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基因修饰细胞移植治疗大鼠脊髓损伤的电生理评价
引用本文:余科炜,叶晓健,冯红,曲伸,李家顺,路长林.基因修饰细胞移植治疗大鼠脊髓损伤的电生理评价[J].第二军医大学学报,2000,21(7):621-624.
作者姓名:余科炜  叶晓健  冯红  曲伸  李家顺  路长林
作者单位:1. 武警上海总队医院骨科,上海201103
2. 第二军医大学长征医院骨科,上海200003
3. 第二军医大学长海医院药学部
4. 长海医院内分泌科
5. 基础医学部神经生物学教研室
基金项目:国家自然科学基金资助项目 !( 396 0 0 14 7)
摘    要:目的:采用神经电生理检查方法,观察逆转录病毒载体介导脑源性神经营养因子(BDNF)基因修饰成肌细胞对损伤脊髓的治疗作用。方法:30只SD大鼠在T9水平制成脊髓横断损伤模型,并随机分为基因细胞组(A组)、成肌细胞组(B组)及损伤对照组(C组),每组10只大鼠。术后3个月,采用皮质体感诱发电位(CSEP)和运动诱发电位(MEP)等电生理检测技术,观察轴突是否有再生及其神经功能恢复程度。结果:(1)A组

关 键 词:脊髓损伤  基因修饰  成肌细胞移植  电生理

Neurophysiological study on intraspinal implantation of genetically modified myoblast treating SCI in rats
YU Ke-Wei,YE Xiao-Jian,FENG Hong,QU Shen,LI Jia-Shun,LU Chang-Lin.Neurophysiological study on intraspinal implantation of genetically modified myoblast treating SCI in rats[J].Academic Journal of Second Military Medical University,2000,21(7):621-624.
Authors:YU Ke-Wei  YE Xiao-Jian  FENG Hong  QU Shen  LI Jia-Shun  LU Chang-Lin
Abstract:Objective: To observe the value of gene therapy on SCI in vivo by transferring brain derived neurotrophic factor (BDNF) to rat myoblast with retroviral vector using electrophysiological examination. Methods: Transection of spinal cord at the level of T 9 were produced in 30 adult SD rats which were randomly divided into 3 groups ( n =10): BDNF gene modified myoblast implantation (Group A), myoblast implantation (Group B) and without cell implantation as control (Group C). Three months after operation, whether the axon regenerated and how the neural function restored was observed by using cerebral somatosensory evoked potential (CSEP) and motor evoked potential (MEP). Results: (1) Thtee months after injury, 3 rats in Group A had CSEP signals and 5 rats had MEP signals, while no electrophysiological response was found in Group B or Group C. (2) The amplitudes of the recovered CSEP or MEP signals decreased and their latencies increased, comparing with those before injury. Conclusion: Treatment with genetically engineered myoblasts producing BDNF can accelerate recovery of traumatic spinal cord injury in adult rats.
Keywords:spinal cord injuries  genetically modified  myoblast  implantation  electrophysiology  neurotrophic factor  brain  derived
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