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The Role of Mitochondria in the Pathogenesis of Type 2 Diabetes

机译:线粒体在2型糖尿病发病机理中的作用

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摘要

The pathophysiology of type 2 diabetes mellitus (DM) is varied and complex. However, the association of DM with obesity and inactivity indicates an important, and potentially pathogenic, link between fuel and energy homeostasis and the emergence of metabolic disease. Given the central role for mitochondria in fuel utilization and energy production, disordered mitochondrial function at the cellular level can impact whole-body metabolic homeostasis. Thus, the hypothesis that defective or insufficient mitochondrial function might play a potentially pathogenic role in mediating risk of type 2 DM has emerged in recent years. Here, we summarize current literature on risk factors for diabetes pathogenesis, on the specific role(s) of mitochondria in tissues involved in its pathophysiology, and on evidence pointing to alterations in mitochondrial function in these tissues that could contribute to the development of DM. We also review literature on metabolic phenotypes of existing animal models of impaired mitochondrial function. We conclude that, whereas the association between impaired mitochondrial function and DM is strong, a causal pathogenic relationship remains uncertain. However, we hypothesize that genetically determined and/or inactivity-mediated alterations in mitochondrial oxidative activity may directly impact adaptive responses to overnutrition, causing an imbalance between oxidative activity and nutrient load. This imbalance may lead in turn to chronic accumulation of lipid oxidative metabolites that can mediate insulin resistance and secretory dysfunction. More refined experimental strategies that accurately mimic potential reductions in mitochondrial functional capacity in humans at risk for diabetes will be required to determine the potential pathogenic role in human insulin resistance and type 2 DM.
机译:2型糖尿病(DM)的病理生理学是多种多样且复杂的。然而,DM与肥胖和缺乏运动的联系表明燃料和能量稳态与代谢疾病的出现之间存在重要的,潜在的致病性联系。鉴于线粒体在燃料利用和能量生产中的核心作用,细胞水平的线粒体功能紊乱会影响全身代谢稳态。因此,近年来提出了以下假设:线粒体功能缺陷或不足可能在介导2型DM的风险中起潜在的致病作用。在这里,我们总结了有关糖尿病发病机制的危险因素,线粒体在参与其病理生理学的组织中的特定作用以及有关这些组织中线粒体功能改变的可能有助于糖尿病发展的证据。我们还审查了线粒体功能受损的现有动物模型的代谢表型的文献。我们得出的结论是,尽管线粒体功能受损与DM之间的关联性很强,但因果关系尚不确定。然而,我们假设线粒体氧化活性的遗传确定和/或非活动性介导的改变可能直接影响对营养过剩的适应性反应,从而导致氧化活性和养分负载之间的失衡。这种失衡可能继而导致脂质氧化代谢产物的长期积累,可以介导胰岛素抵抗和分泌功能障碍。为了确定潜在的致人胰岛素抵抗和2型DM的致病作用,需要更精确的实验策略来准确模拟潜在的糖尿病患者线粒体功能降低。

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