Rich K M, Alexander T D, Pryor J C, Hollowell J P
Department of Neurological Surgery, Washington University School of Medicine, St. Louis, Missouri 63110.
Exp Neurol. 1989 Aug;105(2):162-70. doi: 10.1016/0014-4886(89)90115-5.
The effect of exogenous NGF on axonal growth across a gap between sectioned ends of a sciatic nerve within silicone chambers was examined in Sprague-Dawley rats. After nerve section and surgical implantation, silicone chambers were filled with either a 1 mg/ml nerve growth factor (NGF)/saline solution (experimental) or a normal saline solution (control). Four weeks after surgery, the regenerated nerves from within the silicone chambers were dissected and fixed for histological studies at both light microscopic and ultrastructural levels. Morphological analysis of the nerves showed no difference between the NGF-treated and control groups in the size of the regenerated nerves within the chambers or in the diameters of myelinated axons. Total myelinated axonal counts were determined from within the distal chamber. NGF significantly increased the number of myelinated axons that grew into the distal end of the chamber (2126 +/- 437 NGF/saline; 1064 +/- 268 saline; P less than 0.05 Student's t test). Counts of the unmyelinated axons from the distal nerve segment from the two groups were not different. Myelin sheath thickness was 58% greater in the NGF-treated group compared with that in the saline group. There was no difference between the two groups in the size-frequency spectra of the diameters of the myelinated axons in the distal segment. The NGF/saline group showed a more mature-appearing regenerated nerve based on the percentage of myelinated axons, thickness of the myelin sheaths, and development of internal organization (e.g., amount of endoneurial collagen fibers, ensheathment of unmyelinated axons by Schwann cells, and interfascicular patterns).(ABSTRACT TRUNCATED AT 250 WORDS)
在斯普拉格-道利大鼠中,研究了外源性神经生长因子(NGF)对坐骨神经切断端之间间隙处轴突生长的影响。神经切断并手术植入后,硅胶室分别填充1mg/ml神经生长因子(NGF)/生理盐水溶液(实验组)或生理盐水溶液(对照组)。术后四周,解剖硅胶室内再生神经并固定,进行光镜和超微结构水平的组织学研究。神经形态学分析显示,NGF处理组和对照组在室内再生神经大小或有髓轴突直径方面无差异。从远侧室内确定有髓轴突总数。NGF显著增加了长入室远端的有髓轴突数量(NGF/生理盐水组为2126±437;生理盐水组为1064±268;Student t检验,P<0.05)。两组远侧神经段无髓轴突计数无差异。与生理盐水组相比,NGF处理组髓鞘厚度大58%。两组远侧段有髓轴突直径的大小频率谱无差异。基于有髓轴突百分比、髓鞘厚度和内部组织结构发育(如神经内膜胶原纤维量、雪旺细胞对无髓轴突的包绕和束间模式),NGF/生理盐水组再生神经表现更成熟。(摘要截断于250字)