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毒蕈碱型乙酰胆碱受体调节听觉和前额叶皮层在听觉处理过程中的通讯。

Muscarinic receptors regulate auditory and prefrontal cortical communication during auditory processing.

机构信息

Boston University, Department of Biomedical Engineering, Boston, MA, 02215, USA.

Boston University, Department of Mathematics & Statistics, Boston, MA, 02215, USA.

出版信息

Neuropharmacology. 2019 Jan;144:155-171. doi: 10.1016/j.neuropharm.2018.10.027. Epub 2018 Oct 21.

DOI:10.1016/j.neuropharm.2018.10.027
PMID:30352212
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6400225/
Abstract

Much of our understanding about how acetylcholine modulates prefrontal cortical (PFC) networks comes from behavioral experiments that examine cortical dynamics during highly attentive states. However, much less is known about how PFC is recruited during passive sensory processing and how acetylcholine may regulate connectivity between cortical areas outside of task performance. To investigate the involvement of PFC and cholinergic neuromodulation in passive auditory processing, we performed simultaneous recordings in the auditory cortex (AC) and PFC in awake head fixed mice presented with a white noise auditory stimulus in the presence or absence of local cholinergic antagonists in AC. We found that a subset of PFC neurons were strongly driven by auditory stimuli even when the stimulus had no associative meaning, suggesting PFC monitors stimuli under passive conditions. We also found that cholinergic signaling in AC shapes the strength of auditory driven responses in PFC, by modulating the intra-cortical sensory response through muscarinic interactions in AC. Taken together, these findings provide novel evidence that cholinergic mechanisms have a continuous role in cortical gating through muscarinic receptors during passive processing and expand traditional views of prefrontal cortical function and the contributions of cholinergic modulation in cortical communication.

摘要

我们对乙酰胆碱如何调节前额叶皮层(PFC)网络的理解很大程度上来自于行为实验,这些实验研究了高度注意状态下皮层的动力学。然而,关于 PFC 在被动感觉处理过程中是如何被招募的,以及乙酰胆碱如何调节皮层区域之间在任务执行之外的连通性,我们知之甚少。为了研究 PFC 和胆碱能神经调制在被动听觉处理中的作用,我们在清醒固定头部的小鼠中同时记录听觉皮层(AC)和 PFC 的活动,在 AC 中给予或不给予局部胆碱能拮抗剂,呈现白噪声听觉刺激。我们发现,即使刺激没有联想意义,一小部分 PFC 神经元也会被听觉刺激强烈驱动,这表明 PFC 在被动条件下监测刺激。我们还发现,AC 中的胆碱能信号通过在 AC 中通过毒蕈碱相互作用调节皮层内感觉反应,从而塑造 PFC 中听觉驱动反应的强度。总之,这些发现为传统的观点提供了新的证据,即胆碱能机制通过毒蕈碱受体在被动处理过程中持续参与皮层门控,并扩展了前额叶皮层功能和皮层通讯中胆碱能调制的作用的传统观点。

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