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多巴胺抑制小鼠内嗅皮层外侧扇形细胞对嗅球输入的突触反应。

Dopamine Suppresses Synaptic Responses of Fan Cells in the Lateral Entorhinal Cortex to Olfactory Bulb Input in Mice.

作者信息

Liu Shaolin

机构信息

Department of Anatomy, Howard University College of Medicine, Washington, DC, United States.

出版信息

Front Cell Neurosci. 2020 Jun 18;14:181. doi: 10.3389/fncel.2020.00181. eCollection 2020.

Abstract

The lateral entorhinal cortex (LEC) is involved in odor discrimination, odor-associative multimodal memory, and neurological or neuropsychiatric disorders. It receives direct axonal projections from both olfactory bulb (OB) output neurons and midbrain dopaminergic neurons. However, the cellular targets in LEC receiving direct synaptic input from OB output neuron, the functional characteristics of these synapses, and whether or how dopamine (DA) modulates the OB-LEC pathway remain undetermined. We addressed these questions in the present study by combing optogenetic and electrophysiological approaches with four major findings: (1) selective activation of OB input elicited glutamate-mediated monosynaptic responses in all fan cells, the major output neurons in layer II of the LEC; (2) this excitatory synaptic transmission exhibited robust paired-pulse facilitation (PPF), a presynaptically derived short-term synaptic plasticity; (3) DA dramatically attenuated the strength of the OB input-fan cell synaptic transmission activation of D1 receptors; and (4) DA altered the PPF of this transmission but neither intrinsic properties of postsynaptic neurons nor the kinetic profile of postsynaptic responses, suggesting that presynaptic mechanisms underlie the DA inhibitory actions. This study for the first time demonstrates the FCs in the LEC layer II as the postsynaptic target of direct OB input and characterizes DA modulation of the OB input-fan cell pathway. These findings set the foundation for future studies to examine the synaptic transmission from the OB output neuron axon terminals to other potential cell types in the LEC and to pinpoint the pathophysiological mechanisms underlying olfactory deficits associated with DA-relevant neurological and neuropsychiatric disorders.

摘要

外侧内嗅皮层(LEC)参与气味辨别、气味关联的多模态记忆以及神经或神经精神疾病。它接收来自嗅球(OB)输出神经元和中脑多巴胺能神经元的直接轴突投射。然而,LEC中接受OB输出神经元直接突触输入的细胞靶点、这些突触的功能特征,以及多巴胺(DA)是否以及如何调节OB - LEC通路仍未确定。我们在本研究中通过结合光遗传学和电生理学方法解决了这些问题,有四个主要发现:(1)OB输入的选择性激活在所有扇形细胞中引发了谷氨酸介导的单突触反应,扇形细胞是LEC第二层的主要输出神经元;(2)这种兴奋性突触传递表现出强大的双脉冲易化(PPF),这是一种源自突触前的短期突触可塑性;(3)DA通过激活D1受体显著减弱了OB输入 - 扇形细胞突触传递的强度;(4)DA改变了这种传递的PPF,但既不改变突触后神经元的内在特性,也不改变突触后反应的动力学特征,这表明突触前机制是DA抑制作用的基础。本研究首次证明LEC第二层中的扇形细胞是OB直接输入的突触后靶点,并描述了DA对OB输入 - 扇形细胞通路的调节作用。这些发现为未来研究检查从OB输出神经元轴突终末到LEC中其他潜在细胞类型的突触传递,以及确定与DA相关的神经和神经精神疾病相关的嗅觉缺陷的病理生理机制奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4fa/7316158/0dba81a6123c/fncel-14-00181-g0001.jpg

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