首页 | 本学科首页   官方微博 | 高级检索  
检索        


Biological conduit small gap sleeve bridging method for peripheral nerve injury: regeneration law of nerve fibers in the conduit
Authors:Pei-xun Zhang;Li-ya A;Yu-hui Kou;Xiao-feng Yin;Feng Xue;Na Han;Tian-bing Wang;Bao-guo Jiang;
Institution:Pei-xun Zhang;Li-ya A;Yu-hui Kou;Xiao-feng Yin;Feng Xue;Na Han;Tian-bing Wang;Bao-guo Jiang;Department of Trauma and Orthopedics,Peking University People’s Hospital;
Abstract:The clinical effects of 2-mm small gap sleeve bridging of the biological conduit to repair peripheral nerve injury are better than in the traditional epineurium suture, so it is possible to replace the epineurium suture in the treatment of peripheral nerve injury. This study sought to identify the regeneration law of nerve fibers in the biological conduit. A nerve regeneration chamber was constructed in models of sciatic nerve injury using 2-mm small gap sleeve bridging of a biodegradable biological conduit. The results showed that the biological conduit had good histocompatibility. Tissue and cell apoptosis in the conduit apparently lessened, and regenerating nerve fibers were common. The degeneration regeneration law of Schwann cells and axons in the conduit was quite different from that in traditional epineurium suture. During the prime period for nerve fiber regeneration (2–8 weeks), the number of Schwann cells and nerve fibers was higher in both proximal and distal ends, and the effects of the small gap sleeve bridging method were better than those of the traditional epineurium suture. The above results provide an objective and reliable theoretical basis for the clinical application of the biological conduit small gap sleeve bridging method to repair peripheral nerve injury.
Keywords:nerve regeneration  peripheral nerve  small gap  axons  Schwann cells  repair  injury  biological conduit  NSFC grants  neural regeneration
本文献已被 CNKI 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号