Suppr超能文献

富氢气体增强冲刺间歇表现:对潜在机制的代谢组学见解。

Hydrogen-Rich Gas Enhanced Sprint-Interval Performance: Metabolomic Insights into Underlying Mechanisms.

机构信息

School of Sport Medicine and Physical Therapy, Beijing Sport University, Beijing 100084, China.

School of Huangjiu, Zhejiang Industry Polytechnic College, Shaoxing 312000, China.

出版信息

Nutrients. 2024 Jul 19;16(14):2341. doi: 10.3390/nu16142341.

Abstract

(1) Background: The diversity of blood biomarkers used to assess the metabolic mechanisms of hydrogen limits a comprehensive understanding of its effects on improving exercise performance. This study evaluated the impact of hydrogen-rich gas (HRG) on metabolites following sprint-interval exercise using metabolomics approaches, aiming to elucidate its underlying mechanisms of action. (2) Methods: Ten healthy adult males participated in the Wingate Sprint-interval test (SIT) following 60 min of HRG or placebo (air) inhalation. Venous blood samples were collected for metabolomic analysis both before and after gas inhalation and subsequent to completing the SIT. (3) Results: Compared with the placebo, HRG inhalation significantly improved mean power, fatigue index, and time to peak for the fourth sprint and significantly reduced the attenuation values of peak power, mean power, and time to peak between the first and fourth. Metabolomic analysis highlighted the significant upregulation of acetylcarnitine, propionyl-L-carnitine, hypoxanthine, and xanthine upon HRG inhalation, with enrichment pathway analysis suggesting that HRG may foster fat mobilization by enhancing coenzyme A synthesis, promoting glycerophospholipid metabolism, and suppressing insulin levels. (4) Conclusions: Inhaling HRG before an SIT enhances end-stage anaerobic sprint capabilities and mitigates fatigue. Metabolomic analysis suggests that HRG may enhance ATP recovery during interval stages by accelerating fat oxidation, providing increased energy replenishment for late-stage sprints.

摘要

(1)背景:用于评估氢气代谢机制的血液生物标志物种类繁多,这限制了人们对其提高运动表现的作用的全面理解。本研究采用代谢组学方法评估了富氢气体(HRG)对冲刺间歇运动后代谢物的影响,旨在阐明其作用机制。(2)方法:10 名健康成年男性在 HRG 或安慰剂(空气)吸入 60 分钟后进行了瓦氏冲刺间歇测试(SIT)。在吸入气体前后以及完成 SIT 后采集静脉血样进行代谢组学分析。(3)结果:与安慰剂相比,HRG 吸入显著提高了第四冲刺的平均功率、疲劳指数和达到峰值时间,并且显著降低了第一和第四冲刺之间的峰值功率、平均功率和达到峰值时间的衰减值。代谢组学分析突出显示,HRG 吸入后乙酰肉碱、丙酰肉碱、次黄嘌呤和黄嘌呤的显著上调,富集途径分析表明,HRG 可能通过增强辅酶 A 合成、促进甘油磷脂代谢和抑制胰岛素水平来促进脂肪动员。(4)结论:在 SIT 前吸入 HRG 可增强末期无氧冲刺能力并减轻疲劳。代谢组学分析表明,HRG 可能通过加速脂肪氧化来加速间歇阶段的 ATP 恢复,为后期冲刺提供更多的能量补充。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0f9/11280464/9f7131c7bff0/nutrients-16-02341-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验