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脑衰老与神经退行性变:从线粒体角度看

Brain aging and neurodegeneration: from a mitochondrial point of view.

作者信息

Grimm Amandine, Eckert Anne

机构信息

University of Basel, Transfaculty Research Platform, Molecular & Cognitive Neuroscience, Neurobiology Laboratory for Brain Aging and Mental Health, Basel, Switzerland.

University of Basel, Psychiatric University Clinics, Basel, Switzerland.

出版信息

J Neurochem. 2017 Nov;143(4):418-431. doi: 10.1111/jnc.14037. Epub 2017 May 14.

Abstract

Aging is defined as a progressive time-related accumulation of changes responsible for or at least involved in the increased susceptibility to disease and death. The brain seems to be particularly sensitive to the aging process since the appearance of neurodegenerative diseases, including Alzheimer's disease, is exponential with the increasing age. Mitochondria were placed at the center of the 'free-radical theory of aging', because these paramount organelles are not only the main producers of energy in the cells, but also to main source of reactive oxygen species. Thus, in this review, we aim to look at brain aging processes from a mitochondrial point of view by asking: (i) What happens to brain mitochondrial bioenergetics and dynamics during aging? (ii) Why is the brain so sensitive to the age-related mitochondrial impairments? (iii) Is there a sex difference in the age-induced mitochondrial dysfunction? Understanding mitochondrial physiology in the context of brain aging may help identify therapeutic targets against neurodegeneration. This article is part of a series "Beyond Amyloid".

摘要

衰老被定义为与时间相关的渐进性变化积累,这些变化导致或至少参与了对疾病和死亡易感性的增加。大脑似乎对衰老过程特别敏感,因为包括阿尔茨海默病在内的神经退行性疾病的发病率随着年龄的增长呈指数上升。线粒体处于“衰老自由基理论”的核心位置,因为这些至关重要的细胞器不仅是细胞内能量的主要生产者,也是活性氧的主要来源。因此,在本综述中,我们旨在从线粒体的角度审视大脑衰老过程,提出以下问题:(i)衰老过程中大脑线粒体生物能量学和动力学发生了什么变化?(ii)为什么大脑对与年龄相关的线粒体损伤如此敏感?(iii)年龄诱导的线粒体功能障碍是否存在性别差异?在大脑衰老的背景下理解线粒体生理学可能有助于确定针对神经退行性变的治疗靶点。本文是“超越淀粉样蛋白”系列文章的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e591/5724505/4a80a75b4e5c/JNC-143-418-g001.jpg

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