首页> 美国卫生研究院文献>Evidence-based Complementary and Alternative Medicine : eCAM >The Time Course Effects of Electroacupuncture on Promoting Skeletal Muscle Regeneration and Inhibiting Excessive Fibrosis after Contusion in Rabbits
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The Time Course Effects of Electroacupuncture on Promoting Skeletal Muscle Regeneration and Inhibiting Excessive Fibrosis after Contusion in Rabbits

机译:电针对挫伤后骨骼肌再生和抑制过度纤维化的时程效应。

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摘要

The aim of this study was to investigate the longitudinal effects of electroacupuncture (EA) on Zusanli (ST36) and Ashi acupoints in promoting skeletal muscle regeneration and inhibiting excessive fibrosis after contusion in rabbits. Sixty rabbits were randomly divided into four groups: normal, contusion, EA, and recombinant human insulin-like growth factor-I (rhIGF-I). An acute skeletal muscle contusion was produced on the right gastrocnemius (GM) by an instrument-based drop-mass technique. EA was performed for 15 minutes every two days with 0.4 mA (2 Hz), and GM injections were executed with rhIGF-I (0.25 mL once a week). Rabbits treated with EA had a higher T-SOD and T-AOC serum activities and lower MDA serum level, the blood perfusion of which was also significantly higher. In the EA group, the diameter of the myofibril was uniform and the arrangement was regular, contrary to the contusion group. The number and diameter of regenerative myofibers and MHC expression were increased in the EA group. EA treatment significantly decreased fibrosis formation and reduced both GDF-8 and p-Smad2/3 expressions in injured muscle. Our data indicate that EA may promote myofiber regeneration and reduce excessive fibrosis by improving blood flow and antioxidant capacities. Additionally, EA may regulate signaling factor expression after contusion.
机译:这项研究的目的是研究电针(EA)对足三里(ST36)和阿氏穴位在促进兔骨骼肌再生和抑制挫伤后过度纤维化中的纵向作用。 60只兔子随机分为四组:正常,挫伤,EA和重组人胰岛素样生长因子-I(rhIGF-I)。通过基于器械的液滴质量技术,在右腓肠肌(GM)上产生了急性骨骼肌挫伤。 EA每两天用0.4µmA(2µHz)进行15分钟,并用rhIGF-I(0.25µmL每周一次)进行GM注射。 EA处理的兔的T-SOD和T-AOC血清活性较高,MDA血清水平较低,血液灌流也明显更高。与挫伤组相反,在电针组中,肌原纤维的直径均匀且排列规则。 EA组中再生肌纤维的数目和直径以及MHC表达增加。 EA治疗显着减少了纤维化的形成,并降低了受损肌肉中GDF-8和p-Smad2 / 3的表达。我们的数据表明,EA可以通过改善血流量和抗氧化能力来促进肌纤维再生并减少过度纤维化。另外,EA可能在挫伤后调节信号转导因子的表达。

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