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Effect of Intermittent Low-Frequency Electrical Stimulation on the Rat Gastrocnemius Muscle

机译:间歇性低频电刺激对大鼠腓肠肌的影响

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摘要

Low-frequency neuromuscular electrical stimulation (NMES) has been used as an endurance exercise model. This study aimed to test whether low-frequency NMES increases the phosphorylation of anabolic signaling molecules and induces skeletal muscle hypertrophy, as seen with high-frequency NMES. Using Sprague-Dawley rats, 1 bout of exercise (with dissection done immediately (Post0) and 3 h (Post3) after exercise) and another 6 sessions of training were performed. All experimental groups consisted of high- and low-frequency stimulation (HFS: 100 Hz; LFS: 10 Hz). Periodic acid-Schiff (PAS) staining was conducted to investigate type II fiber activation, and western blot analysis (WB) was conducted to examine whether NMES leads to anabolic intracellular signaling. At first, we examined the acute effect of exercise. PAS staining revealed that glycogen depletion occurred in both type I and type II fibers. WB results demonstrated that p70S6K phosphorylation was significantly increased by HFS, but there was no significant difference with LFS. In contrast, ERK 1/2 phosphorylation was increased by LFS at Post0. In the 6-session training, the wet weight and myofibrillar protein were significantly increased by both HFS and LFS. In conclusion, LFS has a similar anabolic effect for skeletal muscle hypertrophy as HFS, but the mediating signaling pathway might differ.
机译:低频神经肌肉电刺激(NMES)已被用作耐力运动模型。这项研究旨在测试低频NMES是否能增加合成代谢信号分子的磷酸化并诱导骨骼肌肥大,就像在高频NMES中所见。使用Sprague-Dawley大鼠,进行1轮运动(运动后立即进行解剖(Post0),运动后进行3h(Post3)),并进行另外6次训练。所有实验组均由高频和低频刺激(HFS:100 Hz; LFS:10 Hz)组成。进行高碘酸席夫(PAS)染色以研究II型纤维的活化,并进行蛋白质印迹分析(WB)以检查NMES是否导致合成代谢的细胞内信号传导。首先,我们检查了运动的急性影响。 PAS染色显示糖原消耗在I型和II型纤维中均发生。 WB结果表明,HFS显着增加了p70S6K的磷酸化,而LFS没有明显差异。相反,LFS在Post0增加ERK 1/2磷酸化。在6节训练中,HFS和LFS均显着增加了湿重和肌原纤维蛋白。总之,LFS对骨骼肌肥大具有与HFS类似的合成代谢作用,但介导的信号通路可能不同。

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