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中脑桥脑胆碱能核团中通过差异性5-羟色胺能抑制实现行为状态控制:一项同步单位记录和微透析研究

Behavioral state control through differential serotonergic inhibition in the mesopontine cholinergic nuclei: a simultaneous unit recording and microdialysis study.

作者信息

Thakkar M M, Strecker R E, McCarley R W

机构信息

Department of Psychiatry, Harvard Medical School, Brockton Veterans Administration Medical Center, Brockton, Massachusetts 02401, USA.

出版信息

J Neurosci. 1998 Jul 15;18(14):5490-7. doi: 10.1523/JNEUROSCI.18-14-05490.1998.

Abstract

Cholinergic neurons of the mesopontine nuclei are strongly implicated in behavioral state regulation. One population of neurons in the cholinergic zone of the laterodorsal tegmentum and the pedunculopontine nuclei, referred to as rapid eye movement (REM)-on neurons, shows preferential discharge activity during REM sleep, and extensive data indicate a key role in production of this state. Another neuronal group present in the same cholinergic zone of the laterodorsal tegmentum and the pedunculopontine nuclei, referred to as Wake/REM-on neurons, shows preferential discharge activity during both wakefulness and REM sleep and is implicated in the production of electroencephalographic activation in both of these states. To test the hypothesis of differential serotonergic inhibition as an explanation of the different state-related discharge activity, we developed a novel methodology that enabled, in freely behaving animals, simultaneous unit recording and local perfusion of neuropharmacological agents using a microdialysis probe adjacent to the recording electrodes. Discharge activity of REM-on neurons was almost completely suppressed by local microdialysis perfusion of the selective 5-HT1A agonist 8-hydroxy-2-(di-n-propylamino) tetralin (8-OH-DPAT), although this agonist had minimal or no effect on the Wake/REM-on neurons. We conclude that selective serotonergic inhibition is a basis of differential state regulation in the mesopontine cholinergic nuclei, and that the novel methodology combining neurophysiological and neuropharmacological information from the freely behaving animal shows great promise for further insight into the neural basis of behavioral control.

摘要

脑桥中脑核的胆碱能神经元与行为状态调节密切相关。被称为快速眼动(REM)开启神经元的一群位于脑桥背外侧被盖和脚桥核胆碱能区的神经元,在REM睡眠期间表现出优先放电活动,大量数据表明其在这种睡眠状态的产生中起关键作用。另一群存在于脑桥背外侧被盖和脚桥核相同胆碱能区的神经元,被称为觉醒/REM开启神经元,在清醒和REM睡眠期间均表现出优先放电活动,并与这两种状态下脑电图激活的产生有关。为了检验不同的5-羟色胺能抑制作用这一假说来解释不同的状态相关放电活动,我们开发了一种新方法,在自由活动的动物中,利用与记录电极相邻的微透析探针同时进行单位记录和局部灌注神经药理学药物。选择性5-HT1A激动剂8-羟基-2-(二正丙基氨基)四氢萘(8-OH-DPAT)的局部微透析灌注几乎完全抑制了REM开启神经元的放电活动,尽管该激动剂对觉醒/REM开启神经元的影响极小或无影响。我们得出结论,选择性5-羟色胺能抑制是脑桥中脑胆碱能核团不同状态调节的基础,并且将来自自由活动动物的神经生理学和神经药理学信息相结合的新方法,对于进一步深入了解行为控制的神经基础具有很大的前景。

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