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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Sleep State Dependence of Optogenetically evoked Responses in Neuronal Nitric Oxide Synthase-positive Cells of the Cerebral Cortex
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Sleep State Dependence of Optogenetically evoked Responses in Neuronal Nitric Oxide Synthase-positive Cells of the Cerebral Cortex

机译:脑皮层神经元一氧化氮合酶阳性细胞中对近代诱发反应的睡眠状态依赖性

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Slow-wave activity (SWA) in the electroencephalogram during slow-wave sleep (SWS) varies as a function of sleep-wake history. A putative sleep-active population of neuronal nitric oxide synthase (nNOS)-containing interneurons in the cerebral cortex, defined as such by the expression of Fos in animals euthanized after protracted deep sleep, may be a local regulator of SWA. We investigated whether electrophysiological responses to activation of these cells are consistent with their role of a local regulator of SWA. Using a Cre/loxP strategy, we targeted the population of nNOS interneurons to express the light-activated cation channel Channel-rhodopsin2 and the histological marker tdTomato in mice. We then performed histochemical and optogenetic studies in these transgenic mice. Our studies provided histochemical evidence of transgene expression and electrophysiological evidence that the cerebral cortex was responsive to optogenetic manipulation of these cells in both anesthetized and behaving mice. Optogenetic stimulation of the cerebral cortex of animals expressing Channel-rhodopsin2 in nNOS interneurons triggered an acute positive deflection of the local field potential that was followed by protracted oscillatory events only during quiet wake and slow wave sleep. The response during wake was maximal when the electroencephalogram (EEG) was in a negative polarization state and abolished when the EEG was in a positive polarization state. Since the polarization state of the EEG is a manifestation of slow-wave oscillations in the activity of underlying pyramidal neurons between the depolarized (LFP negative) and hyperpolarized (LFP positive) states, these data indicate that sleep-active cortical neurons expressing nNOS function in sleep slow-wave physiology. (C) 2018 Published by Elsevier Ltd on behalf of IBRO.
机译:慢波睡眠(SWS)期间脑电图中的慢波活动(SWA)随着睡眠历史的函数而变化。脑皮质中的神经元一氧化氮合酶(NNO)的推定睡眠活性群 - 脑皮质中的细胞间,定义为通过在延长深睡眠后安乐死的动物中的FOS表达,可以是SWA的局部调节剂。我们研究了对这些细胞的激活的电生理反应是否与SWA的局部调节剂的作用一致。使用CRE / LOXP策略,我们瞄准NNOS中间核的群体以表达光活化的阳离子通道通道 - rhodopsin2和小鼠中的组织学标志物Tdtomato。然后我们在这些转基因小鼠中进行了组织化学和致敏性研究。我们的研究提供了转基因表达的组织化学证据和电生理学证据,即脑皮质对麻醉和表现小鼠的这些细胞的致敏操纵敏感。在NNOS中,在NNOS中,在NNOS中,表达脑皮质的脑皮质刺激引发了局部场势的急性正偏转,其次是在安静的唤醒和慢波睡眠期间的突出的振荡事件。当脑电图(EEG)处于负偏振状态并且当EEG处于正极化状态时,唤醒期间的响应是最大的。由于EEG的偏振状态是在去极化(LFP阴性)和超极化(LFP阳性)状态之间的底层金字塔神经元的活性慢波振荡的表现,因此这些数据表明表达NNOS功能的睡眠活性皮质神经元睡眠慢波生理学。 (c)2018年由elsevier有限公司发布代表银布。

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