遍性。尽管大多数现有数据表明存在双向的、可能相互增强的关系,但关于观察到的关联之间因果关系的证据仍不确定。NAFLD 的范围特别有趣,因为其发展过程中的功能和病理变化如果不是后者的动态组成部分,也紧密反映了代谢紊乱的进展。

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