循环microrna作为身体对体力活动反应的新的特异性生物标志物的分析前特征

P. Postnikov, I. Pronina
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引用次数: 0

摘要

MicroRNAs是一种小的非编码单链rna,长度为18 - 25个核苷酸,它们通过特异性结合靶mRNA,在转录后水平调控基因表达,导致其降解。近几十年来,确定miRNAs表达谱的技术发展已成为研究项目的重要组成部分,miRNAs作为机体各种生理和病理过程的潜在高信息分子生物标志物的作用正在被科学界积极探索。特别是,身体活动是循环mirna的重要修饰因素。与经典的血液生化参数不同,这些参数会随着时间的推移而变化,这取决于样品的温度和储存条件,而microrna在储存过程中甚至在多次冻融循环后保持稳定,这使得它们成为一个有吸引力且易于获取的检测目标。然而,由于用于测试的分析程序的高度异质性,在临床实践中确定microRNA表达谱仍然很困难。在运动医学中,分析前阶段尤其重要,因为采样条件往往不规范,可能会影响分析结果。这篇综述显示了miRNA作为训练过程有效性的新的敏感生物标志物和身体对体育活动反应的调节剂的作用,并讨论了miRNA表达谱分析的一些分析前方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preanalytical features of the determination of circulating microRNAs as new specific biomarkers of the body’s response to physical activity
MicroRNAs are small non-coding single-stranded RNAs, 18 to 25 nucleotides long, they regulate gene expression at the post-transcriptional level through specific binding to the target mRNA, leading to its degradation. In recent decades, the development of technologies for determining the expression profiles of miRNAs has become an important part of research projects, and the role of miRNAs as potential highly informative molecular biomarkers of various physiological and pathological processes in the body is actively explored by the scientific community. In particular, physical activity is an important modifying factor for circulating miRNAs. Unlike classical blood biochemical parameters, which can change over time depending on the temperature and storage conditions of the sample, microRNAs remain stable during storage and even after multiple freeze-thaw cycles, which makes them an attractive and easily accessible target for detection. However, the determination of the microRNA expression profile in clinical practice is still difficult due to the high heterogeneity of analytical procedures used for testing. In sports medicine, the preanalytical stage is especially important, since often the conditions for sampling are not standardized and can affect the analysis result. This review shows the role of miRNAs as new sensitive biomarkers of the effectiveness of the training process and regulators of the body’s response to physical activity, and also discusses some preanalytical aspects of the analysis of miRNA expression profiles.
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