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海马体-前额叶回路中表达甘丙肽受体1的神经元调节目标导向性注意力和冲动控制。

Galanin receptor 1 expressing neurons in hippocampal-prefrontal circuitry modulate goal directed attention and impulse control.

作者信息

Messanvi Fany, Visocky Vladimir, Senneca Carolyn, Berkun Kathleen, Taori Maansi, Bradley Sean P, Wang Huikun, Tejeda Hugo, Chudasama Yogita

机构信息

Section on Behavioral Neuroscience, National Institute of Mental Health, Bethesda, MD, USA.

Rodent Behavioral Core, National Institute of Mental Health, Bethesda, MD, USA.

出版信息

bioRxiv. 2024 Jul 29:2024.07.29.605653. doi: 10.1101/2024.07.29.605653.

Abstract

While amino acid neurotransmitters are the main chemical messengers in the brain, they are co-expressed with neuropeptides which are increasingly recognized as modulators of cognitive pathways. For example, the neuropeptide galanin has been implicated in a wide range of pathological conditions in which frontal and temporal structures are compromised. In a recent study in rats, we discovered that direct pharmacological stimulation of galanin receptor type 1 (GalR1) in the ventral prefrontal cortex (vPFC) and ventral hippocampus (vHC) led to opposing effects on attention and impulse control behavior. In the present study, we investigate how subtypes of neurons expressing GalR1 in these two areas differentially contribute to these behaviors. We first establish that GalR1 is predominantly expressed in glutamatergic neurons in both the vPFC and HC. We develop a novel viral approach to gain genetic access to GalR1-expressing neurons and demonstrate that optogenetic excitation of GalR1 expressing neurons in the vPFC, but not vHC, selectively disrupts attention in a complex behavioral task. Finally, using fiber photometry, we measure the bulk calcium dynamics in GalR1-expressing neurons during the same task to demonstrate opposing activity in vPFC and vHC. These results are consistent with our previous work demonstrating differential behavioral effects induced by GalR1 activating in vPFC and vHC. These results indicate the distinct neuromodulatory and behavioral contributions of galanin mediated by subclasses of neurons in the hippocampal and prefrontal circuitry.

摘要

虽然氨基酸神经递质是大脑中的主要化学信使,但它们与神经肽共同表达,而神经肽越来越被认为是认知通路的调节剂。例如,神经肽甘丙肽与多种病理状况有关,在这些状况中额叶和颞叶结构会受到损害。在最近一项对大鼠的研究中,我们发现直接药理刺激腹侧前额叶皮质(vPFC)和腹侧海马体(vHC)中的1型甘丙肽受体(GalR1)会对注意力和冲动控制行为产生相反的影响。在本研究中,我们调查了这两个区域中表达GalR1的神经元亚型如何对这些行为产生不同的影响。我们首先确定GalR1主要在vPFC和海马体中的谷氨酸能神经元中表达。我们开发了一种新颖的病毒方法来获得对表达GalR1的神经元的基因访问权,并证明对vPFC中表达GalR1的神经元进行光遗传学激发,但不对vHC进行激发,会在一项复杂的行为任务中选择性地干扰注意力。最后,使用光纤光度法,我们在同一任务期间测量了表达GalR1的神经元中的大量钙动力学,以证明vPFC和vHC中的相反活动。这些结果与我们之前的工作一致,即证明了GalR1在vPFC和vHC中激活所诱导的不同行为效应。这些结果表明,海马体和前额叶回路中神经元亚类介导的甘丙肽具有独特的神经调节和行为作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7838/11312591/744812c2ceb4/nihpp-2024.07.29.605653v1-f0001.jpg

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