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老年人线粒体功能和自噬:运动的影响。

Mitochondrial Function and Mitophagy in the Elderly: Effects of Exercise.

机构信息

Institute of Biomedicine (IBIOMED), University of León, León, Spain.

Institute of Biological Sciences and Health, Federal University of Viçosa-Campus Florestal, Florestal, MG, Brazil.

出版信息

Oxid Med Cell Longev. 2017;2017:2012798. doi: 10.1155/2017/2012798. Epub 2017 Aug 16.

Abstract

Aging is a natural, multifactorial and multiorganic phenomenon wherein there are gradual physiological and pathological changes over time. Aging has been associated with a decrease of autophagy capacity and mitochondrial functions, such as biogenesis, dynamics, and mitophagy. These processes are essential for the maintenance of mitochondrial structural integrity and, therefore, for cell life, since mitochondrial dysfunction leads to an impairment of energy metabolism and increased production of reactive oxygen species, which consequently trigger mechanisms of cellular senescence and apoptotic cell death. Moreover, reduced mitochondrial function can contribute to age-associated disease phenotypes in model organisms and humans. Literature data show beneficial effects of exercise on the impairment of mitochondrial biogenesis and dynamics and on the decrease in the mitophagic capacity associated to aging. Thus, exercise could have effects on the major cell signaling pathways that are involved in the mitochondria quality and quantity control in the elderly. Although it is known that several exercise protocols are able to modify the activity and turnover of mitochondria, further studies are necessary in order to better identify the mechanisms of interaction between mitochondrial functions, aging, and physical activity, as well as to analyze possible factors influencing these processes.

摘要

衰老是一种自然的、多因素的和多器官的现象,随着时间的推移,会出现逐渐的生理和病理变化。衰老是与自噬能力和线粒体功能下降相关的,如生物发生、动态和噬线粒体作用。这些过程对于维持线粒体结构完整性至关重要,因此对于细胞的生命也是至关重要的,因为线粒体功能障碍会导致能量代谢受损和活性氧的产生增加,从而触发细胞衰老和凋亡细胞死亡的机制。此外,线粒体功能的降低可能导致模型生物和人类与年龄相关的疾病表型。文献数据表明,运动对与衰老相关的线粒体生物发生和动力学的损害以及噬线粒体能力的降低具有有益的影响。因此,运动可能对涉及老年人线粒体质量和数量控制的主要细胞信号通路产生影响。尽管已知几种运动方案能够改变线粒体的活性和周转率,但仍需要进一步的研究,以便更好地确定线粒体功能、衰老和体力活动之间的相互作用机制,并分析可能影响这些过程的因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba3a/5576425/58f5c0c12bd0/OMCL2017-2012798.001.jpg

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