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调节脚桥核(PPN)中γ频段活动的细胞内机制。

Intracellular mechanisms modulating gamma band activity in the pedunculopontine nucleus (PPN).

作者信息

Luster Brennon R, Urbano Francisco J, Garcia-Rill Edgar

机构信息

Center for Translational Neuroscience, University of Arkansas for Medical Sciences, Little Rock, Arkansas.

IFIBYNE-CONICET, University of Buenos Aires, Buenos Aires, Argentina.

出版信息

Physiol Rep. 2016 Jun;4(12). doi: 10.14814/phy2.12787.

Abstract

The pedunculopontine nucleus is a part of the reticular activating system, and is active during waking and REM sleep. Previous results showed that all PPN cells tested fired maximally at gamma frequencies when depolarized. This intrinsic membrane property was shown to be mediated by high-threshold N- and P/Q-type Ca(2+) channels. Recent studies show that the PPN contains three independent populations of neurons which can generate gamma band oscillations through only N-type channels, only P/Q-type channels, or both N- and P/Q-type channels. This study investigated the intracellular mechanisms modulating gamma band activity in each population of neurons. We performed in vitro patch-clamp recordings of PPN neurons from Sprague-Dawley rat pups, and applied 1-sec ramps to induce intrinsic membrane oscillations. Our results show that there are two pathways modulating gamma band activity in PPN neurons. We describe populations of neurons mediating gamma band activity through only N-type channels and the cAMP/PKA pathway (presumed "REM-on" neurons), through only P/Q-type channels and the CaMKII pathway (presumed "Wake-on" neurons), and a third population which can mediate gamma activity through both N-type channels and cAMP/PK and P/Q-type channels and CaMKII (presumed "Wake/REM-on" neurons). These novel results suggest that PPN gamma oscillations are modulated by two independent pathways related to different Ca(2+) channel types.

摘要

脚桥核是网状激活系统的一部分,在清醒和快速眼动睡眠期间活跃。先前的结果表明,所有测试的脚桥核细胞在去极化时以γ频率最大程度地放电。这种内在膜特性被证明是由高阈值的N型和P/Q型钙通道介导的。最近的研究表明,脚桥核包含三个独立的神经元群体,它们可以仅通过N型通道、仅通过P/Q型通道或同时通过N型和P/Q型通道产生γ波段振荡。本研究调查了调节每个神经元群体中γ波段活动的细胞内机制。我们对来自Sprague-Dawley幼鼠的脚桥核神经元进行了体外膜片钳记录,并应用1秒的斜坡刺激来诱导内在膜振荡。我们的结果表明,有两条途径调节脚桥核神经元中的γ波段活动。我们描述了仅通过N型通道和cAMP/PKA途径介导γ波段活动的神经元群体(推测为“快速眼动开启”神经元),仅通过P/Q型通道和CaMKII途径介导γ波段活动的神经元群体(推测为“清醒开启”神经元),以及第三个可以通过N型通道和cAMP/PK以及P/Q型通道和CaMKII介导γ活动的神经元群体(推测为“清醒/快速眼动开启”神经元)。这些新结果表明,脚桥核γ振荡由与不同钙通道类型相关的两条独立途径调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bab2/4923228/bd654601ff38/PHY2-4-e12787-g001.jpg

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