Department of Neurosurgery, La Paz Hospital, Madrid, Spain.
Department of Neurosurgery, La Paz Hospital, Madrid, Spain.
Neurosci Lett. 2011 Oct 24;504(2):146-150. doi: 10.1016/j.neulet.2011.09.020. Epub 2011 Sep 17.
Neurotrophic factors may be used to improve the growth and repair of injured peripheral nerves. In this study we determined the effectiveness of recombinant human growth hormone on peripheral nerve injury in the Wistar rat. The ulnar nerve of the rat was sectioned and its proximal and distal ends were sutured to either end of a silastic tube, with the aim of encouraging regeneration through the tube. 32 ulnar nerve specimens were randomized into two groups: 18 nerves regenerating under the influence of recombinant growth hormone, and 14 nerves regenerating in its absence. The study was performed over a period of 8 weeks and progression of regeneration was assessed with regular surface electroneurography every 1-2 weeks after surgery. In the group receiving recombinant growth hormone, it comprised a significant improvement in the recovery of conduction velocity, and a more gradual increase in the amplitude of motor potential from the fifth week onwards was observed. Histological analysis of study specimens in the recombinant hormone group revealed an improved architecture of the regenerating nerve, a greater density of nerve fibers, and increased myelination with a lesser degree of endoneural fibrosis. Our work demonstrates the positive effect of the administration of recombinant human growth hormone in obtaining significantly improved conduction velocities, and a greater improvement in nerve regeneration from the fifth week of monitoring when compared to the control group. Histological analysis in the group receiving hormone showed acceptable degree of myelination with little granulation tissue and fibrosis.
神经营养因子可用于促进损伤周围神经的生长和修复。本研究旨在探讨重组人生长激素(rhGH)对大鼠尺神经损伤的疗效。将大鼠尺神经切断,其近、远断端分别缝合到硅橡胶管的两端,以期通过管腔促进神经再生。将 32 个尺神经标本随机分为两组:18 个在 rhGH 影响下再生,14 个无 rhGH 影响再生。研究持续 8 周,术后每 1-2 周进行常规表面电神经图检查,评估再生进展情况。rhGH 组运动神经传导速度的恢复显著改善,从第 5 周开始,运动电位振幅逐渐增加。rhGH 组研究标本的组织学分析显示,再生神经的结构得到改善,神经纤维密度增加,髓鞘形成增加,神经内膜纤维化程度减轻。我们的工作表明,与对照组相比,rhGH 的应用可显著提高神经传导速度,从第 5 周开始监测时,神经再生的改善程度更大。rhGH 组的组织学分析显示,有髓神经纤维的形成程度尚可,肉芽组织和纤维化程度较轻。