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钙通过 N 型通道内流和 SK 及 TRP 样通道的激活调节大鼠室旁丘脑神经元的紧张性放电。

Calcium influx through N-type channels and activation of SK and TRP-like channels regulates tonic firing of neurons in rat paraventricular thalamus.

机构信息

Ottawa Hospital Research Institute, Ottawa, Ontario, Canada; and.

出版信息

J Neurophysiol. 2013 Nov;110(10):2450-64. doi: 10.1152/jn.00363.2013. Epub 2013 Sep 4.

Abstract

The thalamus is a major relay and integration station in the central nervous system. While there is a large body of information on the firing and network properties of neurons contained within sensory thalamic nuclei, less is known about the neurons located in midline thalamic nuclei, which are thought to modulate arousal and homeostasis. One midline nucleus that has been implicated in mediating stress responses is the paraventricular nucleus of the thalamus (PVT). Like other thalamic neurons, these neurons display two distinct firing modes, burst and tonic. In contrast to burst firing, little is known about the ionic mechanisms modulating tonic firing in these cells. Here we performed a series of whole cell recordings to characterize tonic firing in PVT neurons in acute rat brain slices. We found that PVT neurons are able to fire sustained, low-frequency, weakly accommodating trains of action potentials in response to a depolarizing stimulus. Unexpectedly, PVT neurons displayed a very high propensity to enter depolarization block, occurring at stimulus intensities that would elicit tonic firing in other thalamic neurons. The tonic firing behavior of these cells is modulated by a functional interplay between N-type Ca(2+) channels and downstream activation of small-conductance Ca(2+)-dependent K(+) (SK) channels and a transient receptor potential (TRP)-like conductance. Thus these ionic conductances endow PVT neurons with a narrow dynamic range, which may have fundamental implications for the integrative properties of this nucleus.

摘要

丘脑是中枢神经系统的主要中继和整合站。虽然有大量关于感觉丘脑核内神经元的放电和网络特性的信息,但对于位于中线丘脑核内的神经元知之甚少,这些神经元被认为调节觉醒和稳态。中线核之一被认为在介导应激反应中起作用,即丘脑室旁核(PVT)。与其他丘脑神经元一样,这些神经元显示出两种不同的放电模式,爆发和紧张。与爆发放电相比,对于调节这些细胞紧张放电的离子机制知之甚少。在这里,我们在急性大鼠脑切片中进行了一系列全细胞记录,以表征 PVT 神经元的紧张放电。我们发现 PVT 神经元能够在响应去极化刺激时产生持续的、低频的、适应性差的动作电位串。出乎意料的是,PVT 神经元表现出非常高的进入去极化阻断的倾向,这种阻断发生在刺激强度会引发其他丘脑神经元紧张放电的情况下。这些细胞的紧张放电行为受到 N 型钙 (Ca 2 +) 通道的功能相互作用以及下游小电导钙 (Ca 2 +) 依赖性钾 (SK) 通道和瞬时受体电位 (TRP) 样电导的激活的调节。因此,这些离子电导赋予 PVT 神经元一个狭窄的动态范围,这可能对这个核的整合特性具有根本意义。

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