首页> 美国卫生研究院文献>Frontiers in Physiology >Muscle MCT4 Content Is Correlated with the Lactate Removal Ability during Recovery Following All-Out Supramaximal Exercise in Highly-Trained Rowers
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Muscle MCT4 Content Is Correlated with the Lactate Removal Ability during Recovery Following All-Out Supramaximal Exercise in Highly-Trained Rowers

机译:肌肉MCT4的含量与在训练有素的赛艇运动员进行的超最大运动后恢复过程中的乳酸清除能力有关。

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摘要

The purpose of this study was to test if the lactate exchange (γ1) and removal (γ2) abilities during recovery following short all-out supramaximal exercise correlate with the muscle content of MCT1 and MCT4, the two isoforms of the monocarboxylate transporters family involved in lactate and H+ co-transport in skeletal muscle. Eighteen lightweight rowers completed a 3-min all-out exercise on rowing ergometer. Blood lactate samples were collected during the subsequent passive recovery to assess an individual blood lactate curve (IBLC). IBLC were fitted to the bi-exponential time function: La(t) = [La](0) + A1(1 − e-γ1t) + A2(1 − e-γ2t) where [La](0) is the blood lactate concentration at exercise completion and the velocity constants γ1 and γ2 denote the lactate exchange and removal abilities, respectively. An application of the bi-compartmental model of lactate distribution space allowed estimation of the lactate removal rate at exercise completion [LRR(0)]. Biopsy of the right vastus lateralis was taken at rest to measure muscle MCT1 and MCT4 content. Fiber type distribution, activity of key enzymes and capillary density (CD) were also assessed. γ1 was correlated with [La](0) (r = −0.54, P < 0.05) but not with MCT1, MCT4 or CD. γ2 and LRR(0) were correlated with MCT4 (r = 0.63, P < 0.01 and r = 0.73, P < 0.001, respectively) but not with MCT1 or cytochrome c oxidase activity. These findings suggest that the lactate exchange ability is highly dependent on the milieu so that the importance of the muscle MCT1 and MCT4 content in γ1 was hidden in the present study. Our results also suggest that during recovery following all-out supramaximal exercise in well-trained rowers, MCT4 might play a significant role in the distribution and delivery of lactate for its subsequent removal.
机译:这项研究的目的是测试短期全力以赴的超大型运动后恢复过程中的乳酸交换(γ1)和清除(γ2)能力是否与MCT1和MCT4的肌肉含量相关,MCT1和MCT4是参与其中的单羧酸盐转运蛋白家族的两个同工型乳酸和H + 在骨骼肌中共同转运。 18名轻量级划船者完成了3分钟的划船测功机全力练习。在随后的被动恢复过程中收集血液乳酸样本,以评估单个血液乳酸曲线(IBLC)。 IBLC符合双指数时间函数:La(t)= [La](0)+ A1(1 − e - γ 1 t )+ A2 (1-<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ M2”溢出=“ scroll”> e - γ 2 t < / mtext> ),其中[La](0)是运动完成时的血液乳酸浓度,速度常数γ1和γ2表示乳酸交换和清除功能。乳酸分布空间的双室模型的应用允许估计运动完成时的乳酸去除率[LRR(0)]。静止时进行右侧股外侧肌的活检,以测量肌肉MCT1和MCT4的含量。还评估了纤维类型分布,关键酶的活性和毛细管密度(CD)。 γ1与[La](0)相关(r = -0.54,P <0.05),但与MCT1,MCT4或CD无关。 γ2和LRR(0)与MCT4相关(分别为r = 0.63,P <0.01和r = 0.73,P <0.001),但与MCT1或细胞色素c氧化酶活性无关。这些发现表明,乳酸交换能力高度依赖于环境,因此在本研究中隐藏了肌肉MCT1和MCT4含量在γ1中的重要性。我们的研究结果还表明,在训练有素的赛艇运动员进行超最大运动后的恢复过程中,MCT4可能在乳酸的分布和传递中起着重要作用,随后被清除。

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