Two-week continuous supplementation of hydrogenrich water increases peak oxygen uptake during an incremental cycling exercise test in healthy humans: a randomized, single-blinded, placebo-controlled study.

IF 3 Q2 MEDICINE, RESEARCH & EXPERIMENTAL Medical Gas Research Pub Date : 2020-10-01 DOI:10.4103/2045-9912.304223
Amane Hori, Sayaka Sobue, Ryosuke Kurokawa, Shin-Ichi Hirano, Masatoshi Ichihara, Norio Hotta
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Abstract

The various beneficial effects of the intake of molecular hydrogen (H2) have been demonstrated in the field of sports science. Although supplementation of H2 has been reported to increase mitochondrial metabolism in animal studies, the effects of the administration of H2 on aerobic capacity during exercise in humans are still not clear. We investigated whether a single or 2-week continuous intake of H2-rich water (HW) enhanced the aerobic capacity during incremental exercise in healthy humans. In this randomized, single-blinded, placebo-controlled experimental study, the participants performed an incremental cycling exercise to measure peak oxygen uptake and peak load before and after a single (500 mL) or a 2-week supplementation (total 5 L) of HW. In the latter experiment, the participants drank the 500 mL of HW on all weekdays (i.e., 10 times). The single intake of HW did not significantly increase peak oxygen uptake and peak load, and did not significantly alter the responses in oxidative stress, antioxidant activity, and lactate levels. However, importantly, the 2-week continuous consumption of HW significantly augmented peak oxygen uptake and tended to increase the peak load without any significant changes in lactate levels, oxidative stress, and antioxidant responses. In conclusion, the continuous supplementation of HW potentially augments the aerobic capacity, implying that continuous supplementation of H2 might help improve aerobic exercise performance and physical health. This study protocol was approved by the Ethical Committee of Chubu University (approval No. 260086-2) on March 29, 2018.

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连续两周补充富氢水可提高健康人在增量自行车运动测试中的峰值摄氧量:一项随机、单盲、安慰剂对照研究。
摄入分子氢(H2)的各种有益作用已在运动科学领域得到证实。虽然在动物实验中发现补充氢气能提高线粒体的新陈代谢,但服用氢气对人体运动中有氧能力的影响仍不清楚。我们研究了单次或连续两周摄入富含 H2 的水(HW)是否能增强健康人在增量运动中的有氧能力。在这项随机、单盲、安慰剂对照的实验研究中,参与者在单次(500 毫升)或连续 2 周(总计 5 升)补充 HW 之前和之后进行了增量自行车运动,以测量峰值摄氧量和峰值负荷。在后一项实验中,参与者在所有工作日(即 10 次)都饮用了 500 毫升 HW。单次摄入 HW 并没有明显增加峰值摄氧量和峰值负荷,也没有明显改变氧化应激、抗氧化活性和乳酸水平的反应。然而,重要的是,连续两周摄入 HW 能明显提高峰值摄氧量,并有增加峰值负荷的趋势,而乳酸水平、氧化应激和抗氧化反应却没有明显变化。总之,持续补充 HW 有可能增强有氧能力,这意味着持续补充 H2 可能有助于改善有氧运动表现和身体健康。本研究方案于2018年3月29日获得中部大学伦理委员会批准(批准号:260086-2)。
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来源期刊
Medical Gas Research
Medical Gas Research MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
5.10
自引率
13.80%
发文量
35
期刊介绍: Medical Gas Research is an open access journal which publishes basic, translational, and clinical research focusing on the neurobiology as well as multidisciplinary aspects of medical gas research and their applications to related disorders. The journal covers all areas of medical gas research, but also has several special sections. Authors can submit directly to these sections, whose peer-review process is overseen by our distinguished Section Editors: Inert gases - Edited by Xuejun Sun and Mark Coburn, Gasotransmitters - Edited by Atsunori Nakao and John Calvert, Oxygen and diving medicine - Edited by Daniel Rossignol and Ke Jian Liu, Anesthetic gases - Edited by Richard Applegate and Zhongcong Xie, Medical gas in other fields of biology - Edited by John Zhang. Medical gas is a large family including oxygen, hydrogen, carbon monoxide, carbon dioxide, nitrogen, xenon, hydrogen sulfide, nitrous oxide, carbon disulfide, argon, helium and other noble gases. These medical gases are used in multiple fields of clinical practice and basic science research including anesthesiology, hyperbaric oxygen medicine, diving medicine, internal medicine, emergency medicine, surgery, and many basic sciences disciplines such as physiology, pharmacology, biochemistry, microbiology and neurosciences. Due to the unique nature of medical gas practice, Medical Gas Research will serve as an information platform for educational and technological advances in the field of medical gas.
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