急性负重轮跑对大鼠海马BDNF表达的影响。

Minchul Lee, Hideaki Soya
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引用次数: 16

摘要

目的:自愿负重轮跑涉及在自愿跑步活动中使用负重轮跑。在相对高强度和短时间内进行的肌肉力量或能量类型的活动可能导致较少的明显代谢适应,但仍可能引起肌纤维肥大。本研究旨在确定急性自发性轮跑外加负荷对大鼠海马脑源性神经营养因子(BDNF)表达的影响。方法:将10周龄雄性Wistar大鼠随机分为(1)久坐组(对照组);(2)自愿运动与无负荷(no -load)组;(3)自愿运动加负荷组1周(急性期)。实时荧光定量PCR检测BDNF基因表达。结果:空载组和负重组的平均距离水平无显著差异。然而,Load组的平均工作水平显著提高。空载组比目鱼相对重量更大。此外,与对照组相比,负重车轮运行上调了BDNF mRNA水平。BDNF mRNA水平与负荷水平呈正相关(r=0.75),这表明多种负荷水平有助于本研究中发现的负荷轮式跑步与BDNF相关的益处。结论:这种新颖的方法首次发现,急性自愿负重轮跑会导致肌肉适应,从而增强BDNF表达,这表明高强度短期运动可能在海马BDNF活性中发挥作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Effects of acute voluntary loaded wheel running on BDNF expression in the rat hippocampus.
[Purpose] Voluntary loaded wheel running involves the use of a load during a voluntary running activity. A muscle-strength or power-type activity performed at a relatively high intensity and a short duration may cause fewer apparent metabolic adaptations but may still elicit muscle fiber hypertrophy. This study aimed to determine the effects of acute voluntary wheel running with an additional load on brain-derived neurotrophic factor (BDNF) expression in the rat hippocampus. [Methods] Ten-week old male Wistar rats were assigned randomly to a (1) sedentary (Control) group; (2) voluntary exercise with no load (No-load) group; or (3) voluntary exercise with an additional load (Load) group for 1-week (acute period). The expression of BDNF genes was quantified by real-time PCR. [Results] The average distance levels were not significantly different in the No-load and Load groups. However, the average work levels significantly increased in the Load group. The relative soleus weights were greater in the No-load group. Furthermore, loaded wheel running up-regulated the BDNF mRNA level compared with that in the Control group. The BDNF mRNA levels showed a positive correlation with workload levels (r=0.75), suggesting that the availability of multiple workload levels contributes to the BDNF-related benefits of loaded wheel running noted in this study. [Conclusion] This novel approach yielded the first set of findings showing that acute voluntary loaded wheel running, which causes muscular adaptation, enhanced BDNF expression, suggesting a possible role of high-intensity short-term exercise in hippocampal BDNF activity.
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