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Improvements in skeletal muscle strength and cardiac function induced by resveratrol during exercise training contribute to enhanced exercise performance in rats

机译:白藜芦醇在运动训练过程中引起的骨骼肌力量和心功能的改善有助于增强大鼠的运动表现

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摘要

Exercise training (ET) improves endurance capacity by increasing both skeletal muscle mitochondrial number and function, as well as contributing to favourable cardiac remodelling. Interestingly, some of the benefits of regular exercise can also be mimicked by the naturally occurring polyphenol, resveratrol (RESV). However, it is not known whether RESV enhances physiological adaptations to ET. To investigate this, male Wistar rats were randomly assigned to a control chow diet or a chow diet that contained RESV (4 g kg−1 of diet) and subsequently subjected to a programme of progressive treadmill running for 12 weeks. ET-induced improvements in exercise performance were enhanced by 21% (P < 0.001) by the addition of RESV to the diet. In soleus muscle, ET + RESV increased both the twitch (1.8-fold; P < 0.05) and tetanic (1.2-fold; P < 0.05) forces generated during isometric contraction, compared to ET alone. In vivo echocardiography demonstrated that ET + RESV also increased the resting left ventricular ejection fraction by 10% (P < 0.05), and reduced left ventricular wall stress compared to ET alone. These functional changes were accompanied by increased cardiac fatty acid oxidation (1.2-fold; P < 0.05) and favourable changes in cardiac gene expression and signal transduction pathways that optimized the utilization of fatty acids in ET + RESV compared to ET alone. Overall, our findings provide evidence that the capacity for fatty acid oxidation is augmented by the addition of RESV to the diet during ET, and that this may contribute to the improved physical performance of rats following ET.
机译:运动训练(ET)通过增加骨骼肌线粒体数量和功能来提高耐力能力,并有助于良好的心脏重塑。有趣的是,经常运动的一些好处也可以被天然存在的多酚白藜芦醇(RESV)模仿。然而,还不知道RESV是否能增强对ET的生理适应性。为了对此进行研究,将雄性Wistar大鼠随机分为对照食物或含有RESV(4 g kg -1 饮食)的食物,然后进行连续跑步12分钟的跑步程序周。通过在饮食中添加RESV,ET引起的运动表现改善提高了21%(P <0.001)。与单独的ET相比,在比目鱼肌中,ET + RESV增加了等距收缩过程中产生的抽搐力(1.8倍; P <0.05)和破伤风(1.2倍; P <0.05)。体内超声心动图显示,与单独的ET相比,ET + RESV还可以使静息的左心室射血分数增加10%(P <0.05),并降低左心室壁应力。这些功能变化伴随着心脏脂肪酸氧化增加(1.2倍; P <0.05)以及心脏基因表达和信号转导途径的有利变化,与单独的ET相比,ET + RESV中脂肪酸的利用率得到了优化。总体而言,我们的发现提供了证据,即在ET期间通过在饮食中添加RESV可以增强脂肪酸氧化的能力,这可能有助于改善ET后大鼠的身体机能。

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