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M 型通道调节听觉皮层 2/3 层锥体神经元的固有兴奋性和突触反应。

M-channels modulate the intrinsic excitability and synaptic responses of layer 2/3 pyramidal neurons in auditory cortex.

机构信息

Department of Brain and Cognitive Engineering, Korea University, Seoul, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2012 Oct 5;426(4):448-53. doi: 10.1016/j.bbrc.2012.08.057. Epub 2012 Aug 17.

Abstract

Neurons in the auditory cortex are believed to utilize temporal patterns of neural activity to accurately process auditory information but the intrinsic neuronal mechanism underlying the control of auditory neural activity is not known. The slowly activating, persistent K(+) channel, also called M-channel that belongs to the Kv7 family, is already known to be important in regulating subthreshold neural excitability and synaptic summation in neocortical and hippocampal pyramidal neurons. However, its functional role in the primary auditory cortex (A1) has never been characterized. In this study, we investigated the roles of M-channels on neuronal excitability, short-term plasticity, and synaptic summation of A1 layer 2/3 regular spiking pyramidal neurons with whole-cell current-clamp recordings in vitro. We found that blocking M-channels with a selective M-channel blocker, XE991, significantly increased neural excitability of A1 layer 2/3 pyramidal neurons. Furthermore, M-channels controled synaptic responses of intralaminar-evoked excitatory postsynaptic potentials (EPSPs); XE991 significantly increased EPSP amplitude, decreased the rate of short-term depression, and increased the synaptic summation. These results suggest that M-channels are involved in controlling spike output patterns and synaptic responses of A1 layer 2/3 pyramidal neurons, which would have important implications in auditory information processing.

摘要

听觉皮层中的神经元被认为利用神经活动的时间模式来准确地处理听觉信息,但控制听觉神经活动的内在神经元机制尚不清楚。缓慢激活的、持续的 K(+)通道,也称为 Kv7 家族的 M 通道,已知在调节新皮层和海马锥体神经元的亚阈值神经兴奋性和突触总和方面非常重要。然而,其在初级听觉皮层 (A1) 中的功能作用尚未得到描述。在这项研究中,我们通过体外全细胞膜片钳记录研究了 M 通道在 A1 层 2/3 规则放电锥体神经元的神经元兴奋性、短期可塑性和突触总和中的作用。我们发现,用选择性 M 通道阻断剂 XE991 阻断 M 通道可显著增加 A1 层 2/3 锥体神经元的神经兴奋性。此外,M 通道控制皮层内诱发的兴奋性突触后电位 (EPSP)的反应;XE991 显著增加 EPSP 幅度,降低短期抑郁率,并增加突触总和。这些结果表明,M 通道参与控制 A1 层 2/3 锥体神经元的尖峰输出模式和突触反应,这对听觉信息处理具有重要意义。

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