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线粒体应激与糖尿病神经病变的发病机制

Mitochondrial stress and the pathogenesis of diabetic neuropathy.

作者信息

Fernyhough Paul, Roy Chowdhury Subir K, Schmidt Robert E

机构信息

Division of Neurodegenerative Disorders, St Boniface Hospital Research Centre, R4046 - 351 Taché Avenue, Winnipeg, MB R2H 2A6, Canada and Department of Pharmacology & Therapeutics, University of Manitoba, Winnipeg, MB, Canada, Tel: (204) 235 3692.

出版信息

Expert Rev Endocrinol Metab. 2010 Jan 1;5(1):39-49. doi: 10.1586/eem.09.55.

Abstract

Diabetic neuropathy is a major complication of diabetes that affects the sensory and autonomic nervous systems and leads to significant morbidity and impact on quality of life of patients. Mitochondrial stress has been proposed as a major mediator of neurodegeneration in diabetes. This review briefly summarizes the nature of sensory and autonomic nerve dysfunction and presents these findings in the context of diabetes-induced nerve degeneration mediated by alterations in mitochondrial ultrastructure, physiology and trafficking. Diabetes-induced dysfunction in calcium homeostasis is discussed at length and causative associations with sub-optimal mitochondrial physiology are developed. It is clear that across a range of complications of diabetes that mitochondrial physiology is impaired, in general a reduction in electron transport chain capability is apparent. This abnormal activity may predispose mitochondria to generate elevated reactive oxygen species (ROS), although experimental proof remains lacking, but more importantly will deleteriously alter the bioenergetic status of neurons. It is proposed that the next five years of research should focus on identifying changes in mitochondrial phenotype and associated cellular impact, identifying sources of ROS in neurons and analyzing mitochondrial trafficking under diabetic conditions.

摘要

糖尿病性神经病变是糖尿病的一种主要并发症,会影响感觉神经系统和自主神经系统,并导致显著的发病率,对患者的生活质量产生影响。线粒体应激被认为是糖尿病神经退行性变的主要介导因素。本综述简要总结了感觉神经和自主神经功能障碍的性质,并在由线粒体超微结构、生理学和运输改变介导的糖尿病性神经变性的背景下呈现这些发现。详细讨论了糖尿病引起的钙稳态功能障碍,并阐述了其与线粒体生理学欠佳的因果关系。很明显,在糖尿病的一系列并发症中,线粒体生理学均受到损害,总体而言,电子传递链能力明显下降。这种异常活动可能使线粒体易于产生升高的活性氧(ROS),尽管仍缺乏实验证据,但更重要的是,它将有害地改变神经元的生物能量状态。建议未来五年的研究应集中于确定线粒体表型的变化及相关的细胞影响,确定神经元中ROS的来源,并分析糖尿病条件下的线粒体运输。

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