Liu Yongfu, Hu Yuting, Ma Baolei, Wang Zijun, Wei Bowen
Department of Rehabilitation, Taihe Hospital Affiliated to Hubei University of Medicine, Shiyan, 442099, Hubei, China.
Center for Diabetes Rehabilitation Research, Taihe Hospital Affiliated to Hubei University of Medicine, Shiyan, 442099, Hubei, China.
Microb Ecol. 2025 May 3;88(1):38. doi: 10.1007/s00248-025-02529-w.
Prolonged and intense physical activity can trigger stress response mechanisms across various physiological systems-including the cardiovascular, respiratory, gastrointestinal, musculoskeletal, and neuroendocrine systems-disrupting energy metabolism, immune function, redox balance, and hormonal regulation. Critically, when not accompanied by adequate recovery, such exertion may impair rather than enhance athletic performance. In parallel, there has been growing interest in probiotics as natural, safe, and accessible dietary supplements with the potential to support performance and recovery. Emerging evidence highlights the pivotal role of the gut microbiome in mediating communication along the gut-brain and gut-muscle axes, thereby influencing not only metabolic and immune functions but also neuromuscular adaptation and fatigue resistance. This review explores the mechanisms through which probiotics may enhance exercise performance, mitigate exercise-induced fatigue, and improve physiological adaptation via modulation of inflammation, oxidative stress, and metabolic signaling pathways. Framed within the context of predictive, preventive, and personalized medicine (3P medicine), this paper emphasizes the diagnostic and therapeutic potential of personalized probiotic strategies in optimizing athletic performance through the qualitative and quantitative assessment of microbiota and host responses.
长时间的高强度体育活动会触发包括心血管、呼吸、胃肠、肌肉骨骼和神经内分泌系统在内的各种生理系统的应激反应机制,扰乱能量代谢、免疫功能、氧化还原平衡和激素调节。至关重要的是,如果没有足够的恢复,这种高强度运动可能会损害而不是提高运动表现。与此同时,人们越来越关注益生菌作为天然、安全且容易获得的膳食补充剂,其具有支持运动表现和恢复的潜力。新出现的证据突出了肠道微生物群在介导肠道与大脑及肠道与肌肉轴之间的通讯中的关键作用,从而不仅影响代谢和免疫功能,还影响神经肌肉适应和抗疲劳能力。本综述探讨了益生菌通过调节炎症、氧化应激和代谢信号通路来提高运动表现、减轻运动诱导的疲劳以及改善生理适应的机制。本文以预测、预防和个性化医学(3P医学)为背景,强调了通过对微生物群和宿主反应进行定性和定量评估,个性化益生菌策略在优化运动表现方面的诊断和治疗潜力。