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利用 Pirt、TRPV1、5-HT3 和 Tac1 表达的报告基因小鼠绘制迷走神经节和脑干内感觉神经亚群的图谱。

Mapping of Sensory Nerve Subsets within the Vagal Ganglia and the Brainstem Using Reporter Mice for Pirt, TRPV1, 5-HT3, and Tac1 Expression.

机构信息

Molecular Pharmacology & Physiology, Morsani College of Medicine, University of South Florida, Tampa, Florida 33612.

Molecular Pharmacology & Physiology, Morsani College of Medicine, University of South Florida, Tampa, Florida 33612

出版信息

eNeuro. 2020 Apr 9;7(2). doi: 10.1523/ENEURO.0494-19.2020. Print 2020 Mar/Apr.

Abstract

Vagal afferent sensory nerves, originating in jugular and nodose ganglia, are composed of functionally distinct subsets whose activation evokes distinct thoracic and abdominal reflex responses. We used Cre-expressing mouse strains to identify specific vagal afferent populations and map their central projections within the brainstem. We show that Pirt is expressed in virtually all vagal afferents; whereas, 5-HT3 is expressed only in nodose neurons, with little expression in jugular neurons. Transient receptor potential vanilloid 1 (TRPV1), the capsaicin receptor, is expressed in a subset of small nodose and jugular neurons. Tac1, the gene for tachykinins, is expressed predominantly in jugular neurons, some of which also express TRPV1. Vagal fibers project centrally to the nucleus tractus solitarius (nTS), paratrigeminal complex, area postrema, and to a limited extent the dorsal motor nucleus of the vagus. nTS subnuclei preferentially receive projections by specific afferent subsets, with TRPV1 fibers terminating in medial and dorsal regions predominantly caudal of obex, whereas TRPV1 fibers terminate in ventral and lateral regions throughout the rostral-caudal aspect of the medulla. Many vagal Tac1 afferents (mostly derived from the jugular ganglion) terminate in the nTS. The paratrigeminal complex was the target of multiple vagal afferent subsets. Importantly, lung-specific TRPV1 and Tac1 afferent terminations were restricted to the caudal medial nTS, with no innervation of other medulla regions. In summary, this study identifies the specific medulla regions innervated by vagal afferent subsets. The distinct terminations provide a neuroanatomic substrate for the diverse range of reflexes initiated by vagal afferent activation.

摘要

迷走传入感觉神经起源于颈静脉和结状神经节,由功能不同的亚群组成,其激活可引起不同的胸腹部反射反应。我们使用 Cre 表达的小鼠品系来鉴定特定的迷走传入群体,并绘制它们在脑干内的中枢投射。我们表明,Pirt 在几乎所有的迷走传入神经中都有表达;而 5-HT3 仅在结状神经元中表达,在颈静脉神经元中表达较少。瞬时受体电位香草酸 1(TRPV1),即辣椒素受体,在一小部分小的结状和颈静脉神经元中表达。Tac1,速激肽的基因,主要在颈静脉神经元中表达,其中一些也表达 TRPV1。迷走纤维向中枢投射到孤束核(nTS)、三叉神经脊束核复合体、最后区,并在一定程度上投射到迷走神经背核。nTS 亚核优先接收特定传入亚群的投射,TRPV1 纤维主要终止于延髓 obex 后区的内侧和背侧区域,而 TRPV1 纤维终止于延髓腹侧和外侧区域的整个头尾部。许多迷走 Tac1 传入纤维(主要来自颈静脉神经节)终止于 nTS。三叉神经脊束核复合体是多个迷走传入亚群的靶标。重要的是,肺特异性 TRPV1 和 Tac1 传入纤维终止于尾侧内侧 nTS,而延髓的其他区域没有神经支配。总之,这项研究确定了迷走传入亚群支配的特定延髓区域。不同的终末为迷走传入激活引发的各种反射提供了神经解剖学基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2f4/7294455/57e9fc1aec78/SN-ENUJ200030F001.jpg

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