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杏仁核和角束点燃发展中即刻早期基因表达的解剖学分布差异。

Differences in the anatomic distribution of immediate-early gene expression in amygdala and angular bundle kindling development.

作者信息

Hosford D A, Simonato M, Cao Z, Garcia-Cairasco N, Silver J M, Butler L, Shin C, McNamara J O

机构信息

Division of Neurology, Duke University, Durham, North Carolina 27710.

出版信息

J Neurosci. 1995 Mar;15(3 Pt 2):2513-23. doi: 10.1523/JNEUROSCI.15-03-02513.1995.

Abstract

Kindling is a model in which fleeting changes of neuronal activity produce a lifelong modification of neuronal structure and function in the mature nervous system. Immediate-early genes (IEGs) such as c-fos have been implicated as a causal link in the chain of molecular events coupling fleeting pathologic activity to lasting hyperexcitability. Identification of the brain structures exhibiting IEG expression during the evolution of kindling is necessary to guide investigations of the phenotypic consequences. We used in situ hybridization histochemistry to identify the structures exhibiting expression of multiple IEGs during the evolution of amygdala kindling and compared this to the pattern following angular bundle kindling. The principal findings included that: (1) generalized limbic and clonic motor (class 5) kindled seizures evoked by stimulation of one amygdala induced the expression of IEGs in a small subset of limbic structures with remarkable symmetry between the two hemispheres; (2) the anatomic extent of seizure-evoked expression of c-fos mRNA expanded progressively following focal limbic and motor (classes 0-3) seizures during the development of amygdala kindling; c-fos mRNA was detected first ipsilaterally in AM, ACO, and PC and with higher-class seizures in hippocampal formation and homologous structures contralaterally, and (3) class 5 seizures evoked by stimulation of two different sites in the limbic system (amygdala or angular bundle) induced IEG expression in distinct but partially overlapping anatomic structures. We propose that synaptic activation of glutamate receptors contributes to the expression of these diverse IEGs throughout the forebrain. The findings provide a constellation of anatomic structures in which to investigate the structural and functional consequences of IEG expression.

摘要

点燃效应是一种模型,其中神经元活动的短暂变化会在成熟神经系统中产生神经元结构和功能的终身改变。诸如c-fos等即刻早期基因(IEGs)被认为是将短暂的病理活动与持久的过度兴奋联系起来的分子事件链中的因果联系。确定在点燃效应演变过程中表现出IEG表达的脑结构对于指导对表型后果的研究是必要的。我们使用原位杂交组织化学来确定在杏仁核点燃效应演变过程中表现出多种IEG表达的结构,并将其与角束点燃效应后的模式进行比较。主要发现包括:(1)刺激一侧杏仁核诱发的全身性边缘性和阵挛性运动(5级)点燃性癫痫在一小部分边缘结构中诱导了IEG的表达,且两半球之间具有明显的对称性;(2)在杏仁核点燃效应发展过程中,局灶性边缘性和运动性(0-3级)癫痫发作后,癫痫诱发的c-fos mRNA表达的解剖范围逐渐扩大;c-fos mRNA首先在同侧的杏仁核、前连合核和梨状皮质中被检测到,在更高级别的癫痫发作时,在对侧的海马结构和同源结构中也能检测到,(3)刺激边缘系统中两个不同部位(杏仁核或角束)诱发的5级癫痫在不同但部分重叠的解剖结构中诱导了IEG表达。我们提出谷氨酸受体的突触激活有助于整个前脑这些不同IEG的表达。这些发现提供了一系列解剖结构,可用于研究IEG表达的结构和功能后果。

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