华西口腔医学杂志

• 基础研究 •    下一篇

骨骼肌失神经后再生的实验研究

唐休发,郅克谦,黄元丁,温玉明   

  1. 四川大学华西口腔医学院 颌面外科,四川 成都610041
  • 收稿日期:2004-04-25 修回日期:2004-04-25 出版日期:2004-04-20 发布日期:2004-04-20
  • 通讯作者: 唐休发,Tel:028-89951177
  • 作者简介:唐休发(1963-),男,重庆人,教授,博士

The Study on the Regeneration of Skeletal Muscles After Denervation

TANG Xiu-fa,ZHIKe-qian,HUANG Yuan-ding, WEN Yu-ming   

  1. Dept.of Oral and Maxillofacial Surgery,West China College ofStomatology,Sichuan University,Chengdu 610041,China
  • Received:2004-04-25 Revised:2004-04-25 Online:2004-04-20 Published:2004-04-20

摘要:

目的 探讨骨骼肌失神经的退变和再生。方法 以纯系BALB/C小白鼠为实验动物,切断一侧坐骨神经, 术后1,2,4,8,12,16周分别处死动物,取腓肠肌分别进行光电镜观察和免疫组化研究。结果 骨骼肌失神经早期主要为肌纤维萎缩,随后退变和再生,较长时间失神经后再生的肌细胞再发生退变。失神经后1~4周肌动蛋白和肌红蛋白表达均降低,8周出现较小的细胞阳性染色,肌纤维阳性染色主要位于核周,12~16周大片的细胞核周有较浅的阳性胞浆染色。这些细胞不具正常肌纤维形态。结论 骨骼肌失神经后退变和再生同时存在,由于无神经支配,再生的肌细胞不能分化发育为成熟的肌纤维,而再发生退变;较长时间失神经后再生的成肌细胞相互融合呈片状分布,未能发育为成熟的肌纤维。

关键词: 骨骼肌, 失神经, 再生, 免疫组织化学

Abstract:

Objective To studythe degeneration and regeneration of skeletal muscle after denervation.Methods Denervation was carried out in gastrocnemius muscles in 30 adult BALB/C mice by cutting the sciatic nerve. The gastrocnemius muscles were removed at 1,2,4,8,12,16 weeks after denervation, respectively. Specimens were processed for histological study and immuno- histochemical technique.Results Muscle fiber atrophy followed by degerneration and regenerationwas observed in the early peri- od of denervation. Fusion of the regenerated muscle cellswith each other followed by degeneration of the cells and growth of fibro- connective tissue were observed in the later stage. The expression of myoglobin and actin decreased in 1~4 weeks after denerva- tion. The postive expression of the proteins was observed in some 8 weeks′cells and in many degenerated 12~14 weeks′muscle cells.Conclusion Degeneration and regeneration may coexisted in the denervated muscles. The regenerated muscle cells can′t fully develop due to the deficit of nerve regulation and degenerate again. The regenerated muscle cells will melt each other and can′t develop to mature muscle fiber in the later stage.

Key words: muscles, denervation, regeneration, immunohistochemical technique