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慢性渐进性压迫对大鼠行为功能及脊髓bcl-2和bax基因表达的影响
引用本文:李振鹏,孔抗美,齐伟力,蔡燕玲,温丽文,黄彦玲.慢性渐进性压迫对大鼠行为功能及脊髓bcl-2和bax基因表达的影响[J].汕头大学医学院学报,2005,18(2):91-93,F003.
作者姓名:李振鹏  孔抗美  齐伟力  蔡燕玲  温丽文  黄彦玲
作者单位:汕头大学医学院第二附属医院脊柱关节科,广东,汕头,515041
基金项目:广东省卫生厅立项(A2003521),广东省教育厅资助项目(Z03040)
摘    要:目的:观察脊髓慢性受压后实验动物的行为功能与bcl_2和bax基因表达的变化。方法:以30只Wistar大鼠为受试对象,采用大鼠后路渐进性脊髓压迫模型,然后进行联合行为评分(CBS)、常规病理和免疫组化,用原位末端标记法(TU ENL)检测凋亡基因bcl_2和bax的表达。结果:免疫组化示实验组bax阳性细胞数明显增多,且CBS升高(P<0.05)。TUENL结果示对照组有极少量散在的凋亡标记阳性细胞,而实验组则出现大量的阳性细胞,凋亡指数高。结论:脊髓受压促进大鼠脊髓神经元合成bax蛋白,从而影响实验动物的行为功能。

关 键 词:bax基因表达  行为功能  慢性渐进性压迫  Wistar大鼠  基因bcl-2  原位末端标记法  联合行为评分  实验动物  免疫组化  阳性细胞  bax蛋白  脊髓神经元  受试对象  脊髓压迫  凋亡指数  脊髓受压  实验组  细胞数  CBS  对照组
文章编号:1007-4716(2005)02-0091-03

Influence of Progressive Compression on the Behavioral Function and Expression of bcl-2 and bax in Chronic Spinal Cord Injury of Rats
LI Zhen-peng,KONG Kang-mei,Qi Wei-Li,CAI Yan-ling,WEN Li-wen,HUANG Yan-ling.Influence of Progressive Compression on the Behavioral Function and Expression of bcl-2 and bax in Chronic Spinal Cord Injury of Rats[J].Journal of Shantou University Medical College,2005,18(2):91-93,F003.
Authors:LI Zhen-peng  KONG Kang-mei  Qi Wei-Li  CAI Yan-ling  WEN Li-wen  HUANG Yan-ling
Abstract:Objective:To study the changes of the expression of bcl_2 and bax in chronic spinal cord injury(SCI)of rats.Methods:According to the chronic progressive compressive spinal cord injury model of rats,30 Wistar rats were divided into control group and SCI group.Hematoxylin_eosin staining,immunohistochemistry and TUENL methods were used to examine the expression of bax and bcl_2 in rats' spinal cord. The positive immunohistochemistry cells of bcl_2 and bax were observed by light microscope and analyzed by computer image analysis system.Results:After spinal cord injury,CBS was increased and the expression sequences of bax protein in SCI group were observed more obvious than those in control group while the expression of bcl_2 no changed significantly. Conclusion:The progressive compression may increase synthesis of bax in spinal cord and inhibit the recovery of behavioral function of experimental animals.
Keywords:spinal cord injury  gene  mechanism
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