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汇聚性皮质输入的同时刺激增强纹状体内即刻早期基因的诱导。

Coincident stimulation of convergent cortical inputs enhances immediate early gene induction in the striatum.

作者信息

Miyachi S, Hasegawa Y T, Gerfen C R

机构信息

Section on Neuroanatomy, Laboratory of Systems Neuroscience, National Institute of Mental Health, Building 35, Room 3A-1000, 35 Convent Drive, Bethesda, MD 20892, USA.

出版信息

Neuroscience. 2005;134(3):1013-22. doi: 10.1016/j.neuroscience.2005.02.051.

Abstract

The effect of coincident stimulation of convergent corticostriatal inputs was analyzed by the induction of immediate early genes in striatal neurons. Cortical motor areas were stimulated through implanted electrodes in awake, behaving rats, and the induction of the mRNAs encoding the immediate early genes (IEGs) c-fos and arc was analyzed in the striatum with in situ hybridization histochemistry. In the first experiment, unilateral stimulation of the medial agranular cortex, orofacial region of the lateral agranular cortex or the forelimb region of the lateral agranular cortex resulted in IEG induction in the striatum, which was restricted to the topographically related area receiving input from the stimulated cortical area. In a second experiment, stimulation parameters were altered, including frequency, number of pulses/train, and number of trains/s. These parameters did not have a significant effect on IEG induction. Notably, in some cases, in which there was IEG induction not only in the stimulated cortical region, but also in the homologous area in the contralateral hemisphere, very robust IEG induction was observed in the striatum. In a third experiment, the orofacial regions of the lateral agranular cortex of both hemispheres were stimulated coincidently. All of these animals showed robust striatal IEG induction. This IEG induction was attenuated by pretreatment with an NMDA antagonist MK-801. In a fourth experiment, we tested whether the coincidence of bilateral cortical stimulation contributed to the efficacy of striatal IEG induction. Either alternating stimulation or coincident stimulation of non-homologous cortical regions produced significantly lower striatal IEG induction than obtained with coincident stimulation of homologous cortical areas. Enhanced striatal IEG induction occurred in indirect striatal neurons, labeled with enkephalin, but was also present in a large number of enkephalin-negative neurons, most of which are likely direct pathway neurons. These results suggest that regional and temporal convergence of cortical inputs enhances striatal IEG induction.

摘要

通过诱导纹状体神经元中的即刻早期基因,分析了汇聚性皮质纹状体输入的同步刺激效应。在清醒、行为活动的大鼠中,通过植入电极刺激皮质运动区,并利用原位杂交组织化学技术分析纹状体中编码即刻早期基因(IEGs)c-fos和arc的mRNA的诱导情况。在第一个实验中,单侧刺激内侧无颗粒皮质、外侧无颗粒皮质的口面部区域或外侧无颗粒皮质的前肢区域,导致纹状体中IEG的诱导,其局限于接受来自受刺激皮质区域输入的地形相关区域。在第二个实验中,改变了刺激参数,包括频率、每串脉冲数和每秒串数。这些参数对IEG诱导没有显著影响。值得注意地是,在某些情况下,不仅在受刺激的皮质区域有IEG诱导,而且在对侧半球的同源区域也有IEG诱导,此时在纹状体中观察到非常强烈的IEG诱导。在第三个实验中,同时刺激双侧半球外侧无颗粒皮质的口面部区域。所有这些动物均表现出强烈的纹状体IEG诱导。这种IEG诱导被NMDA拮抗剂MK-801预处理所减弱。在第四个实验中,我们测试了双侧皮质刺激的同步性是否有助于纹状体IEG诱导的效力。交替刺激或非同源皮质区域的同步刺激所产生的纹状体IEG诱导明显低于同源皮质区域同步刺激所获得的诱导。增强的纹状体IEG诱导发生在标记有脑啡肽的间接纹状体神经元中,但也存在于大量脑啡肽阴性神经元中,其中大多数可能是直接通路神经元。这些结果表明,皮质输入的区域和时间汇聚增强了纹状体IEG诱导。

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