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未成熟去极化GABA能突触处的时间编码

Temporal coding at the immature depolarizing GABAergic synapse.

作者信息

Valeeva Guzel, Abdullin Azat, Tyzio Roman, Skorinkin Andrei, Nikolski Evgeny, Ben-Ari Yehezkiel, Khazipov Rustem

机构信息

Institut de Neurobiologie de la Méditerranée-Institut National de la Santé et de la Recherche Médicale U901, Universite Mediterranean Aix-Marseille II Marseille, France.

出版信息

Front Cell Neurosci. 2010 Jul 14;4. doi: 10.3389/fncel.2010.00017. eCollection 2010.

Abstract

In the developing hippocampus, GABA exerts depolarizing and excitatory actions and contributes to the generation of neuronal network driven giant depolarizing potentials (GDPs). Here, we studied spike time coding at immature GABAergic synapses and its impact on synchronization of the neuronal network during GDPs in the neonatal (postnatal days P2-6) rat hippocampal slices. Using extracellular recordings, we found that the delays of action potentials (APs) evoked by synaptic activation of GABA(A) receptors are long (mean, 65 ms) and variable (within a time window of 10-200 ms). During patch-clamp recordings, depolarizing GABAergic responses were mainly subthreshold and their amplification by persistent sodium conductance was required to trigger APs. AP delays at GABAergic synapses shortened and their variability reduced with an increase in intracellular chloride concentration during whole-cell recordings. Negative shift of the GABA reversal potential (E(GABA)) with low concentrations of bumetanide, or potentiation of GABA(A) receptors with diazepam reduced GDPs amplitude, desynchronized neuronal firing during GDPs and slowed down GDPs propagation. Partial blockade of GABA(A) receptors with bicuculline increased neuronal synchronization and accelerated GDPs propagation. We propose that spike timing at depolarizing GABA synapses is determined by intracellular chloride concentration. At physiological levels of intracellular chloride GABAergic depolarization does not reach the action potential threshold and amplification of GABAergic responses by non-inactivating sodium conductance is required for postsynaptic AP initiation. Slow and variable excitation at GABAergic synapse determines the level of neuronal synchrony and the rate of GDPs propagation in the developing hippocampus.

摘要

在发育中的海马体中,γ-氨基丁酸(GABA)发挥去极化和兴奋作用,并有助于神经元网络驱动的巨大去极化电位(GDPs)的产生。在此,我们研究了新生(出生后第2 - 6天)大鼠海马体切片中未成熟GABA能突触处的峰时间编码及其对GDPs期间神经元网络同步的影响。通过细胞外记录,我们发现GABA(A)受体突触激活诱发的动作电位(APs)延迟很长(平均65毫秒)且具有变异性(在10 - 200毫秒的时间窗口内)。在膜片钳记录期间,去极化的GABA能反应主要是阈下的,需要通过持续性钠电导对其进行放大才能触发动作电位。在全细胞记录过程中,随着细胞内氯离子浓度的增加,GABA能突触处的动作电位延迟缩短且变异性降低。用低浓度布美他尼使GABA反转电位(E(GABA))负向移动,或用地西泮增强GABA(A)受体,会降低GDPs幅度、使GDPs期间的神经元放电去同步化并减缓GDPs传播。用荷包牡丹碱部分阻断GABA(A)受体会增加神经元同步性并加速GDPs传播。我们提出,去极化GABA突触处的峰时间由细胞内氯离子浓度决定。在细胞内氯离子的生理水平下,GABA能去极化未达到动作电位阈值,非失活性钠电导对GABA能反应的放大是突触后动作电位起始所必需的。GABA能突触处缓慢且可变的兴奋决定了发育中海马体中神经元同步的水平和GDPs传播的速率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9386/2914581/6d7720093486/fncel-04-00017-g001.jpg

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