Longitudinal NMR-based Metabolomics Analysis of Male Mountain Ultramarathon Runners: New Perspectives for Athletes Monitoring and Injury Prevention.

IF 5.9 2区 医学 Q1 SPORT SCIENCES
Matthieu Schoumacher, Julie Nguyen, Eric Brevers, Arianna Cirillo, Manon Campas, Elodie Grifnée, Justine Demeuse, Loreen Huyghebaert, Philippe Massonnet, Thomas Dubrowski, Joy Ledeck, Stéphanie Peeters, Grégoire P Millet, Pierre Croisille, Jean-François Kaux, Pascal de Tullio, Etienne Cavalier, Caroline Le Goff
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引用次数: 0

Abstract

Background: The aim of this study was to explore how a metabolomic approach could provide valuable information on changes in the athletes' metabolome during a mountain ultramarathon race. To achieve this goal, we established a longitudinal cohort of athletes enrolled in the TOR des Géants, a 330 km mountain ultramarathon with 24,000 m of elevation gain. Sixteen healthy male athletes (43.9 ± 10.1 years) were recruited, and blood samples were collected at four time points: pre-race, mid-race, post-race and after 72 h recovery. Using a 1H-NMR-based metabolomic approach, we evaluated metabolic changes that occur during both race effort and recovery, and correlated them with functional muscle, cardiac, inflammatory, and renal biomarkers already used in the clinic. The processed data were analyzed using multivariate analysis tools specific to longitudinal study design, and innovative pathway analysis was used for data interpretation.

Results: Mountain ultramarathon running significantly affected the metabolism and physiology of athletes. Multivariate analysis highlighted specific metabolites and functional biomarkers associated with prolonged exercise. Neither metabolite levels nor biomarker concentrations returned to baseline after 3 days of recovery. Finally, innovative pathway analysis shed light on specific metabolic changes resulting from mountain ultramarathon exercise.

Conclusion: In this study, we propose an NMR-based metabolomics strategy to assess exercise-associated metabolic changes during and after events such as the Tor des Géants. Using state-of-the-art data representation methods specific to metabolomics analysis, we demonstrated that such a methodology can provide a unique view of the biology associated with such extreme conditions. As this approach provides unique insights into the biology of extreme exercise, it holds promise for the development of new tools for athlete management.

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基于纵向核磁共振的男性山地超级马拉松运动员代谢组学分析:运动员监测和损伤预防的新视角。
背景:本研究的目的是探讨代谢组学方法如何为山地超级马拉松比赛中运动员代谢组变化提供有价值的信息。为了实现这一目标,我们建立了一个纵向队列的运动员报名参加TOR des gamesants,这是一个330公里的山地超级马拉松,海拔高度为24,000米。招募健康男性运动员16名(43.9±10.1岁),分别在赛前、中赛、赛后和恢复72 h后4个时间点采集血样。使用基于1h - nmr的代谢组学方法,我们评估了在比赛努力和恢复过程中发生的代谢变化,并将其与临床已经使用的功能性肌肉、心脏、炎症和肾脏生物标志物相关联。处理后的数据使用纵向研究设计专用的多变量分析工具进行分析,并使用创新的路径分析进行数据解释。结果:山地超长马拉松对运动员的代谢和生理有显著影响。多变量分析强调了与长时间运动相关的特定代谢物和功能性生物标志物。恢复3天后,代谢物水平和生物标志物浓度均未恢复到基线水平。最后,创新的通路分析揭示了山地超级马拉松运动导致的特定代谢变化。结论:在这项研究中,我们提出了一种基于核磁共振的代谢组学策略来评估运动期间和之后的运动相关代谢变化。使用最先进的数据表示方法特定于代谢组学分析,我们证明了这种方法可以提供与这种极端条件相关的生物学的独特观点。由于这种方法提供了对极限运动生物学的独特见解,它为运动员管理的新工具的开发带来了希望。
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来源期刊
Sports Medicine - Open
Sports Medicine - Open SPORT SCIENCES-
CiteScore
7.00
自引率
4.30%
发文量
142
审稿时长
13 weeks
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