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在尖波活动期间,小白蛋白阳性篮状细胞中树突动作电位的反向传播增强。

Enhanced dendritic action potential backpropagation in parvalbumin-positive basket cells during sharp wave activity.

作者信息

Chiovini Balázs, Turi Gergely F, Katona Gergely, Kaszás Attila, Erdélyi Ferenc, Szabó Gábor, Monyer Hannah, Csákányi Attila, Vizi E Sylvester, Rózsa Balázs

机构信息

Institute of Experimental Medicine, Hungarian Academy of Sciences, Szigony str 43, 1083 Budapest, Hungary.

出版信息

Neurochem Res. 2010 Dec;35(12):2086-95. doi: 10.1007/s11064-010-0290-4. Epub 2010 Nov 3.

Abstract

In this study two-photon imaging and single cell electrophysiological measurements were carried out in PV+ hippocampal interneurons to compare the dendritic calcium dynamics of somatically evoked backpropagating action potentials (BAPs) and in vitro sharp wave oscillation (SPW) activated BAPs at different distances from the soma. In the case of 300 μm thick, non-oscillating slices, the BAP-evoked Ca(2+) (BAP-Ca(2+)) influx propagated along the dendritic tree in a non-uniform manner and its amplitude gradually reduced when measured at more distal regions. In contrast to the evoked BAP-Ca(2+)s, the spontaneous SPW-induced Ca(2+) influx had only a small distance-dependent decrement. Our results suggest that similarly to nicotinic acetylcholine receptor activation, synaptic activity during hippocampal SPWs increases AP backpropagation into distant dendritic segments. Bath application of Nimodipine, a specific Ca(2+) channel blocker and tetrodotoxine decreased the amplitude of the somatically evoked Ca(2+) influx, which suggests that L-type Ca(2+) channels play an important role both during somatically evoked and SPW-induced BAPs.

摘要

在本研究中,对PV+海马中间神经元进行了双光子成像和单细胞电生理测量,以比较体细胞诱发的反向传播动作电位(BAPs)和体外尖波振荡(SPW)激活的BAPs在距胞体不同距离处的树突钙动力学。在300μm厚的非振荡切片中,BAP诱发的Ca(2+)(BAP-Ca(2+))内流沿树突树以非均匀方式传播,在更远端区域测量时其幅度逐渐减小。与诱发的BAP-Ca(2+)不同,自发的SPW诱导的Ca(2+)内流仅具有很小的距离依赖性衰减。我们的结果表明,与烟碱型乙酰胆碱受体激活类似,海马SPW期间的突触活动增加了动作电位向远处树突段的反向传播。浴用尼莫地平(一种特异性Ca(2+)通道阻滞剂)和河豚毒素降低了体细胞诱发的Ca(2+)内流幅度,这表明L型Ca(2+)通道在体细胞诱发和SPW诱导的BAPs过程中均起重要作用。

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