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Shan L, Wang B, Gao G, Cao W, Zhang Y. l-Arginine supplementation improves antioxidant defenses through l-arginine/nitric oxide pathways in exercised rats. J Appl Physiol (1985) 2013; 115:1146-55. [DOI: 10.1152/japplphysiol.00225.2013] [Citation(s) in RCA: 35] [Impact Index Per Article: 2.9] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/13/2022] Open
Abstract
l-Arginine (l-Arg) supplementation has been shown to enhance physical exercise capacity and delay onset of fatigue. This work investigated the potential beneficial mechanism(s) of l-Arg supplementation by examining its effect on the cellular oxidative and nitrosative stress pathways in the exercised rats. Forty-eight rats were randomly divided into six groups: sedentary control; sedentary control with l-Arg treatment; endurance training (daily swimming training for 8 wk) control; endurance training with l-Arg treatment; an exhaustive exercise (one time swimming to fatigue) control; and an exhaustive exercise with l-Arg treatment. l-Arg (500 mg/kg body wt) or saline was given to rats by intragastric administration 1 h before the endurance training and the exhaustive swimming test. Expression levels and activities of the l-Arg/nitric oxide (NO) pathway components and parameters of the oxidative stress and antioxidant defense capacity were investigated in l-Arg-treated and control rats. The result show that the l-Arg supplementation completely reversed the exercise-induced activation of NO synthase and superoxide dismutase, increased l-Arg transport capacity, and increased NO and anti-superoxide anion levels. These data demonstrate that l-Arg supplementation effectively reduces the exercise-induced imbalance between oxidative stress and antioxidant defense capacity, and this modulation is likely mediated through the l-Arg/NO pathways. The findings of this study improved our understanding of how l-Arg supplementation prevents elevations of reactive oxygen species and favorably enhances the antioxidant defense capacity during physical exercise.
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Affiliation(s)
- Lingling Shan
- Department of Biochemistry Pharmacy, School of Chemistry and Life Science, SuZhou University, SuZhou, China; and
| | - Bin Wang
- Department of Health Science, Nanjing Sport Institute, Nanjing, China
| | - Guizhen Gao
- Department of Biochemistry Pharmacy, School of Chemistry and Life Science, SuZhou University, SuZhou, China; and
| | - Wengen Cao
- Department of Biochemistry Pharmacy, School of Chemistry and Life Science, SuZhou University, SuZhou, China; and
| | - Yunkun Zhang
- Department of Health Science, Nanjing Sport Institute, Nanjing, China
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