神经再支配
神经肌肉接头
去神经支配
免疫染色
电机端板
医学
坐骨神经
复合肌肉动作电位
神经损伤
解剖
肌电图
运动神经
神经肌肉传递
电机单元
神经科学
麻醉
电生理学
内科学
生物
免疫组织化学
物理医学与康复
作者
Bianca Vannucci,Katherine B. Santosa,Alexandra M. Keane,Albina Jablonka‐Shariff,Johnny Chuieng‐Yi Lu,Ying Yan,Matthew R. MacEwan,Alison K. Snyder‐Warwick
摘要
Abstract Introduction In this study we present a reproducible technique to assess motor recovery after nerve injury via neuromuscular junction (NMJ) immunostaining and electrodiagnostic testing. Methods Wild‐type mice underwent sciatic nerve transection with repair. Hindlimb muscles were collected for microscopy up to 30 weeks after injury. Immunostaining was used to assess axons (NF200), Schwann cells (S100), and motor endplates (α‐bungarotoxin). Compound motor action potential (CMAP) amplitude was used to assess tibialis anterior (TA) function. Results One week after injury, nearly all (98.0%) endplates were denervated. At 8 weeks, endplates were either partially (28.3%) or fully (71.7%) reinnervated. At 16 weeks, NMJ reinnervation reached 87.3%. CMAP amplitude was 83% of naive mice at 16 weeks and correlated with percentage of fully reinnervated NMJs. Morphological differences were noted between injured and noninjured NMJs. Discussion We present a reproducible method for evaluating NMJ reinnervation. Electrodiagnostic data summarize NMJ recovery. Characterization of wild‐type reinnervation provides important data for consideration in experimental design and interpretation.
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