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耐力性离心运动与训练中的有氧代谢适应:从整体到线粒体

Aerobic Metabolic Adaptations in Endurance Eccentric Exercise and Training: From Whole Body to Mitochondria.

作者信息

Touron Julianne, Costes Frédéric, Coudeyre Emmanuel, Perrault Hélène, Richard Ruddy

机构信息

UCA-INRAE, Human Nutrition Unit, ASMS Team, University Clermont Auvergne, Clermont-Ferrand, France.

Service de Médecine du Sport et des Explorations Fonctionnelles, CHU Gabriel Montpied, Clermont-Ferrand, France.

出版信息

Front Physiol. 2021 Jan 27;11:596351. doi: 10.3389/fphys.2020.596351. eCollection 2020.

Abstract

A characteristic feature of eccentric as compared with concentric exercise is the ability to generate greater mechanical loads for lower cardiopulmonary demands. Current evidence concurs to show that eccentric training translates into considerable gains in muscle mass and strength. Less is known, however, regarding its impact on oxygen transport and on factors to be considered for optimizing its prescription and monitoring. This article reviews the existing evidence for endurance eccentric exercise effects on the components of the oxygen transport system from systemic to mitochondria in both humans and animals. In the studies reviewed, specially designed cycle-ergometers or downhill treadmill running were used to generate eccentric contractions. Observations to date indicate that overall, the aerobic demand associated with the eccentric training load was too low to significantly increase peak maximal oxygen consumption. By extension, it can be inferred that the very high eccentric power output that would have been required to solicit a metabolic demand sufficient to enhance peak aerobic power could not be tolerated or sustained by participants. The impact of endurance eccentric training on peripheral flow distribution remains largely undocumented. Given the high damage susceptibility of eccentric exercise, the extent to which skeletal muscle oxygen utilization adaptations would be seen depends on the balance of adverse and positive signals on mitochondrial integrity. The article examines the protection provided by repeated bouts of acute eccentric exercise and reports on the impact of eccentric cycling and downhill running training programs on markers of mitochondrial function and of mitochondrial biogenesis using mostly from animal studies. The summary of findings does not reveal an impact of training on skeletal muscle mitochondrial respiration nor on selected mitochondrial messenger RNA transcripts. The implications of observations to date are discussed within future perspectives for advancing research on endurance eccentric exercise physiological impacts and using a combined eccentric and concentric exercise approach to optimize functional capacity.

摘要

与向心运动相比,离心运动的一个显著特征是能够在较低的心肺需求下产生更大的机械负荷。目前的证据一致表明,离心训练能显著增加肌肉质量和力量。然而,关于其对氧运输以及优化其处方和监测时应考虑的因素的影响,我们了解得较少。本文综述了关于耐力离心运动对人类和动物从全身到线粒体的氧运输系统各组成部分影响的现有证据。在所综述的研究中,使用了专门设计的自行车测力计或下坡跑步机跑步来产生离心收缩。迄今为止的观察表明,总体而言,与离心训练负荷相关的有氧需求过低,无法显著增加峰值最大耗氧量。由此可以推断,参与者无法耐受或维持为引发足以提高峰值有氧功率的代谢需求而所需的非常高的离心功率输出。耐力离心训练对外周血流分布的影响在很大程度上仍未得到充分研究。鉴于离心运动对损伤的易感性较高,骨骼肌氧利用适应性的可见程度取决于线粒体完整性上不利信号和积极信号的平衡。本文研究了重复进行急性离心运动所提供的保护,并报告了离心骑行和下坡跑步训练计划对线粒体功能和线粒体生物发生标志物的影响,这些报告大多来自动物研究。研究结果总结并未揭示训练对骨骼肌线粒体呼吸或所选线粒体信使核糖核酸转录本有影响。本文在未来展望中讨论了迄今为止的观察结果,以推进对耐力离心运动生理影响的研究,并采用离心和向心运动相结合的方法来优化功能能力。

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