The Effect of Cold and Warm Environments on the Response of Antioxidant Capacity and Oxidative Stress to a Prolonged Running Session

Hossein Ebrahimi Varmaal, R. Delavar, Majid Vahidian-Rezazadeh
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Abstract

Background: Recent studies have shown that changes in environmental temperature may affect oxidative stress induced by exercise. Objectives: This study aimed to evaluate the effect of a prolonged running session in cold and warm environments on the catalase, malondialdehyde, and saliva total antioxidant capacity of young non-athlete men. Methods: This semi-experimental study had a crossover design. Participants included 10 non-athlete young men aged 16 (±0.32) years, weight 65 (±3.59) kg, and with a BMI of 22.5 (±1.49) kg/m2 who were selected via the purposive sampling method. The exercise protocol included 2400 m of running on the treadmill with 50 to 60% of maximum heartbeat in the first step at 31°C and in the second step in a 15°C environment. Repeated measurement ANOVA was used at P ≤ 0.05 to analyze the data. Results: The results showed that malondialdehyde increased following a long-running session in cold and warm environments. In contrast, catalase and total antioxidant capacity following involvement in cold and warm environments showed no significant change. In addition, no significant difference was observed among the studied variables following involvement in hot and cold environments. Conclusions: Considering the obtained results, it could be mentioned that to fulfill the profitable effects of aerobics exercise, continuous activity is necessary. At the same time, having individual exercise sessions can increase the danger of inducing oxidative stress in non-athlete people without reinforcing anti-oxidative defenses.
冷暖环境对长时间跑步时抗氧化能力和氧化应激反应的影响
背景:近年来的研究表明,环境温度的变化可能影响运动引起的氧化应激。目的:本研究旨在评估在寒冷和温暖环境下长时间跑步对年轻非运动员男性过氧化氢酶、丙二醛和唾液总抗氧化能力的影响。方法:半实验研究采用交叉设计。参与者包括10名年龄16(±0.32)岁,体重65(±3.59)kg, BMI为22.5(±1.49)kg/m2的非运动员青年男性,他们通过目的抽样方法选择。运动方案包括在跑步机上跑2400米,在31°C的环境中第一步心率为最大心率的50% - 60%,在15°C的环境中第二步心率为最大心率的50% - 60%。采用重复测量方差分析,P≤0.05。结果:结果表明,在寒冷和温暖的环境中长时间运动后,丙二醛增加。相比之下,过氧化氢酶和总抗氧化能力在寒冷和温暖的环境中没有显著的变化。此外,在热环境和冷环境下,研究变量之间没有观察到显著差异。结论:考虑到所获得的结果,可以提到,为了实现有氧运动的有益效果,持续的运动是必要的。与此同时,进行个人锻炼会增加非运动员诱发氧化应激的危险,而不会增强抗氧化防御。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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