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Endurance training facilitates myoglobin desaturation during muscle contraction in rat skeletal muscle

机译:耐力训练可促进大鼠骨骼肌肌肉收缩过程中的肌红蛋白降低

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摘要

At onset of muscle contraction, myoglobin (Mb) immediately releases its bound O2 to the mitochondria. Accordingly, intracellular O2 tension (PmbO2) markedly declines in order to increase muscle O2 uptake (mO2). However, whether the change in PmbO2 during muscle contraction modulates mO2 and whether the O2 release rate from Mb increases in endurance-trained muscles remain unclear. The purpose of this study was, therefore, to determine the effect of endurance training on O2 saturation of Mb (SmbO2) and PmbO2 kinetics during muscle contraction. Male Wistar rats were subjected to a 4-week swimming training (Tr group; 6 days per week, 30 min × 4 sets per day) with a weight load of 2% body mass. After the training period, deoxygenated Mb kinetics during muscle contraction were measured using near-infrared spectroscopy under hemoglobin-free medium perfusion. In the Tr group, the mO2peak significantly increased by 32%. Although the PmbO2 during muscle contraction did not affect the increased mO2 in endurance-trained muscle, the O2 release rate from Mb increased because of the increased Mb concentration and faster decremental rate in SmbO2 at the maximal twitch tension. These results suggest that the Mb dynamics during muscle contraction are contributing factors to faster O2 kinetics in endurance-trained muscle.
机译:肌肉收缩开始时,肌红蛋白(Mb)立即将其结合的O2释放到线粒体。因此,细胞内的O2张力(PmbO2)明显下降,以增加肌肉对O2的吸收(mO2)。然而,尚不清楚尚不清楚在肌肉收缩过程中PmbO2的变化是否会调节mO2以及耐力训练后的肌肉中Mb的O2释放速率是否增加。因此,本研究的目的是确定耐力训练对肌肉收缩期间Mb的O2饱和度(SmbO2)和PmbO2动力学的影响。对雄性Wistar大鼠进行为期4周的游泳训练(Tr组;每周6天,每周30分钟* 4组,每天),体重负荷为2%体重。训练期后,在无血红蛋白的培养基灌注下,使用近红外光谱法测量肌肉收缩过程中脱氧的Mb动力学。在Tr组,mO2peak显着增加了32%。尽管在肌肉收缩过程中P mb O 2 不会影响耐力训练肌肉中mO 2 的增加,但O 2 <由于最大抽搐张力下S mb O 2 中Mb浓度的增加和更快的递减速率,Mb的/ sub>释放速率增加。这些结果表明,肌肉收缩过程中的Mb动力学是耐力训练肌肉中O 2 动力学更快的因素。

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