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Redox Mechanism of Reactive Oxygen Species in Exercise

Frontiers in Physiology · 2016 · Vol. 7 · pp. 486–486
Feng J. HeJuan LiZewen LiuChia-Chen ChuangYang Wen-geLi Zuo

Abstract

It is well known that regular exercise can benefit health by enhancing antioxidant defenses in the body. However, unaccustomed and/or exhaustive exercise can generate excessive reactive oxygen species (ROS), leading to oxidative stress-related tissue damages and impaired muscle contractility. ROS are produced in both aerobic and anaerobic exercise. Mitochondria, NADPH oxidases and xanthine oxidases have all been identified as potential contributors to ROS production, yet the exact redox mechanisms underlying exercise-induced oxidative stress remain elusive. Interestingly, moderate exposure to ROS is necessary to induce body's adaptive responses such as the activation of antioxidant defense mechanisms. Dietary antioxidant manipulation can also reduce ROS levels and muscle fatigue, as well as enhance exercise recovery. To elucidate the complex role of ROS in exercise, this review updates on new findings of ROS origins within skeletal muscles associated with various types of exercises such as endurance, sprint and mountain climbing. In addition, we will examine the corresponding antioxidant defense systems as well as dietary manipulation against damages caused by ROS.

Exercise and Physiological ResponsesMuscle metabolism and nutritionCardiovascular and exercise physiologyReactive oxygen speciesOxidative stressAntioxidantMitochondrial ROSMitochondrionAnaerobic exerciseXanthine oxidaseChemistryOxidative phosphorylationSkeletal muscle

Funding

  • China Scholarship Council
  • China University of Geosciences
Citations
362
FWCI
32.01
field-weighted impact
References
138
Percentile
100%
vs. same field & year
Citations per year
References
Influence of exercise and fiber type on antioxidant enzyme activity in rat skeletal muscle
American Journal of Physiology-Regulatory, Integrative and Comparative Physiology · 1994 · 370 citations
Phosphorylation Meets Ubiquitination: The Control of NF-κB Activity
Annual Review of Immunology · 2000 · 4,725 citations
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