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调节对耐力训练适应性反应的营养策略。

Nutritional strategies to modulate the adaptive response to endurance training.

作者信息

Hawley John A

机构信息

Exercise & Nutrition Research, School of Medical Sciences, RMIT University, Bundoora, VIC, Australia.

出版信息

Nestle Nutr Inst Workshop Ser. 2013;75:1-14. doi: 10.1159/000345813. Epub 2013 Apr 16.

Abstract

In recent years, advances in molecular biology have allowed scientists to elucidate how endurance exercise training stimulates skeletal muscle remodeling (i.e. promotes mitochondrial biogenesis). A growing field of interest directly arising from our understanding of the molecular bases of training adaptation is how nutrient availability can alter the regulation of many contraction-induced events in muscle in response to endurance exercise. Acutely manipulating substrate availability can exert profound effects on muscle energy stores and patterns of fuel metabolism during exercise, as well as many processes activating gene expression and cell signaling. Accordingly, such interventions when repeated over weeks and months have the potential to modulate numerous adaptive processes in skeletal muscle that ultimately drive the phenotype-specific characteristics observed in highly trained athletes. In this review, the molecular and cellular events that occur in skeletal muscle during and after endurance exercise are discussed and evidence provided to demonstrate that nutrient availability plays an important role in modulating many of the adaptive responses to training. Emphasis is on human studies that have determined the regulatory role of muscle glycogen availability on cell metabolism, endurance training capacity and performance.

摘要

近年来,分子生物学的进展使科学家能够阐明耐力运动训练如何刺激骨骼肌重塑(即促进线粒体生物发生)。基于我们对训练适应性分子基础的理解,一个日益受到关注的领域是营养物质的可利用性如何改变肌肉中许多收缩诱导事件的调节,以应对耐力运动。急性操纵底物的可利用性可对运动期间的肌肉能量储备和燃料代谢模式以及许多激活基因表达和细胞信号传导的过程产生深远影响。因此,当在数周和数月内重复进行此类干预时,有可能调节骨骼肌中的众多适应性过程,这些过程最终驱动在高水平训练运动员中观察到的特定表型特征。在这篇综述中,我们讨论了耐力运动期间和之后骨骼肌中发生的分子和细胞事件,并提供了证据证明营养物质的可利用性在调节许多训练适应性反应中起着重要作用。重点是已确定肌肉糖原可利用性对细胞代谢、耐力训练能力和表现的调节作用的人体研究。

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