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[面神经打击模型中胶质细胞源性神经营养因子mRNA表达的特征]

[The character of glial line-cell derived neurotrophic factor mRNA expression in a facial nerve-striking model].

作者信息

Chen Wang, Zhou Shuxia, Zheng Chunmei, Qiu Jianyong, Song Junfeng

机构信息

Stomatological Department of the Second Rocket Army General Hospital.

出版信息

Hua Xi Kou Qiang Yi Xue Za Zhi. 2002 Jun;20(3):178-80.

Abstract

OBJECTIVE

It has been known that glial line-cell derived neurotrophic factor (GDNF) has the nutritional and protective effect in motor neurons. In this experiment, we investigated the character of GDNF mRNA expression in a facial nerve-striking model; combined with other scholars' experimental results; and analyzed what role GDNF plays in the regeneration process of injured motor nerves.

METHODS

We established a striking model in rabbit facial nerves with a striking gun with the striking velocity of 10 m/s and the total striking energy of 7.5 J. Then we detected the GDNF mRNA expression in facial neurons and axons with in situ hybridization on days 3, 7, 14 and 21 after striking. We counted the expression numbers of facial neurons and, compared with normal facial neurons and peripheral facial nerves.

RESULTS

We detected GDNF mRNA expression in the facial neurons from day 3 to day 21 after the facial nerve injured by striking. The peak of GDNF mRNA expression appeared on the 7th day, and then the expression number of facial neurons decreased gradually. A high level expression was also detected on day 21. GDNF mRNA expression was not detected neither in Schwann cells nor in normal facial neurons from the 3rd day to the 21st day.

CONCLUSION

GDNF is a kind of neurotrophic growing factor (NGF) that could be activated by injury. The character of GDNF mRNA expression was accordant to the process of nerve regeneration. These results showed that GDNF plays a very important role in the regeneration of injured motor nerves.

摘要

目的

已知胶质细胞源性神经营养因子(GDNF)对运动神经元具有营养和保护作用。在本实验中,我们研究了面神经打击模型中GDNF mRNA表达的特征;结合其他学者的实验结果;并分析了GDNF在受损运动神经再生过程中所起的作用。

方法

我们用打击枪以10 m/s的打击速度和7.5 J的总打击能量建立兔面神经打击模型。然后在打击后第3、7、14和21天,通过原位杂交检测面神经神经元和轴突中GDNF mRNA的表达。我们计数面神经神经元的表达数量,并与正常面神经神经元和周围面神经进行比较。

结果

在面神经受打击损伤后第3天至第21天,我们检测到面神经神经元中有GDNF mRNA表达。GDNF mRNA表达的峰值出现在第7天,然后面神经神经元的表达数量逐渐减少。在第21天也检测到高水平表达。从第3天到第21天,在雪旺细胞和正常面神经神经元中均未检测到GDNF mRNA表达。

结论

GDNF是一种可被损伤激活的神经营养生长因子(NGF)。GDNF mRNA表达的特征与神经再生过程一致。这些结果表明,GDNF在受损运动神经的再生中起非常重要的作用。

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