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发育性突触变化增加了一个已确定的兴奋性新皮质连接的整合能力范围。

Developmental synaptic changes increase the range of integrative capabilities of an identified excitatory neocortical connection.

作者信息

Angulo M C, Staiger J F, Rossier J, Audinat E

机构信息

Neurobiologie et Diversité Cellulaire, Centre National de la Recherche Scientifique, Unité Mixte de Recherche 7637, Ecole Supérieure de Physique et de Chimie Industrielles de la ville de Paris, 75231 Paris Cedex 5, France.

出版信息

J Neurosci. 1999 Mar 1;19(5):1566-76. doi: 10.1523/JNEUROSCI.19-05-01566.1999.

Abstract

Excitatory synaptic transmission between pyramidal cells and fast-spiking (FS) interneurons of layer V of the motor cortex was investigated in acute slices by using paired recordings at 30 degrees C combined with morphological analysis. The presynaptic and postsynaptic properties at these identified central synapses were compared between 3- and 5-week-old rats. At these two postnatal developmental stages, unitary EPSCs were mediated by the activation of AMPA receptors with fast kinetics at a holding potential of -72 mV. The amplitude distribution analysis of the EPSCs indicates that, at both stages, pyramidal-FS connections consisted of multiple functional release sites. The apparent quantal size obtained by decreasing the external calcium ([Ca2+]e) varied from 11 to 29 pA near resting membrane potential. In young rats, pairs of presynaptic action potentials elicited unitary synaptic responses that displayed paired-pulse depression at all tested frequencies. In older animals, inputs from different pyramidal cells onto the same FS interneuron had different paired-pulse response characteristics and, at most of these connections, a switch from depression to facilitation occurred when decreasing the rate of presynaptic stimulation. The balance between facilitation and depression endows pyramidal-FS connections from 5-week-old animals with wide integrative capabilities and confers unique functional properties to each synapse.

摘要

在30℃下,通过配对记录结合形态学分析,在急性脑片中研究了运动皮层V层锥体细胞与快突触发放(FS)中间神经元之间的兴奋性突触传递。比较了3周龄和5周龄大鼠这些已确定的中枢突触的突触前和突触后特性。在这两个出生后发育阶段,在-72 mV的钳制电位下,单位兴奋性突触后电流(EPSCs)由具有快速动力学的AMPA受体激活介导。EPSCs的幅度分布分析表明,在两个阶段,锥体神经元与FS中间神经元的连接都由多个功能性释放位点组成。通过降低细胞外钙浓度([Ca2+]e)获得的表观量子大小在静息膜电位附近为11至29 pA。在幼鼠中,成对的突触前动作电位引发的单位突触反应在所有测试频率下均表现出双脉冲抑制。在成年动物中,来自不同锥体神经元对同一FS中间神经元的输入具有不同的双脉冲反应特征,并且在大多数这些连接中,当降低突触前刺激频率时,会出现从抑制到易化的转变。易化和抑制之间的平衡赋予5周龄动物的锥体神经元与FS中间神经元连接广泛的整合能力,并赋予每个突触独特的功能特性。

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