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终点线上的代谢洞察:通过呼气挥发性有机化合物分析解读超级马拉松运动员的生理变化

Metabolic insights at the finish line: deciphering physiological changes in ultramarathon runners through breath VOC analysis.

作者信息

Chou Hsuan, Arthur Kayleigh, Shaw Elen, Schaber Chad, Boyle Billy, Allsworth Max, Kelley Eli F, Stewart Glenn M, Wheatley Courtney M, Schwartz Jesse, Fermoyle Caitlin C, Ziegler Briana L, Johnson Kay A, Robach Paul, Basset Patrick, Johnson Bruce D

机构信息

Owlstone Medical, Cambridge, United Kingdom.

Department of Cardiovascular Diseases, Mayo Clinic, Rochester, MN, United States of America.

出版信息

J Breath Res. 2024 Feb 12;18(2). doi: 10.1088/1752-7163/ad23f5.

Abstract

Exhaustive exercise can induce unique physiological responses in the lungs and other parts of the human body. The volatile organic compounds (VOCs) in exhaled breath are ideal for studying the effects of exhaustive exercise on the lungs due to the proximity of the breath matrix to the respiratory tract. As breath VOCs can originate from the bloodstream, changes in abundance should also indicate broader physiological effects of exhaustive exercise on the body. Currently, there is limited published data on the effects of exhaustive exercise on breath VOCs. Breath has great potential for biomarker analysis as it can be collected non-invasively, and capture real-time metabolic changes to better understand the effects of exhaustive exercise. In this study, we collected breath samples from a small group of elite runners participating in the 2019 Ultra-Trail du Mont Blanc ultra-marathon. The final analysis included matched paired samples collected before and after the race from 24 subjects. All 48 samples were analyzed using the Breath Biopsy Platform with GC-Orbitrap™ via thermal desorption gas chromatography-mass spectrometry. The Wilcoxon signed-rank test was used to determine whether VOC abundances differed between pre- and post-race breath samples (adjusted-value < .05). We identified a total of 793 VOCs in the breath samples of elite runners. Of these, 63 showed significant differences between pre- and post-race samples after correction for multiple testing (12 decreased, 51 increased). The specific VOCs identified suggest the involvement of fatty acid oxidation, inflammation, and possible altered gut microbiome activity in response to exhaustive exercise. This study demonstrates significant changes in VOC abundance resulting from exhaustive exercise. Further investigation of VOC changes along with other physiological measurements can help improve our understanding of the effect of exhaustive exercise on the body and subsequent differences in VOCs in exhaled breath.

摘要

力竭运动可在人体肺部及其他部位诱发独特的生理反应。由于呼出气体基质与呼吸道接近,呼出气中的挥发性有机化合物(VOCs)是研究力竭运动对肺部影响的理想对象。由于呼出气中的VOCs可源自血液,其丰度变化也应表明力竭运动对身体更广泛的生理影响。目前,关于力竭运动对呼出气中VOCs影响的已发表数据有限。呼出气在生物标志物分析方面具有巨大潜力,因为它可以通过非侵入性方式收集,并捕捉实时代谢变化,以更好地理解力竭运动的影响。在本研究中,我们从一小群参加2019年环勃朗峰超级马拉松的精英跑者中收集了呼出气样本。最终分析包括从24名受试者在比赛前后收集的配对样本。所有48个样本均使用带有GC-Orbitrap™的呼吸活检平台通过热解吸气相色谱 - 质谱联用仪进行分析。采用Wilcoxon符号秩检验来确定比赛前后呼出气样本中VOCs的丰度是否存在差异(校正后p值<0.05)。我们在精英跑者的呼出气样本中共鉴定出793种VOCs。其中,在经过多重检验校正后,63种在比赛前后样本中显示出显著差异(12种减少,51种增加)。所鉴定出的特定VOCs表明,脂肪酸氧化、炎症以及肠道微生物群活性可能发生改变,以响应力竭运动。本研究证明了力竭运动导致VOC丰度发生显著变化。对VOC变化以及其他生理测量指标的进一步研究,有助于提高我们对力竭运动对身体影响以及呼出气中VOCs后续差异的理解。

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