无氧运动与氧化应激:综述。

Richard J Bloomer, Allen H Goldfarb
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引用次数: 273

摘要

氧化应激和随后对细胞蛋白、脂质和核酸的损伤,以及谷胱甘肽系统的变化,都是有氧运动的反应。然而,关于无氧运动诱导的氧化修饰的信息要少得多。最近的证据表明,高强度的无氧运动确实会导致骨骼肌和血液中上述大分子的氧化修饰。此外,慢性无氧运动训练似乎可以诱导适应,以减轻运动引起的氧化应激。这些可能是特定于增加抗氧化防御和/或可能在运动期间和运动后减少促氧化剂的产生。然而,各种各样的运动方案和分析程序已被用于研究与无氧工作有关的氧化应激。因此,除了慢性无氧运动训练导致的适应性外,关于氧化大分子损伤的确切程度和位置的精确结论很难指出。这篇文章综述了无氧运动和氧化应激,提出了单次运动的急性效应和慢性无氧训练的潜在适应性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anaerobic exercise and oxidative stress: a review.

Oxidative stress and subsequent damage to cellular proteins, lipids, and nucleic acids, as well as changes to the glutathione system, are well documented in response to aerobic exercise. However, far less information is available on anaerobic exercise-induced oxidative modifications. Recent evidence indicates that high intensity anaerobic work does result in oxidative modification to the above-mentioned macromolecules in both skeletal muscle and blood. Also, it appears that chronic anaerobic exercise training can induce adaptations that act to attenuate the exercise-induced oxidative stress. These may be specific to increased antioxidant defenses and/or may act to reduce the generation of pro-oxidants during and after exercise. However, a wide variety of exercise protocols and assay procedures have been used to study oxidative stress pertaining to anaerobic work. Therefore, precise conclusions about the exact extent and location of oxidative macromolecule damage, in addition to the adaptations resulting from chronic anaerobic exercise training, are difficult to indicate. This manuscript provides a review of anaerobic exercise and oxidative stress, presenting both the acute effects of a single exercise bout and the potential for adaptations resulting from chronic anaerobic training.

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