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尾状核-壳核注射鹅膏蕈氨酸损伤后大鼠黑质中谷氨酸脱羧酶mRNA表达增加。

Increased expression of glutamic acid decarboxylase mRNA in rat substantia nigra after an ibotenic acid lesion in the caudate-putamen.

作者信息

Lindefors N, Brené S, Persson H

机构信息

Department of Medical Chemistry, Karolinska Institutet, Stockholm, Sweden.

出版信息

Brain Res Mol Brain Res. 1990 Apr;7(3):207-12. doi: 10.1016/0169-328x(90)90029-d.

Abstract

In situ hybridization histochemistry and RNA blots were used to study expression of glutamic acid decarboxylase (GAD) mRNA in rat caudate-nucleus and substantia nigra. In situ hybridization combined with computerized image analysis revealed that in the intact substantia nigra reticulata the cross-section area of GAD mRNA positive neurons were 25% larger in the dorsolateral part as compared with the ventromedial part. A unilateral ibotenic acid injection in caudate-putamen lesioned neurons, some of which project to the ipsilateral substantia nigra. An increased level of GAD mRNA was observed in substantia nigra ipsilateral to the lesion. Computerized image analysis of sections from in situ hybridization revealed an increase in the number of silver grains over GAD mRNA positive neurons in the dorsolateral substantia nigra reticulata ipsilateral to the lesion. However, no change was observed in the ventromedial part suggesting that GAD mRNA expression in this part of the nigra is less sensitive to inhibition by caudate-putamen afferents. In agreement with in situ experiments, RNA blots showed a 2-fold increased level of GAD mRNA in substantia nigra ipsilateral to the lesion. The increased GAD mRNA expression in the deafferented substantia nigra suggests a disinhibition of nigral GABA neurons, resulting in an increased utilization of GABA in these substantia nigra neurons.

摘要

采用原位杂交组织化学和RNA印迹法研究大鼠尾状核和黑质中谷氨酸脱羧酶(GAD)mRNA的表达。原位杂交结合计算机图像分析显示,在完整的黑质网状部,背外侧部GAD mRNA阳性神经元的横截面积比腹内侧部大25%。向尾状核-壳核单侧注射鹅膏蕈氨酸可损伤神经元,其中一些神经元投射至同侧黑质。在损伤同侧的黑质中观察到GAD mRNA水平升高。对原位杂交切片进行计算机图像分析显示,损伤同侧背外侧黑质网状部GAD mRNA阳性神经元上的银颗粒数量增加。然而,腹内侧部未观察到变化,这表明黑质该部位的GAD mRNA表达对尾状核-壳核传入纤维的抑制作用不太敏感。与原位实验结果一致,RNA印迹显示损伤同侧黑质中GAD mRNA水平增加了2倍。去传入神经的黑质中GAD mRNA表达增加提示黑质GABA能神经元的去抑制作用,导致这些黑质神经元中GABA的利用增加。

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