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急性运动后外周血单个核细胞中DNA甲基化状态的动态变化:运动诱导白细胞介素-6浓度升高的潜在影响。

Dynamic changes in dna methylation status in peripheral blood Mononuclear cells following an acute bout of exercise: Potential impact of exercise-induced elevations in interleukin-6 concentration.

作者信息

Robson-Ansley P J, Saini A, Toms C, Ansley L, Walshe I H, Nimmo M A, Curtin J A

机构信息

Faculty of Health and Life Sciences, Northumbria University, Newcastle-upon-Tyne, UK.

Department of Physiology and Pharmacology, Karolinska Institutet, Sweden.

出版信息

J Biol Regul Homeost Agents. 2014 Jul-Sep;28(3):407-17.

PMID:25316129
Abstract

The aim of the present study was to examine the relationship between interleukin (IL)-6 concentrations and DNA methylation in the peripheral blood mononuclear cells (PBMCs) of trained runners after a bout of prolonged, strenuous exercise. Eight healthy trained males completed a treadmill run at 60% vVO(2max) for 120 min followed by a 5-km time trial in a fasted condition. Whole blood samples were taken prior to, immediately before and 24 h following exercise. From these samples, PBMCs were isolated for analysis and plasma IL-6 concentrations were measured. The methylation status of DNA extracted from PBMCs was analysed using the Illumina 27k methylation beadchip platform. Global DNA methylation status was unaltered immediately and up to 24 hours following a bout of prolonged exercise in comparison to pre-exercise. Despite no change in global DNA methylation, plasma IL-6 concentrations were significantly related to the DNA methylation status of 11 genes. Our study demonstrates that the methylome is stable, while discovering a novel link between exercise-induced increases in circulating IL-6 and the DNA methylation status of 11 individual genes. Based on our preliminary findings, the mechanisms by which changes in plasma IL-6 concentrations and DNA methylation in response to exercise interact require further study.

摘要

本研究的目的是检测长时间剧烈运动后,训练有素的跑步者外周血单个核细胞(PBMCs)中白细胞介素(IL)-6浓度与DNA甲基化之间的关系。八名健康的训练有素的男性在禁食状态下以60%的最大摄氧量(vVO₂max)在跑步机上跑120分钟,随后进行5公里计时赛。在运动前、运动即将开始前和运动后24小时采集全血样本。从这些样本中分离出PBMCs进行分析,并测量血浆IL-6浓度。使用Illumina 27k甲基化芯片平台分析从PBMCs中提取的DNA的甲基化状态。与运动前相比,长时间运动后即刻及长达24小时,整体DNA甲基化状态未发生改变。尽管整体DNA甲基化没有变化,但血浆IL-6浓度与11个基因的DNA甲基化状态显著相关。我们的研究表明,甲基化组是稳定的,同时发现了运动诱导的循环IL-6增加与11个个体基因的DNA甲基化状态之间的新联系。基于我们的初步发现,血浆IL-6浓度变化和DNA甲基化对运动作出反应的相互作用机制需要进一步研究。

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