The NU B.V., J.H. Oortweg 21, 2333 CH Leiden, The Netherlands.
University Clinic of Respiratory and Allergic Diseases Golnik, Golnik 36, 4204 Golnik, Slovenia.
Nutrients. 2024 Nov 19;16(22):3943. doi: 10.3390/nu16223943.
Endurance athletes require tailored nutrition strategies to optimize performance, recovery, and training adaptations. While traditional sports nutrition guidelines provide a foundational framework, individual variability in metabolic responses underscores the need for precision nutrition, informed by genetic, biological, and environmental factors. This scoping review evaluates the application of systems biology-driven sports nutrition for endurance athletes, focusing on 'omics' and wearable technologies.
A scoping review of the literature was conducted in PubMed, Scopus, and Web of Science in accordance with the PRISMA-ScR checklist. Research questions, search strategies, and eligibility criteria were guided by the Population-Concept-Context framework with the following inclusion criteria: original research in English, involving endurance athletes, systems biology approaches, and nutritional interventions or continuous glucose monitoring (CGM).
Fifty-two studies were included, with distance runners as the most studied cohort. Eleven studies used metagenomics, eleven CGM, ten nutrigenetics, ten metabolomics, seven multi-omics, one proteomics, one epigenomics, and one lipidomics. Over half ( = 31; 60%) were randomized controlled trials (RCTs) with generally high methodological quality.
Most studies were proof-of-concept investigations aimed at assessing biomarkers; however, the evidence linking these biomarkers to performance, recovery, and long-term health outcomes in endurance athletes remains insufficient. Future research should focus on well-powered replicated crossover RCTs, multivariate N-of-1 clinical trials, 360-degree systems-wide approaches, and the validation of genetic impacts on nutritional interventions to refine dietary guidelines.
耐力运动员需要量身定制的营养策略,以优化表现、恢复和训练适应。虽然传统的运动营养指南提供了一个基本框架,但代谢反应的个体差异突出了精准营养的必要性,这需要考虑遗传、生物和环境因素。本范围综述评估了系统生物学驱动的耐力运动员运动营养的应用,重点关注“组学”和可穿戴技术。
按照 PRISMA-ScR 清单,在 PubMed、Scopus 和 Web of Science 中进行了文献的范围综述。研究问题、搜索策略和纳入标准由人群-概念-背景框架指导,纳入标准为:原始研究为英文,涉及耐力运动员、系统生物学方法以及营养干预或连续血糖监测(CGM)。
共纳入 52 项研究,其中跑步距离最长的运动员是最受研究的队列。11 项研究使用宏基因组学,11 项 CGM,10 项营养遗传学,10 项代谢组学,7 项多组学,1 项蛋白质组学,1 项表观基因组学和 1 项脂质组学。超过一半(=31;60%)是随机对照试验(RCT),通常具有较高的方法学质量。
大多数研究都是旨在评估生物标志物的概念验证研究;然而,将这些生物标志物与耐力运动员的表现、恢复和长期健康结果联系起来的证据仍然不足。未来的研究应重点关注经过充分验证的复制交叉 RCT、多变量 N-of-1 临床试验、360 度系统全面方法以及遗传对营养干预影响的验证,以完善饮食指南。