首页> 外文期刊>Journal of reconstructive microsurgery >Ciliary neurotrophic factor for acceleration of peripheral nerve regeneration: an experimental study.
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Ciliary neurotrophic factor for acceleration of peripheral nerve regeneration: an experimental study.

机译:睫状神经营养因子促进周围神经再生:一项实验研究。

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The objective of this study was to investigate the effect of topically administrated ciliary neurotrophic factor (CNTF) on peripheral nerve regeneration. Sixty-eight Sprague Dawley rats underwent a unilateral sciatic nerve transection and silicon tubulization, with a 10-mm gap between the proximal and distal nerve stumps. Recombinant human CNTF (1 mg/kg) was injected into the rats of the experimental group, while normal saline was injected into the control group animals. Electrophysiologic and histologic studies, including nerve morphometry and electron microscopic observation, were performed at 1, 3, and 4 months postoperatively. HRP tracing was carried out at 3 months postoperatively to label spinal-cord, ventral-horn, and dorsal-root ganglia. The results revealed that CNTF-treated animals showed a higher motor nerve conduction velocity of the sciatic nerve and a higher muscle action potential amplitude of the anterior tibial muscle, compared to the controls ( p < 0.01). Nerves repaired with CNTF hadlarger axon diameter, greater number of axons, and more advanced myelination ( p < 0.05). More HRP-labeled motor neurons were also found in the ventral horns of CNTF-treated animals. These results indicate that topical application of CNTF to the injury site potentiates motor nerve axonal regrowth and axon maturation during peripheral nerve regeneration.
机译:这项研究的目的是调查局部施用的睫状神经营养因子(CNTF)对周围神经再生的影响。 68只Sprague Dawley大鼠进行了单侧坐骨神经横断和硅微管化,近端和远端神经残端之间的间隙为10mm。将重组人CNTF(1mg / kg)注射到实验组的大鼠中,而将生理盐水注射到对照组动物中。术后1、3、4个月进行电生理和组织学研究,包括神经形态学和电子显微镜观察。术后3个月进行HRP示踪,以标记脊髓,腹角和背根神经节。结果显示,与对照组相比,经CNTF处理的动物表现出更高的坐骨神经运动神经传导速度和更高的胫骨前肌肌肉动作电位幅度(p <0.01)。用CNTF修复的神经具有更大的轴突直径,更多的轴突数量和更高级的髓鞘形成(p <0.05)。在CNTF治疗的动物的腹角中也发现了更多的HRP标记的运动神经元。这些结果表明,将CNTF局部应用到损伤部位可增强周围神经再生过程中的运动神经轴突再生和轴突成熟。

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