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全麻使皮层锥体神经元解耦。

General Anesthesia Decouples Cortical Pyramidal Neurons.

机构信息

NeuroCure Cluster of Excellence, Institute for Biology, Humboldt University of Berlin, Chariteplatz 1, 10117 Berlin, Germany.

NeuroCure Cluster of Excellence, Institute for Biology, Humboldt University of Berlin, Chariteplatz 1, 10117 Berlin, Germany.

出版信息

Cell. 2020 Feb 20;180(4):666-676.e13. doi: 10.1016/j.cell.2020.01.024.

Abstract

The mystery of general anesthesia is that it specifically suppresses consciousness by disrupting feedback signaling in the brain, even when feedforward signaling and basic neuronal function are left relatively unchanged. The mechanism for such selectiveness is unknown. Here we show that three different anesthetics have the same disruptive influence on signaling along apical dendrites in cortical layer 5 pyramidal neurons in mice. We found that optogenetic depolarization of the distal apical dendrites caused robust spiking at the cell body under awake conditions that was blocked by anesthesia. Moreover, we found that blocking metabotropic glutamate and cholinergic receptors had the same effect on apical dendrite decoupling as anesthesia or inactivation of the higher-order thalamus. If feedback signaling occurs predominantly through apical dendrites, the cellular mechanism we found would explain not only how anesthesia selectively blocks this signaling but also why conscious perception depends on both cortico-cortical and thalamo-cortical connectivity.

摘要

全身麻醉的奥秘在于,它通过扰乱大脑中的反馈信号来特异性地抑制意识,即使前馈信号和基本神经元功能相对不变。这种选择性的机制尚不清楚。在这里,我们表明,三种不同的麻醉剂对小鼠皮层 5 层锥体神经元的顶树突中的信号传递具有相同的干扰作用。我们发现,光遗传学去极化远端顶树突在清醒状态下会引起细胞体的强烈放电,而麻醉会阻断这种放电。此外,我们发现,阻断代谢型谷氨酸和胆碱能受体对顶树突解耦的作用与麻醉或高级丘脑的失活相同。如果反馈信号主要通过顶树突传递,那么我们发现的细胞机制不仅可以解释麻醉如何选择性地阻断这种信号传递,还可以解释为什么意识感知既依赖于皮质-皮质连接,又依赖于丘脑-皮质连接。

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