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GABA(B) 受体介导的突触前抑制通过大鼠皮层桶状皮层内皮层轴突逆转了突触作用的柱间共变性。

GABA(B) receptor-mediated presynaptic inhibition reverses inter-columnar covariability of synaptic actions by intracortical axons in the rat barrel cortex.

机构信息

Department of Neuroscience and Oral Physiology, Osaka University Graduate School of Dentistry, Suita, Osaka, Japan.

出版信息

Eur J Neurosci. 2013 Jan;37(2):190-202. doi: 10.1111/ejn.12041. Epub 2012 Nov 8.

DOI:10.1111/ejn.12041
PMID:23134516
Abstract

Intracortical axons originating from pyramidal cells in layer 3 of the rat somatosensory cortex are shared between adjacent columns, and receive the presynaptic inhibition that is mediated by the GABA(B) receptor. Synaptic actions by intracortical axons of single layer 3 pyramidal cells covary between the two adjacent columns in response to stimulation of layer 3 of either column. We examined whether GABA(B) receptor-mediated presynaptic inhibition affects the covariability of synaptic actions by intracortical axons between adjacent columns in slice preparations of the rat barrel cortex. Paired stimulations of superficial layer 3 evoked first and second excitatory postsynaptic currents (EPSCs) of varying amplitudes, yielding varying paired-pulse depression of EPSCs in layer 3 pyramidal cells that were located in the stimulated column, but not in its adjacent column. The amplitude of the second EPSC was inversely proportional to that of the first EPSC in layer 3 pyramidal cells in the stimulated column, yielding a negative correlation coefficient between the first and second EPSCs. Baclofen and CGP55845 attenuated paired-pulse depression and abolished the inverse relationship. Simultaneous recordings from two layer 3 pyramidal cells in the stimulated and adjacent columns revealed a positive correlation between the paired first EPSC amplitudes and a negative correlation between the paired second EPSC amplitudes, which, respectively, indicate the positive and negative covariability of synaptic actions by intracortical axons between the two adjacent columns. These results suggest that GABA(B) receptor-mediated presynaptic inhibition can reverse the positive covariability of inter-columnar synaptic actions, which may serve as a basis for inter-columnar desynchronisation.

摘要

发自大鼠体感皮层第 3 层锥体神经元的皮质内轴突分布于相邻柱内,接受 GABA(B) 受体介导的突触前抑制。对任一一侧柱第 3 层的刺激,均可引起来自同一层 3 个锥体神经元的皮质内轴突的突触反应在其两侧相邻柱之间发生共变。我们在大鼠桶状皮层的切片标本中观察了 GABA(B) 受体介导的突触前抑制是否会影响相邻柱间皮质内轴突的突触反应共变。浅层 3 层的成对刺激可诱发具有不同幅度的第 1 及第 2 个兴奋性突触后电流(EPSC),从而在被刺激柱内的第 3 层锥体神经元中引起 EPSC 的成对脉冲抑制(paired-pulse depression,PPD),而在其相邻柱内则不会。第 2 个 EPSC 的幅度与被刺激柱内第 3 层锥体神经元第 1 个 EPSC 的幅度成反比,导致第 1 及第 2 个 EPSC 之间存在负相关系数。巴氯芬和 CGP55845 可减弱 PPD 并消除这种负相关。对来自被刺激柱和相邻柱内的 2 个第 3 层锥体神经元的同步记录显示,配对第 1 个 EPSC 幅度之间呈正相关,配对第 2 个 EPSC 幅度之间呈负相关,这分别表明两个相邻柱间皮质内轴突的突触反应具有正相关和负相关的共变。这些结果提示 GABA(B) 受体介导的突触前抑制可以逆转柱间突触反应的正相关共变,这可能是柱间去同步的基础。

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