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比较 GABA、生长抑素和促肾上腺皮质激素释放激素在投射到臂旁核的轴突末梢中的表达。

Comparison of GABA, Somatostatin, and Corticotrophin-Releasing Hormone Expression in Axon Terminals That Target the Parabrachial Nucleus.

机构信息

Department of Anatomical Sciences and Neurobiology, University of Louisville School of Medicine, 500 South Preston St., HSC A, rm 1003, Louisville, KY, USA.

出版信息

Chem Senses. 2020 May 21;45(4):275-282. doi: 10.1093/chemse/bjaa010.

Abstract

Several forebrain areas have been shown to project to the parabrachial nucleus (PBN) and exert inhibitory and excitatory influences on taste processing. Some sources of descending input such as the central nucleus of the amygdala (CeA) might utilize somatostatin (Sst) and/or corticotrophin-releasing hormone (Crh) to influence taste processing in the PBN (Panguluri S, Saggu S, Lundy R. 2009. Comparison of somatostatin and corticotrophin-releasing hormone immunoreactivity in forebrain neurons projecting to taste-responsive and non-responsive regions of the parabrachial nucleus in rat. Brain Res 1298:57-69; Magableh A, Lundy R. 2014. Somatostatin and corticotrophin releasing hormone cell types are a major source of descending input from the forebrain to the parabrachial nucleus in mice. Chem Senses 39:673-682). Since the predominate effect of CeA stimulation on PBN taste-evoked responses is inhibition, this study used transgenic reporter lines (Sst/TdTomato and Crh/TdTomato) and electron microscopy to assess Sst/gamma aminobutyric acid (GABA) and Crh/GABA coexpression in axon terminals within the PBN. Robust expression of Sst and Crh axon terminals was observed in the PBN. The majority of Sst-positive axon terminals were positive for GABA expression, while the majority of Crh terminals were not. The results indicate that Sst-expressing neurons, but not Crh neurons, are a source of GABAergic input to the PBN. To assess whether the CeA is a source of GABAergic input to the PBN, the CeA of Sst-cre mice was injected with cre-dependent enhanced yellow fluorescent protein (EYFP) virus and PBN tissue processed for GABA and EYFP expression. Again, the majority of EYFP Sst-positive axon terminals in the PBN coexpressed GABA. Together, the present results suggest that CeA neurons marked by Sst expression represent a major extrinsic source of GABAergic input to the PBN and this could underlie the predominate inhibitory effect of CeA stimulation on taste-evoked responses in the PBN.

摘要

已经有研究表明,一些前脑区域投射到臂旁核(PBN),并对味觉处理产生抑制和兴奋影响。一些下行输入的来源,如杏仁中央核(CeA),可能利用生长抑素(Sst)和/或促肾上腺皮质激素释放激素(Crh)来影响 PBN 中的味觉处理(Panguluri S、Saggu S、Lundy R. 2009. 比较投射到大鼠臂旁核味觉反应和非反应区的前脑神经元中生长抑素和促肾上腺皮质激素释放激素免疫反应. Brain Res 1298:57-69; Magableh A、Lundy R. 2014. 生长抑素和促肾上腺皮质激素释放激素细胞类型是小鼠前脑至臂旁核下行输入的主要来源. Chem Senses 39:673-682)。由于 CeA 刺激对 PBN 味觉诱发电位反应的主要影响是抑制,因此本研究使用转基因报告基因系(Sst/TdTomato 和 Crh/TdTomato)和电子显微镜来评估 PBN 中的 Sst/γ-氨基丁酸(GABA)和 Crh/GABA 共表达。在 PBN 中观察到 Sst 和 Crh 轴突末端的强表达。大多数 Sst 阳性轴突末端表达 GABA 表达,而大多数 Crh 末端不表达。结果表明,Sst 表达神经元是 PBN 中 GABA 能传入的来源,而不是 Crh 神经元。为了评估 CeA 是否是 PBN 的 GABA 能传入的来源,用 Cre 依赖性增强型黄色荧光蛋白(EYFP)病毒注射 Sst-cre 小鼠的 CeA,并对 PBN 组织进行 GABA 和 EYFP 表达处理。同样,PBN 中大多数 EYFP Sst 阳性轴突末端共表达 GABA。总之,目前的结果表明,CeA 中由 Sst 表达标记的神经元代表了 PBN 中 GABA 能传入的主要外源性来源,这可能是 CeA 刺激对 PBN 中味觉诱发电位反应产生主要抑制作用的基础。

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