Faculty of Sport and Health Sciences, University of Jyväskylä, Jyväskylä, Finland.
Department of Biological and Environmental Science, Nanoscience Center, University of Jyväskylä, Jyväskylä, Finland.
Sci Rep. 2023 Jul 11;13(1):11228. doi: 10.1038/s41598-023-38357-6.
Physical activity is essential in weight management, improves overall health, and mitigates obesity-related risk markers. Besides inducing changes in systemic metabolism, habitual exercise may improve gut's microbial diversity and increase the abundance of beneficial taxa in a correlated fashion. Since there is a lack of integrative omics studies on exercise and overweight populations, we studied the metabolomes and gut microbiota associated with programmed exercise in obese individuals. We measured the serum and fecal metabolites of 17 adult women with overweight during a 6-week endurance exercise program. Further, we integrated the exercise-responsive metabolites with variations in the gut microbiome and cardiorespiratory parameters. We found clear correlation with several serum and fecal metabolites, and metabolic pathways, during the exercise period in comparison to the control period, indicating increased lipid oxidation and oxidative stress. Especially, exercise caused co-occurring increase in levels of serum lyso-phosphatidylcholine moieties and fecal glycerophosphocholine. This signature was associated with several microbial metagenome pathways and the abundance of Akkermansia. The study demonstrates that, in the absence of body composition changes, aerobic exercise can induce metabolic shifts that provide substrates for beneficial gut microbiota in overweight individuals.
身体活动对于体重管理至关重要,它可以改善整体健康状况,并减轻与肥胖相关的风险标志物。除了诱导全身代谢变化外,习惯性运动还可以改善肠道微生物多样性,并以相关方式增加有益菌群的丰度。由于缺乏关于运动和超重人群的综合组学研究,我们研究了与肥胖个体有计划运动相关的代谢组学和肠道微生物群。我们在 6 周的耐力运动计划中测量了 17 名超重成年女性的血清和粪便代谢物。此外,我们将运动反应代谢物与肠道微生物组和心肺参数的变化进行了整合。与对照期相比,我们发现运动期间有几个血清和粪便代谢物以及代谢途径明显相关,表明脂质氧化和氧化应激增加。特别是,运动导致血清溶血磷脂酰胆碱和粪便甘油磷酸胆碱水平同时升高。该特征与几种微生物宏基因组途径和阿克曼氏菌的丰度有关。该研究表明,在没有身体成分变化的情况下,有氧运动可以诱导代谢转变,为超重个体的有益肠道微生物群提供底物。