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关于GABA(B)受体对自发性棘波和慢波放电期间发生的电活动的假定贡献。

On the putative contribution of GABA(B) receptors to the electrical events occurring during spontaneous spike and wave discharges.

作者信息

Charpier S, Leresche N, Deniau J M, Mahon S, Hughes S W, Crunelli V

机构信息

Neurochimie-Anatomie, Institut des Neurosciences, UMR 7624, Université Pierre et Marie Curie, Paris, France.

出版信息

Neuropharmacology. 1999 Nov;38(11):1699-706. doi: 10.1016/s0028-3908(99)00139-2.

Abstract

Cortical and thalamic neurones play a major role in the generation/expression of spike and wave discharges (SWDs), the main electroencephalographic (EEG) feature of absence seizures. The detailed mechanisms leading to this paroxysmal EEG activity, however, are still poorly understood. We have now made in vivo intracellular recordings from layer V cortical neurones of the facial motor cortex and from thalamocortical (TC) neurones of the ventroposteromedial and ventroposterolateral nuclei in a well established model of this disease: the Genetic Absence Epilepsy Rats from Strasbourg (GAERS). The main feature of the intracellularly recorded activity of TC neurones during spontaneous SWDs was the presence of rhythmic sequences of synaptic potentials consisting of an EPSP closely followed by 2-6 IPSPs. These rhythmic sequences were superimposed on a small tonic hyperpolarization that lasted for the whole duration of the SWD and was still present at potentials close to -85 mV. The rhythmic IPSPs, on the other hand, had a reversal potential of -68 mV, and always appeared as depolarizing events when recording with KCl-filled electrodes at -55 mV. Low frequency electrical stimulation of the corresponding cortical area evoked in TC neurones a short and a long lasting IPSP, whose waveforms were reminiscent of a GABA(A) and a GABA(B) IPSP, respectively. The main feature of the intracellular activity recorded in cortical neurones during spontaneous SWDs was the presence of rhythmic depolarizations. Their frequency was similar to the one of SWDs in the EEG, and was not affected by DC injection. The amplitude of the rhythmic depolarizations, however, increased following steady hyperpolarization of the neurone by DC injection. An increase in the apparent input resistance of cortical neurones was observed during SWDs compared to the inter-SWDs periods. Low frequency electrical stimulation of the contralateral striatum evoked in cortical neurones a short and a long lasting IPSP, whose waveforms were reminiscent of a GABA(A) and a GABA(B) IPSP, respectively. Our data indicate that there are no rhythmic GABA(B) IPSPs and low threshold Ca2+ potentials in GAERS TC neurones during SWDs, but rhythmic sequences of EPSP/IPSPs superimposed on a tonic hyperpolarization that might represent a long lasting GABA(B) IPSP. Further experiments are required to clarify the nature of the voltage waveform and the increase in input resistance observed in cortical neurones during spontaneous SWDs in GAERS.

摘要

皮质和丘脑神经元在棘波和慢波放电(SWDs)的产生/表达中起主要作用,SWDs是失神发作的主要脑电图(EEG)特征。然而,导致这种阵发性EEG活动的详细机制仍知之甚少。在该疾病的一个成熟模型:来自斯特拉斯堡的遗传性失神癫痫大鼠(GAERS)中,我们现在对面部运动皮质的V层皮质神经元以及腹后内侧核和腹后外侧核的丘脑皮质(TC)神经元进行了体内细胞内记录。在自发SWDs期间,TC神经元细胞内记录活动的主要特征是存在由一个EPSP紧接着2 - 6个IPSP组成的突触电位的节律性序列。这些节律性序列叠加在一个小的持续性超极化上,该超极化在整个SWD期间持续存在,并且在接近 - 85 mV的电位时仍然存在。另一方面,节律性IPSP的反转电位为 - 68 mV,并且在用 - 55 mV的KCl填充电极记录时,总是表现为去极化事件。对相应皮质区域的低频电刺激在TC神经元中诱发一个短时和一个长时的IPSP,其波形分别让人联想到GABA(A)和GABA(B)型IPSP。在自发SWDs期间,皮质神经元中记录的细胞内活动的主要特征是存在节律性去极化。其频率与EEG中SWDs的频率相似,并且不受直流注入的影响。然而,在通过直流注入使神经元稳定超极化后,节律性去极化的幅度增加。与SWD间期相比,在SWDs期间观察到皮质神经元的表观输入电阻增加。对侧纹状体的低频电刺激在皮质神经元中诱发一个短时和一个长时的IPSP,其波形分别让人联想到GABA(A)和GABA(B)型IPSP。我们的数据表明,在GAERS的TC神经元中,在SWDs期间不存在节律性GABA(B)型IPSP和低阈值Ca2+电位,但存在叠加在一个持续性超极化上的EPSP/IPSP的节律性序列,该超极化可能代表一个持久的GABA(B)型IPSP。需要进一步的实验来阐明在GAERS自发SWDs期间皮质神经元中观察到的电压波形的性质和输入电阻的增加。

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