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首页> 外文期刊>Experimental and therapeutic medicine >Electroacupuncture promotes axonal regeneration in rats with focal cerebral ischemia through the downregulation of Nogo-A/NgR/RhoA/ROCK signaling
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Electroacupuncture promotes axonal regeneration in rats with focal cerebral ischemia through the downregulation of Nogo-A/NgR/RhoA/ROCK signaling

机译:通过Nogo-A / NGR / RhoA /摇滚信号传导的下调,电针促进局灶性脑缺血大鼠的轴突再生

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摘要

The purpose of the present study was to evaluate the effect of electroacupuncture (EA) on the axonal regeneration environment following cerebral ischemia injury and to investigate whether it was associated with Nogo-A/Nogo receptor (NgR)/RhoA/Rho-associated protein kinase (ROCK) signaling. Using a rat model of focal cerebral ischemia, the effects of EA at the Quchi (LI11) and Zusanli (ST36) acupoints on axonal growth inhibitory protein and axonal growth factors were assessed and the underlying molecular mechanisms were investigated. It was found that EA at the Quchi and Zusanli acupoints significantly improved neurological deficit scores following ischemia (P0.05), and reduced the cerebral infarct volume. Moreover, it was demonstrated that crucial signaling molecules in the Nogo-A signaling pathway were regulated by EA. These results suggest that EA provides a less inhibitory environment for axonal regeneration following cerebral ischemia through inhibition of Nogo-A/NgR/RhoA/ROCK signaling.
机译:本研究的目的是评估电针(EA)对脑缺血损伤后轴突再生环境的影响,并研究其是否与Nogo-A / Nogo受体(NGR)/ RhOA / RHO相关蛋白激酶有关(岩石)信令。利用局灶性脑缺血的大鼠模型,评估了EA在Quchi(Li11)和Zusanli(ST36)穴位对轴突生长抑制蛋白和轴突生长因子的影响,研究了潜在的分子机制。发现Quchi和Zusanli穴位的EA显着改善了缺血(P <0.05)后的神经缺陷分数,并降低了脑梗塞体积。此外,证明Nogo-A信号通路中的关键信号分子由EA调节。这些结果表明EA通过抑制Nogo-A / NgR / RhOA /摇滚信号传导,为脑缺血后且脑缺血提供较少的抑制环境。

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