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边缘性癫痫发作期间脑代谢和原癌基因c-fos的激活:蓝斑的作用。

Activation of brain metabolism and fos during limbic seizures: the role of locus coeruleus.

作者信息

Giorgi Filippo S, Blandini Fabio, Cantafora Emanuela, Biagioni Francesca, Armentero Marie-Therese, Pasquali Livia, Orzi Francesco, Murri Luigi, Paparelli Antonio, Fornai Francesco

机构信息

Department of Human Morphology and Applied Biology, University of Pisa, Pisa, Italy; Department of Neurosciences, Section of Neurology, University of Pisa, Pisa, Italy; Centro Studi e Ricerche 'E. Fermi', Roma, Italy.

Laboratory of Functional Neurochemistry, Neurological Institute 'C. Mondino', Pavia, Italy.

出版信息

Neurobiol Dis. 2008 Jun;30(3):388-399. doi: 10.1016/j.nbd.2008.02.008. Epub 2008 Mar 6.

Abstract

The noradrenergic nucleus Locus Coeruleus (LC) densely innervates limbic structures. In rats, the damage to LC by the neurotoxin DSP-4, converts episodic limbic seizures induced by bicuculline infusion in the anterior piriform cortex (APC) into self-sustaining status epilepticus (SE). SE induced by this approach is similar to SE induced by co-infusing cyclothiazide and bicuculline into APC in rats bearing an intact LC. As opposed to other commonly used rat SE models (e.g. systemic kainate or pilocarpine), this approach allows one to analyze the effects of SE on brain regions which are solely due to spreading of seizure activity, rather than to direct effect of systemic chemoconvulsant. We evaluated the expression of Fos protein (an immediate early gene product), and the local cerebral metabolic rates for [14C] 2-deoxyglucose (lCMRglc), in rats following SE induced either by cyclothiazide+bicuculline or by DSP-4+bicuculline. We demonstrated that regional Fos expression after SE does not parallel the increase in lCMRglc, in LC-lesioned rats. In DSP-4+bicuculline rats there is an overall lower expression of the protein as compared with the cyclothiazide+bicuculline or bicuculline alone groups; even more, such a difference co-exists with an higher lCMRglc in the DSP-4+bicuculline-treated rats in some regions, as compared with the other groups. These data show that LC neurons play an important role in determining immediate early genes expression even in conditions of strong pathological activation, such as limbic SE. This might have relevant effects in the plastic mechanisms related with epileptogenesis.

摘要

去甲肾上腺素能蓝斑核(LC)密集地支配着边缘系统结构。在大鼠中,神经毒素DSP-4对LC的损伤会将在前梨状皮质(APC)中注射荷包牡丹碱诱发的发作性边缘系统癫痫转变为持续性癫痫状态(SE)。通过这种方法诱发的SE与在LC完整的大鼠中向APC联合注射环噻嗪和荷包牡丹碱诱发的SE相似。与其他常用的大鼠SE模型(如全身注射海人藻酸或毛果芸香碱)不同,这种方法能够让人分析SE对仅由癫痫活动扩散而非全身化学惊厥剂直接作用导致的脑区的影响。我们评估了在环噻嗪+荷包牡丹碱或DSP-4+荷包牡丹碱诱发SE后的大鼠中Fos蛋白(一种即早基因产物)的表达以及[14C] 2-脱氧葡萄糖的局部脑代谢率(lCMRglc)。我们证明,在LC损伤的大鼠中,SE后的区域Fos表达与lCMRglc的增加并不平行。与环噻嗪+荷包牡丹碱组或单独使用荷包牡丹碱组相比,DSP-4+荷包牡丹碱组大鼠中该蛋白的总体表达更低;甚至在某些区域,与其他组相比,DSP-4+荷包牡丹碱处理的大鼠中这种差异与更高的lCMRglc同时存在。这些数据表明,即使在强烈的病理激活条件下,如边缘系统SE,LC神经元在决定即早基因表达中也起着重要作用。这可能对与癫痫发生相关的可塑性机制产生相关影响。

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