Vascular Protection Research Laboratory, Exercise & Sport Science Department, Western Colorado University, Gunnison, Colorado.
Genetics and Genomics Group, Sanford Research, Sioux Falls, South Dakota.
Am J Physiol Heart Circ Physiol. 2021 Jun 1;320(6):H2401-H2415. doi: 10.1152/ajpheart.00894.2020. Epub 2021 May 14.
Cardiovascular adaptation underlies all athletic training modalities, with a variety of factors contributing to overall response during exercise-induced stimulation. In this regard the role of circulating biomarkers is a well-established and invaluable tool for monitoring cardiovascular function. Specifically, novel biomarkers such as circulating cell free DNA and RNA are now becoming attractive tools for monitoring cardiovascular function with the advent of next generation technologies that can provide unprecedented precision and resolution of these molecular signatures, paving the way for novel diagnostic and prognostic avenues to better understand physiological remodeling that occurs in trained versus untrained states. In particular, microRNAs are a species of regulatory RNAs with pleiotropic effects on multiple pathways in tissue-specific manners. Furthermore, the identification of cell free microRNAs within peripheral circulation represents a distal signaling mechanism that is just beginning to be explored via a diversity of molecular and bioinformatic approaches. This article provides an overview of the emerging field of sports/performance genomics with a focus on the role of microRNAs as novel functional diagnostic and prognostic tools, and discusses present knowledge in the context of athletic vascular remodeling. This review concludes with current advantages and limitations, touching upon future directions and implications for applying contemporary systems biology knowledge of exercise-induced physiology to better understand how disruption can lead to pathology.
心血管适应是所有运动训练模式的基础,多种因素共同作用于运动引起的刺激下的整体反应。在这方面,循环生物标志物的作用是一种经过充分证实的、非常有价值的监测心血管功能的工具。具体来说,随着能够提供这些分子特征前所未有的精度和分辨率的下一代技术的出现,新型生物标志物,如循环无细胞 DNA 和 RNA,现在正成为监测心血管功能的有吸引力的工具,为更好地了解训练和未训练状态下发生的生理重塑开辟了新的诊断和预后途径。特别是,微小 RNA 是一类具有组织特异性多效性作用的调节 RNA。此外,在外周循环中鉴定无细胞微小 RNA 代表了一种远程信号机制,目前正通过多种分子和生物信息学方法开始探索。本文概述了新兴的运动/表现基因组学领域,重点介绍微小 RNA 作为新型功能诊断和预后工具的作用,并讨论了目前在运动血管重塑方面的知识。本文的结论是目前的优势和局限性,涉及未来的方向和应用当代系统生物学知识来理解运动引起的生理学中断如何导致病理学的意义。