首页> 美国卫生研究院文献>Frontiers in Physiology >Continuous Aerobic Training in Individualized Intensity Avoids Spontaneous Physical Activity Decline and Improves MCT1 Expression in Oxidative Muscle of Swimming Rats
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Continuous Aerobic Training in Individualized Intensity Avoids Spontaneous Physical Activity Decline and Improves MCT1 Expression in Oxidative Muscle of Swimming Rats

机译:持续的有氧运动强度的个性化训练可避免自发性体育活动下降并改善游泳大鼠氧化肌中MCT1的表达

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摘要

Although aerobic training has been shown to affect the lactate transport of skeletal muscle, there is no information concerning the effect of continuous aerobic training on spontaneous physical activity (SPA). Because every movement in daily life (i.e., SPA) is generated by skeletal muscle, we think that it is possible that an improvement of SPA could affect the physiological properties of muscle with regard to lactate transport. The aim of this study was to evaluate the effect of 12 weeks of continuous aerobic training in individualized intensity on SPA of rats and their gene expressions of monocarboxylate transporters (MCT) 1 and 4 in soleus (oxidative) and white gastrocnemius (glycolytic) muscles. We also analyzed the effect of continuous aerobic training on aerobic and anaerobic parameters using the lactate minimum test (LMT). Sixty-day-old rats were randomly divided into three groups: a baseline group in which rats were evaluated prior to initiation of the study; a control group (Co) in which rats were kept without any treatment during 12 weeks; and a chronic exercise group (Tr) in which rats swam for 40 min/day, 5 days/week at 80% of anaerobic threshold during 12 weeks. After the experimental period, SPA of rats was measured using a gravimetric method. Rats had their expression of MCTs determined by RT-PCR analysis. In essence, aerobic training is effective in maintaining SPA, but did not prevent the decline of aerobic capacity and anaerobic performance, leading us to propose that the decline of SPA is not fully attributed to a deterioration of physical properties. Changes in SPA were concomitant with changes in MCT1 expression in the soleus muscle of trained rats, suggestive of an additional adaptive response toward increased lactate clearance. This result is in line with our observation showing a better equilibrium on lactate production-remotion during the continuous exercise (LMT). We propose an approach to combat the decline of SPA of rats in their home cages. This new finding is worth for scientists who work with animal models to study the protective effects of exercise.
机译:尽管有氧训练已显示会影响骨骼肌的乳酸运输,但尚无有关持续有氧训练对自发体力活动(SPA)的影响的信息。由于日常生活中的所有运动(即SPA)都是由骨骼肌产生的,因此我们认为SPA的改善可能会影响乳酸在乳酸运输方面的生理特性。这项研究的目的是评估在有个性的强度下连续进行12周有氧运动对大鼠SPA的影响以及比目鱼肌(氧化性)和腓肠肌(糖酵解性)肌肉中单羧酸转运蛋白(MCT)1和4的基因表达。我们还使用乳酸最低限度试验(LMT)分析了持续有氧运动对有氧和无氧参数的影响。六十天大的大鼠随机分为三组:基线组,在开始研究之前先对大鼠进行评估;基线组则在研究开始前对大鼠进行评估。对照组(Co),在12周内不进行任何治疗的情况下饲养大鼠;慢性运动组(Tr),其中大鼠在12周内以无氧阈值的80%游泳40分钟/天,5天/周。实验期后,使用重量分析法测量大鼠的SPA。通过RT-PCR分析确定大鼠的MCT表达。从本质上讲,有氧训练可有效维持SPA,但不能阻止有氧能力和无氧运动能力的下降,因此我们提出SPA的下降并不能完全归因于物理性能的下降。 SPA的变化与受训大鼠比目鱼肌中MCT1表达的变化同时发生,提示对乳酸清除率增加有额外的适应性反应。该结果与我们的观察结果一致,表明在连续运动(LMT)期间乳酸产生-释放的平衡更好。我们提出了一种方法来对抗大鼠笼中SPA的下降。对于使用动物模型研究运动的保护作用的科学家而言,这一新发现值得。

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