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失神经骨骼肌细胞凋亡:运动与感觉神经的比较
引用本文:Guangming Lü.失神经骨骼肌细胞凋亡:运动与感觉神经的比较[J].中国神经再生研究,2011,6(3):224-230.
作者姓名:Guangming  
作者单位:南通大学第三附属医院,南通大学第三附属医院,南通大学第三附属医院,南通大学江苏省神经再生重点实验室,上海交通大学医学院力学生物学与医学工程实验室,南通大学第三附属医院,南通大学第三附属医院,南通大学第三附属医院,南通大学第三附属医院
基金项目:南通大学临床科研基金资助项目(200626)
摘    要:Skeletal muscle atrophy inevitably occurs in denervated skeletal muscle,and cell apoptosis plays an important role in skeletal muscle atrophy and degeneration.The present study established rat models of simple nerve injury by transecting the ventral or dorsal spinal nerve root and observed rat skeletal muscle cell apoptosis following simple motor nerve injury versus simple sensory nerve injury.Following skeletal muscle denervation for 10 weeks,cell apoptosis was detected in skeletal muscle,which was accompanied by obvious changes in rat behavior and electrophysiological responses.In addition,changes in cross-sectional area and average gray-scale of motor endplates of the gastrocnemius muscle were analyzed following sciatic nerve injury and motor nerve injury.Cell nuclei in denervated skeletal muscle tissue were more densely arranged than in normal skeletal muscle tissue.Cell nuclei were most dense in the sciatic nerve injury group,followed by the motor nerve injury group and the sensory nerve injury group.Fas/FasL expression and the number of apoptotic cells increased in denervated skeletal muscle,and apoptosis-related changes were observed.These findings suggested that motor and sensory nerves provided trophic actions following skeletal muscle and motor nerve injury,resulting in a greater influence on skeletal muscle atrophy than sensory nerve injury.Therefore,reconstruction of motor nerves should be preferentially considered for treating denervation-induced skeletal muscle atrophy.

关 键 词:apoptosis  motor  nerve  rats  sensory  nerve  skeletal  muscle  atrophy

Skeletal muscle cell apoptosis following motornerve injury versus sensory nerve injury
Lei Zhao,Ruisheng Xu,Shenyang Jiang,Zhiqiang Yan,Junming Sun,Ling Wang,Ye Xue,Donglin Jiang.Skeletal muscle cell apoptosis following motornerve injury versus sensory nerve injury[J].Neural Regeneration Research,2011,6(3):224-230.
Authors:Lei Zhao  Ruisheng Xu  Shenyang Jiang  Zhiqiang Yan  Junming Sun  Ling Wang  Ye Xue  Donglin Jiang
Institution:Department of Orthopedics, Third Affiliated Hospital of Nantong University, Wuxi 214041, Jiangsu Province, Chinavvv,Department of Orthopedics, Third Affiliated Hospital of Nantong University, Wuxi 214041, Jiangsu Province, China,Clinical Central Laboratory, Third Affiliated Hospital of Nantong University,Wuxi 214041, Jiangsu Province, China,Jiangsu Province Key Laboratory of Neuroregeneration, Nantong University, Nantong 223001, Jiangsu Province, China,Institute of Mechanobiology and Medical Engineering, Shanghai Jiaotong University, Shanghai 200030, China,Clinical Central Laboratory, Third Affiliated Hospital of Nantong University,Wuxi 214041, Jiangsu Province, China,Clinical Central Laboratory, Third Affiliated Hospital of Nantong University,Wuxi 214041, Jiangsu Province, China,Clinical Central Laboratory, Third Affiliated Hospital of Nantong University,Wuxi 214041, Jiangsu Province, China,Clinical Central Laboratory, Third Affiliated Hospital of Nantong University,Wuxi 214041, Jiangsu Province, China
Abstract:Skeletal muscle atrophy inevitably occurs in denervated skeletal muscle, and cell apoptosis plays an important role in skeletal muscle atrophy and degeneration. The present study established rat models of simple nerve injury by transecting the ventral or dorsal spinal nerve root and observed rat skeletal muscle cell apoptosis following simple motor nerve injury versus simple sensory nerve injury. Following skeletal muscle denervation for 10 weeks, cell apoptosis was detected in skeletal muscle, which was accompanied by obvious changes in rat behavior and electrophysiological responses. In addition, changes in cross-sectional area and average gray-scale of motor endplates of the gastrocnemius muscle were analyzed following sciatic nerve injury and motor nerve injury. Cell nuclei in denervated skeletal muscle tissue were more densely arranged than in normal skeletal muscle tissue. Cell nuclei were most dense in the sciatic nerve injury group, followed by the motor nerve injury group and the sensory nerve injury group. Fas/FasL expression and the number of apoptotic cells increased in denervated skeletal muscle, and apoptosis-related changes were observed. These findings suggested that motor and sensory nerves provided trophic actions following skeletal muscle and motor nerve injury, resulting in a greater influence on skeletal muscle atrophy than sensory nerve injury. Therefore, reconstruction of motor nerves should be preferentially considered for treating denervation-induced skeletal muscle atrophy.
Keywords:apoptosis  motor nerve  rats  sensory nerve  skeletal muscle atrophy
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