Larsen Ryan G, Thomsen Jens M, Hirata Rogerio P, Steffensen Rudi, Poulsen Eva R, Frøkjaer Jens B, Graven-Nielsen Thomas
Sports Sciences, Department of Health Science and Technology, Aalborg University, Aalborg, Denmark.
Department of Health Science and Technology, SMI, Aalborg University, Aalborg, Denmark.
Physiol Rep. 2019 Jul;7(13):e14162. doi: 10.14814/phy2.14162.
Unaccustomed eccentric exercise leads to impaired microvascular function but the underlying mechanism is unknown. In this study, we evaluated the role of oxidative stress and of nitric oxide (NO) bioavailability. Thirty young men and women performed eccentric contractions of the tibialis anterior (TA) muscle (ECC), with the contralateral leg serving as nonexercising control (CON). Participants were randomized into three groups ingesting an antioxidant cocktail (AO), beetroot juice (BR) or placebo 46 h postexercise. At baseline and 48 h postexercise, hyperemic responses to brief muscle contractions and 5 min of cuff occlusion were assessed bilaterally in the TA muscles using blood oxygen level dependent (BOLD) magnetic resonance imaging. Eccentric contractions resulted in delayed time-to-peak (22%; P < 0.001), blunted peak (21%; P < 0.001) and prolonged time-to-half relaxation (12%, P < 0.001) in the BOLD response to brief contractions, with no effects of AO or BR, and no changes in CON. Postocclusive time-to-peak was also delayed (54%; P < 0.001) in ECC, with no effects of AO or BR, and no changes in CON. Impaired microvascular reactivity after eccentric contractions is confined to the exercised tissue, and is not restored with acute ingestion of AO or BR. Impairments in microvascular reactivity after unaccustomed eccentric contractions may result from structural changes within the microvasculature that can diminish muscle blood flow regulation during intermittent activities requiring prompt adjustments in oxygen delivery.
不习惯的离心运动导致微血管功能受损,但其潜在机制尚不清楚。在本研究中,我们评估了氧化应激和一氧化氮(NO)生物利用度的作用。30名年轻男性和女性进行了胫骨前肌(TA)的离心收缩(ECC),对侧腿作为非运动对照(CON)。参与者在运动后46小时被随机分为三组,分别摄入抗氧化鸡尾酒(AO)、甜菜根汁(BR)或安慰剂。在基线和运动后48小时,使用血氧水平依赖(BOLD)磁共振成像双侧评估TA肌肉对短暂肌肉收缩和5分钟袖带阻断的充血反应。离心收缩导致对短暂收缩的BOLD反应的峰值时间延迟(约22%;P<0.001)、峰值减弱(约21%;P<0.001)和半松弛时间延长(约12%,P<0.001),AO或BR无影响,CON组无变化。ECC组的闭塞后峰值时间也延迟(约54%;P<0.001),AO或BR无影响,CON组无变化。离心收缩后微血管反应性受损仅限于运动组织,急性摄入AO或BR后无法恢复。不习惯的离心收缩后微血管反应性受损可能是由于微血管内的结构变化,这可能会在需要迅速调整氧气输送的间歇性活动中减少肌肉血流调节。