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前额皮质 ChAT-VIP 中间神经元通过胆碱能突触传递提供局部兴奋,并控制注意力。

Prefrontal cortical ChAT-VIP interneurons provide local excitation by cholinergic synaptic transmission and control attention.

机构信息

Department of Integrative Neurophysiology, Center for Neurogenomics and Cognitive Research (CNCR), Vrije Universiteit, Amsterdam Neuroscience, The Netherlands.

Department of Anatomy and Neurosciences, Clinical Neuroscience, Amsterdam UMC, Vrije Universiteit, Amsterdam Neuroscience, The Netherlands.

出版信息

Nat Commun. 2019 Nov 21;10(1):5280. doi: 10.1038/s41467-019-13244-9.

Abstract

Neocortical choline acetyltransferase (ChAT)-expressing interneurons are a subclass of vasoactive intestinal peptide (ChAT-VIP) neurons of which circuit and behavioural function are unknown. Here, we show that ChAT-VIP neurons directly excite neighbouring neurons in several layers through fast synaptic transmission of acetylcholine (ACh) in rodent medial prefrontal cortex (mPFC). Both interneurons in layers (L)1-3 as well as pyramidal neurons in L2/3 and L6 receive direct inputs from ChAT-VIP neurons mediated by fast cholinergic transmission. A fraction (10-20%) of postsynaptic neurons that received cholinergic input from ChAT-VIP interneurons also received GABAergic input from these neurons. In contrast to regular VIP interneurons, ChAT-VIP neurons did not disinhibit pyramidal neurons. Finally, we show that activity of these neurons is relevant for behaviour and they control attention behaviour distinctly from basal forebrain ACh inputs. Thus, ChAT-VIP neurons are a local source of cortical ACh that directly excite neurons throughout cortical layers and contribute to attention.

摘要

新皮层胆碱乙酰转移酶(ChAT)表达中间神经元是血管活性肠肽(ChAT-VIP)神经元的一个亚类,其回路和行为功能尚不清楚。在这里,我们发现在啮齿动物的内侧前额叶皮层(mPFC)中,ChAT-VIP 神经元通过乙酰胆碱(ACh)的快速突触传递直接兴奋几个层中的邻近神经元。层(L)1-3 中的中间神经元以及 L2/3 和 L6 中的锥体神经元都通过快速胆碱能传递从 ChAT-VIP 神经元接收直接输入。接收来自 ChAT-VIP 中间神经元的胆碱能输入的突触后神经元的一部分(10-20%)也从这些神经元接收 GABA 能输入。与常规 VIP 中间神经元不同,ChAT-VIP 神经元不会解除锥体神经元的抑制。最后,我们表明这些神经元的活动与行为有关,它们通过与基底前脑 ACh 输入明显不同的方式控制注意力行为。因此,ChAT-VIP 神经元是皮质 ACh 的局部来源,可直接兴奋整个皮质层中的神经元,并有助于注意力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1423/6872593/05db4af4efb9/41467_2019_13244_Fig1_HTML.jpg

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