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三种体外模型中癫痫样放电起始和传播的层流分析

Laminar analysis of initiation and spread of epileptiform discharges in three in vitro models.

作者信息

Borbély S, Halasy K, Somogyvári Z, Détári L, Világi I

机构信息

Department of Physiology and Neurobiology, Eötvös University, 1117, Budapest Pázmány P. sétány 1-C, Hungary.

出版信息

Brain Res Bull. 2006 Mar 31;69(2):161-7. doi: 10.1016/j.brainresbull.2005.11.018. Epub 2005 Dec 19.

Abstract

Overexcitation of neuronal networks in some forebrain structures and pathological synchronization of neuronal activity play crucial role in epileptic seizures. Seizure activity can be elicited experimentally by different convulsants. Because of various distribution of excitatory and inhibitory connections in the neocortex there might be laminar differences in seizure sensitivity. Current source density (CSD) analysis or immunocytochemical c-Fos localization offer suitable tools to localize increased activation of neurons during seizure. In the present experiments, interictal epileptiform activity elicited by 4-aminopiridine, bicuculline or Mg(2+)-free solution was recorded with a 16-channel multielectrode assembly in different layers of the somatosensory cortex, and CSDs were calculated. Parallel c-Fos immunocytochemistry was applied. Each convulsant elicited characteristic activation pattern. 4-aminopiridine induced relatively short discharges, which were associated with a huge sink in layer V, the sink and source pattern was relatively simple. Mg(2+)-free solution elicited the longest discharges, sinks appeared typically in the supragranular layers II and III than quickly distributed toward layers V and VI. Bicuculline induced rather similar seizure pattern as Mg(2+)-free solution, but the amplitudes of field potentials were larger, while the durations shorter. The peak of c-Fos activation, however, was not parallel with the largest electrical activation. Larger amount of stained cells appeared in layers II and III in 4-aminopiridine and bicuculline, respectively. In Mg(2+)-free solution the highest c-Fos activity was detected in upper layer VI. Long-lasting cellular effects do not always correspond to the largest electrical responses, which are primarily determined by the activation of asymmetrical pyramidal neurons. Interneurons, which possess more symmetric process arborisation, play less important role in the generation of field potentials, although they may be intensively activated during seizure.

摘要

某些前脑结构中神经网络的过度兴奋以及神经元活动的病理性同步在癫痫发作中起关键作用。癫痫发作活动可通过不同的惊厥剂实验性诱发。由于新皮质中兴奋性和抑制性连接的分布各异,癫痫发作敏感性可能存在层状差异。电流源密度(CSD)分析或免疫细胞化学c-Fos定位提供了合适的工具来定位癫痫发作期间神经元激活增加的部位。在本实验中,用16通道多电极组件在体感皮质的不同层记录了由4-氨基吡啶、荷包牡丹碱或无镁溶液诱发的发作间期癫痫样活动,并计算了CSD。同时进行了c-Fos免疫细胞化学实验。每种惊厥剂都诱发了特征性的激活模式。4-氨基吡啶诱发相对短暂的放电,与V层中的巨大负电位相关,负电位和正电位模式相对简单。无镁溶液诱发的放电时间最长,负电位通常出现在颗粒上层II和III,然后迅速向V层和VI层分布。荷包牡丹碱诱发的癫痫发作模式与无镁溶液相当相似,但场电位的幅度更大,而持续时间更短。然而,c-Fos激活峰值与最大电激活并不平行。在4-氨基吡啶和荷包牡丹碱作用下,分别在II层和III层出现较多的染色细胞。在无镁溶液中,在上层VI检测到最高的c-Fos活性。持久的细胞效应并不总是与最大电反应相对应,最大电反应主要由不对称锥体神经元的激活决定。中间神经元具有更对称的树突分支,在场电位的产生中起的作用较小,尽管它们在癫痫发作期间可能被强烈激活。

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