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首页> 外文期刊>Journal of Nutritional Science and Vitaminology >Determinants of disuse-induced skeletal muscle atrophy: exercise and nutrition countermeasures to prevent protein loss.
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Determinants of disuse-induced skeletal muscle atrophy: exercise and nutrition countermeasures to prevent protein loss.

机译:废用性骨骼肌萎缩的决定因素:运动和营养对策,以防止蛋白质损失。

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摘要

Muscle atrophy results from a variety of conditions such as disease states, neuromuscular injuries, disuse, and aging. Absence of gravitational loading during spaceflight or long-term bed rest predisposes humans to undergo substantial loss of muscle mass and, consequently, become unfit and/or unhealthy. Disuse- or inactivity-induced skeletal muscle protein loss takes place by differential modulation of proteolytic and synthetic systems. Transcriptional, translational, and posttranslational events are involved in the regulation of protein synthesis and degradation in myofibers, and these regulatory events are known to be responsive to contractile activity. However, regardless of the numerous studies which have been performed, the intracellular signals that mediate skeletal muscle wasting due to muscular disuse are not completely comprehended. Understanding the triggers of atrophy and the mechanisms that regulate protein loss in unloaded muscles may lead to the development of effective countermeasures such as exercise and dietary intervention. The objective of the present review is to provide a window into the molecular processes that underlie skeletal muscle remodeling and to examine what we know about exercise and nutrition countermeasures designed to minimize muscle atrophy.
机译:肌肉萎缩是由多种疾病导致的,例如疾病状态,神经肌肉损伤,停用和衰老。在太空飞行或长期卧床休息期间缺少重力负载会使人容易遭受肌肉质量的大量损失,因此变得不健康和/或不健康。通过蛋白水解和合成系统的差异调节,发生了由废弃或不活动引起的骨骼肌蛋白质损失。转录,翻译和翻译后事件参与肌纤维蛋白合成和降解的调控,并且已知这些调控事件对收缩活性有反应。但是,无论进行了多少研究,都不能完全理解介导骨骼肌消耗引起的骨骼肌消瘦的细胞内信号。了解萎缩的诱因和调节空腹肌肉蛋白质损失的机制可能会导致开发出有效的对策,例如运动和饮食干预。本综述的目的是为了解构成骨骼肌重塑的分子过程提供一个窗口,并探讨我们对旨在减少肌肉萎缩的运动和营养对策的了解。

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