Kanemaru Shin-Ichi, Nakamura Tatsuo, Omori Koichi, Kojima Hisayoshi, Magrufov Akhmar, Hiratsuka Yasuyuki, Ito Juichi, Shimizu Yasuhiko
Department of Otolaryngology-Head and Neck Surgery, Kyoto University Faculty of Medicine, Kyoto, Japan.
Ann Otol Rhinol Laryngol. 2003 Jun;112(6):492-8. doi: 10.1177/000348940311200602.
The recurrent laryngeal nerve (RLN) does not regenerate well after it has been cut, and no current surgical methods achieve functional regeneration. Here, we evaluate the functional regeneration of the RLN after reconstruction using a biodegradable nerve conduit or an autologous nerve graft. The nerve conduit was made of a polyglycolic acid (PGA) tube coated with collagen. A 10-mm gap in the resected nerve was bridged by a PGA tube in 6 adult beagle dogs (group 1) and by an autologous nerve graft in 3 dogs (group 2). Fiberscopic observation revealed functional regeneration of the RLN in 4 of the 6 dogs in group 1. No regeneration of the RLN was observed in any dog in group 2. We also tested for axonal transport, and measured the compound muscle action potential. The RLN can be functionally regenerated with a PGA tube, which may act as a scaffold for the growth of regenerating axons.
喉返神经(RLN)切断后再生能力不佳,目前尚无手术方法能实现其功能再生。在此,我们评估使用可生物降解神经导管或自体神经移植物重建后喉返神经的功能再生情况。神经导管由涂有胶原蛋白的聚乙醇酸(PGA)管制成。在6只成年比格犬(第1组)中,用PGA管桥接切除神经中的10毫米间隙,在3只犬(第2组)中用自体神经移植物桥接。纤维镜观察显示,第1组6只犬中有4只的喉返神经实现了功能再生。第2组的任何一只犬均未观察到喉返神经再生。我们还进行了轴突运输测试,并测量了复合肌肉动作电位。喉返神经可通过PGA管实现功能再生,PGA管可能为再生轴突的生长提供支架。