Inhalation of Hydrogen-rich Gas before Acute Exercise Alleviates Exercise Fatigue: A Randomized Crossover Study.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Gengxin Dong, Jianxin Wu, Yinglu Hong, Qian Li, Meng Liu, Guole Jiang, Dapeng Bao, Brad Manor, Junhong Zhou
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Abstract

Hydrogen, as an antioxidant, may have the potential to mitigate fatigue and improve selected oxidative stress markers induced by strenuous exercise. This study focused on a previously unexplored approach involving pre-exercise inhalation of hydrogen-rich gas (HRG). Twenty-four healthy adult men first completed pre-laboratories to determine maximum cycling power (Wmax) and maximum cycling time (Tmax). Then they were subjected to ride Tmax at 80% Wmax and 60-70 rpm on cycle ergometers after inhaled HRG or placebo gas (air) for 60-minute in a double-blind, counterbalanced, randomized, and crossover design. The cycling frequency in the fatigue modeling process and the rating of perceived exertion (RPE) at the beginning and end of the ride were recorded. Before gas inhalation and after fatigue modeling, visual analog scale (VAS) for fatigue and counter-movement jump (CMJ) were tested, and blood samples were obtained. The results showed that compared to a placebo, HRG inhalation induced significant improvement in VAS, RPE, the cycling frequency during the last 30 seconds in the fatigue modeling process, the ability to inhibit hydroxyl radicals, and serum lactate after exercise (p<0.028), but not in CMJ height and glutathione peroxidase activity. The cycling frequency during the last 30 seconds of all other segments in the fatigue modeling process was within the range of 60-70 rpm. In conclusion, HRG inhalation prior to acute exercise can alleviate exercise-induced fatigue, maintain functional performance, and improve hydroxyl radical and lactate levels.

急性运动前吸入富含氢气的气体可缓解运动疲劳。
氢气作为一种抗氧化剂,可能具有减轻疲劳和改善剧烈运动引起的特定氧化应激指标的潜力。本研究重点研究了运动前吸入富氢气体(HRG)这一以前未曾探索过的方法。24 名健康成年男子首先完成了测定最大骑行功率(Wmax)和最大骑行时间(Tmax)的预实验。然后,在双盲、平衡、随机和交叉设计中,他们在吸入富含 HRG 或安慰剂气体(空气)60 分钟后,在自行车测力计上以 80% Wmax 的速度骑行 Tmax。记录了疲劳建模过程中的骑行频率以及骑行开始和结束时的体力消耗评分(RPE)。在吸入气体前和疲劳建模后,测试了疲劳视觉模拟量表(VAS)和反向运动跳跃(CMJ),并采集了血液样本。结果表明,与安慰剂相比,吸入 HRG 能显著改善 VAS、RPE、最后 30 秒的骑行频率、抑制羟自由基的能力和运动后的血清乳酸(p < 0.028),但不能改善 CMJ 高度和谷胱甘肽过氧化物酶活性。总之,在急性运动前吸入 HRG 可减轻运动引起的疲劳,维持机能表现,改善羟自由基和乳酸水平。
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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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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