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首页> 外文期刊>Frontiers in Genetics >Circulating microRNAs in Response to Exercise Training in Healthy Adults
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Circulating microRNAs in Response to Exercise Training in Healthy Adults

机译:循环MicroRNA以应对健康成年人的运动培训

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Circulating microRNAs (miRNAs, miRs) have great potential as cardiac biomarkers and they are also being explored for their roles in intercellular communication and gene expression regulation. The analysis of circulating miRNAs in response to exercise would provide a deeper understanding of the molecular response to physical activity and valuable information for clinical practice. Here, eight male college students were recruited to participate in cardiopulmonary exercise testing (CPET) and 1 h acute exercise training (AET). Blood samples were collected and serum miRNAs involved in angiogenesis, inflammation and enriched in muscle and/or cardiac tissues were analyzed before and after cardiopulmonary exercise and acute exercise. The miRNAs we detected were miR-1, miR-20a, miR-21, miR-126, miR-133a, miR-133b, miR-146, miR155, miR-208a, miR-208b, miR-210, miR-221, miR-222, miR-328, miR-378, miR-499, and miR-940. We found that serum miR-20a was decreased significantly after CPET and serum miR-21 was increased after AET. In addition, no robust correlation was identified between the changes of these miRNAs and makers of cardiac function and exercise capacity, which indicates a distinct adaptation of these miRNAs to exercise. Future studies are highly needed to define the potential use of these circulating miRNAs as useful biomarkers of exercise training, and disclose the biological function of circulating miRNAs as physiological mediators of exercise-induced cardiovascular adaptation.
机译:循环的microRNA(MiRNA,MIRS)具有巨大的心脏生物标志物,它们也正在探索其在细胞间通信和基因表达调节中的作用。循环miRNA响应运动的分析将对对临床实践的物理活动和有价值信息的分子响应进行更深的了解。在这里,招募了八名男性大学生参与心肺运动测试(CPET)和1 H急性运动训练(AET)。收集血液样品,并在心肺运动和急性运动之前和之后分析血管生成,血管生成,炎症和富含肌肉和/或心脏组织中的血清miRNA。我们检测到的miRNA是miR-1,miR-20a,miR-21,miR-126,miR-133a,miR-133b,miR-146,miR155,miR-208a,miR-208b,miR-210,miR-221 ,miR-222,miR-328,miR-378,miR-499和miR-940。在AET后CPET和血清MIR-21增加后,我们发现血清miR-20a显着降低。此外,在这些miRNA和心脏功能的变化和心功能和运动能力的变化之间没有鉴定了鲁棒的相关性,这表明这些miRNA锻炼的不同适应。未来的研究非常需要将这些循环miRNA的潜在使用定义为运动训练的有用生物标志物,并公开了循环miRNA作为运动诱导的心血管适应的生理介质的生物学功能。

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