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小鼠嗅觉系统的神经递质受体结构

The Neurotransmitter Receptor Architecture of the Mouse Olfactory System.

作者信息

Lothmann Kimberley, Amunts Katrin, Herold Christina

机构信息

C. & O. Vogt-Institute of Brain Research, Medical Faculty, University Hospital Düsseldorf, Heinrich Heine University of Düsseldorf, Düsseldorf, Germany.

Institute of Neuroscience and Medicine INM-1, Research Centre Jülich, Jülich, Germany.

出版信息

Front Neuroanat. 2021 Apr 23;15:632549. doi: 10.3389/fnana.2021.632549. eCollection 2021.

Abstract

The uptake, transmission and processing of sensory olfactory information is modulated by inhibitory and excitatory receptors in the olfactory system. Previous studies have focused on the function of individual receptors in distinct brain areas, but the receptor architecture of the whole system remains unclear. Here, we analyzed the receptor profiles of the whole olfactory system of adult male mice. We examined the distribution patterns of glutamatergic (AMPA, kainate, mGlu, and NMDA), GABAergic (GABA, GABA, and GABA), dopaminergic (D) and noradrenergic (α and α) neurotransmitter receptors by quantitative receptor autoradiography combined with an analysis of the cyto- and myelo-architecture. We observed that each subarea of the olfactory system is characterized by individual densities of distinct neurotransmitter receptor types, leading to a region- and layer-specific receptor profile. Thereby, the investigated receptors in the respective areas and strata showed a heterogeneous expression. Generally, we detected high densities of mGluRs, GABARs and GABARs. Noradrenergic receptors revealed a highly heterogenic distribution, while the dopaminergic receptor D displayed low concentrations, except in the olfactory tubercle and the dorsal endopiriform nucleus. The similarities and dissimilarities of the area-specific multireceptor profiles were analyzed by a hierarchical cluster analysis. A three-cluster solution was found that divided the areas into the (1) olfactory relay stations (main and accessory olfactory bulb), (2) the olfactory cortex (anterior olfactory cortex, dorsal peduncular cortex, taenia tecta, piriform cortex, endopiriform nucleus, entorhinal cortex, orbitofrontal cortex) and the (3) olfactory tubercle, constituting its own cluster. The multimodal receptor-architectonic analysis of each component of the olfactory system provides new insights into its neurochemical organization and future possibilities for pharmaceutic targeting.

摘要

嗅觉系统中抑制性和兴奋性受体对感觉嗅觉信息的摄取、传递和处理进行调节。以往的研究主要集中在不同脑区单个受体的功能,但整个系统的受体结构仍不清楚。在此,我们分析了成年雄性小鼠整个嗅觉系统的受体谱。我们通过定量受体放射自显影结合细胞和髓鞘结构分析,研究了谷氨酸能(AMPA、海人藻酸、代谢型谷氨酸受体和NMDA)、γ-氨基丁酸能(GABA、GABA和GABA)、多巴胺能(D)和去甲肾上腺素能(α和α)神经递质受体的分布模式。我们观察到嗅觉系统的每个子区域都以不同神经递质受体类型的个体密度为特征,从而形成区域和层特异性的受体谱。因此,各个区域和层中的被研究受体表现出异质性表达。一般来说,我们检测到代谢型谷氨酸受体、γ-氨基丁酸受体和GABAB受体的高密度表达。去甲肾上腺素能受体显示出高度异质性分布,而多巴胺能受体D除在嗅结节和背内侧梨状核外浓度较低。通过层次聚类分析对区域特异性多受体谱的异同进行了分析。发现了一个三类解决方案,将这些区域分为:(1)嗅觉中继站(主嗅球和副嗅球),(2)嗅觉皮质(前嗅皮质、背侧脚状皮质、带状终板、梨状皮质、内侧梨状核、内嗅皮质、眶额皮质)和(3)嗅结节,嗅结节自成一类。对嗅觉系统各组成部分的多模式受体结构分析为其神经化学组织及其药物靶向的未来可能性提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1792/8102831/deaffec3199f/fnana-15-632549-g0001.jpg

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