Zhao Jingjing, Wang Yang, Zhao Dan, Zhang Lizhen, Chen Peijie, Xu Xin
Shanghai anti-doping laboratory, Shanghai University of Sport, Changhai Road 399, Shanghai, 200438, China.
Analyst. 2020 Oct 21;145(20):6500-6510. doi: 10.1039/d0an01287d. Epub 2020 Aug 6.
High-intensity interval training (HIIT) can elicit a greater training stimulus to improve maximal aerobic capacity and is frequently applied in professional sports training. Although select metabolic pathways have been examined, the omics-scale molecular response to the HIIT has not been fully characterized. The longitudinal multi-omic profiling, including metabolome and proteome was performed on urine samples from 23 healthy young soccer players before and after the HIIT exercise. Metabolomics revealed the metabolomic changes during the HIIT, including steroid hormone metabolites, amino acid biosynthesis and relevant metabolites. Furthermore, changes in protein expression in metabolic pathways involved in energy metabolism, oxidative stress as well as immune pathways were found by proteomics, which provide the foundation for understanding metabolomic changes during the HIIT. There was a significant association between the HIIT and the urinary omic profiles, with the alteration in metabolic pathways associated with long-term adaptation to training. Future studies should focus on the validation of these findings and the development of metabolic models to monitor the training intensity and the adaptation in athletes.
高强度间歇训练(HIIT)能够引发更大的训练刺激,以提高最大有氧能力,并且经常应用于职业体育训练中。尽管已对某些代谢途径进行了研究,但HIIT在组学规模上的分子反应尚未得到充分表征。对23名健康年轻足球运动员在HIIT运动前后的尿液样本进行了包括代谢组和蛋白质组在内的纵向多组学分析。代谢组学揭示了HIIT期间的代谢组变化,包括类固醇激素代谢物、氨基酸生物合成及相关代谢物。此外,蛋白质组学发现了能量代谢、氧化应激以及免疫途径中涉及的代谢途径中蛋白质表达的变化,这为理解HIIT期间的代谢组变化提供了基础。HIIT与尿液组学特征之间存在显著关联,代谢途径的改变与对训练的长期适应有关。未来的研究应侧重于这些发现的验证以及开发代谢模型,以监测运动员的训练强度和适应性。