Department of Physiological Sciences, Stellenbosch University, Stellenbosch, South Africa.
Department of Nutrition and Health Sciences, University of Nebraska-Lincoln, Lincoln, Nebraska, USA.
Physiol Rep. 2024 Sep;12(18):e70056. doi: 10.14814/phy2.70056.
Extracellular vesicle (EV) cargo is known to change in response to stimuli such as muscle damage. This study aimed to assess particle size, concentration and microRNA (miR) content within small EV-enriched separations prepared from human blood taken before and after unaccustomed eccentric-biased exercise-induced muscle damage. Nine male volunteers underwent plyometric jumping and downhill running, with blood samples taken at baseline, 2, and 24 h post-exercise. EVs were separated using size exclusion chromatography (SEC) and their characteristics evaluated by nanoparticle tracking. No changes in EV size or concentration were seen following the muscle-damaging exercise. Small RNA sequencing identified 240 miRs to be consistently present within the EVs. RT-qPCR analysis was performed: specifically, for known muscle-enriched/important miRs, including miR-1, -206, -133a, -133b, -31, -208b, -451a, -486 and - 499 and the immune-important miR-21, -146a and - 155. Notably, none of the immune-important miRs within the EVs tested changed in response to the muscle damage. Of the muscle-associated miRs tested, only the levels of miR-31-5p were seen to change with decreased levels at 24 h compared to baseline and 2 h, indicating involvement in the damage response. These findings shed light on the dynamic role of EV miRs in response to exercise-induced muscle damage.
细胞外囊泡 (EV) 携带的物质已知会随着刺激而发生变化,例如肌肉损伤。本研究旨在评估在未经适应的离心偏置运动引起的肌肉损伤前后从人血液中分离出的富含小 EV 的分离物中的颗粒大小、浓度和 microRNA (miR) 含量。9 名男性志愿者进行了增强式跳跃和下坡跑步,在基线、运动后 2 和 24 小时采集血液样本。使用尺寸排阻色谱 (SEC) 分离 EV,并通过纳米颗粒跟踪评估其特性。肌肉损伤运动后,EV 的大小或浓度没有变化。小 RNA 测序确定了 240 个 miRs 在 EV 中持续存在。进行了 RT-qPCR 分析:具体来说,针对已知的肌肉丰富/重要的 miRs,包括 miR-1、-206、-133a、-133b、-31、-208b、-451a、-486 和 -499,以及免疫重要的 miR-21、-146a 和 -155。值得注意的是,测试的 EV 中没有一种免疫重要的 miR 会因肌肉损伤而发生变化。在所测试的与肌肉相关的 miRs 中,只有 miR-31-5p 的水平在 24 小时时与基线和 2 小时相比有所降低,表明其参与了损伤反应。这些发现揭示了 EV miRs 在应对运动引起的肌肉损伤中的动态作用。