Literature DB >> 30325514

Neurons with diverse phenotypes project from the caudal to the rostral nucleus of the solitary tract.

Susan Travers1, Joseph Breza1, Jacob Harley1, JiuLin Zhu1, Joseph Travers1.   

Abstract

The nucleus of the solitary tract is a potential site for taste-visceral interactions. Connections from the caudal, visceral area of the nucleus (cNST) to the rostral, gustatory zone (rNST) have been described, but the phenotype of cells giving rise to the projection(s) and their distribution among rNST subdivisions are unknown. To determine these characteristics of the intrasolitary pathway, we injected pan-neuronal and floxed AAV viruses into the cNST of mice expressing cre in glutamatergic, GABAergic, or catecholaminergic neurons. Particular attention was paid to the terminal field distribution in rNST subdivisions by simultaneously visualizing P2X2 localized to gustatory afferent terminals. All three phenotypically identified pathways terminated in rNST, with the density greatest for glutamatergic and sparsest for catecholaminergic projections, observations supported by retrograde tracing. Interestingly, cNST neurons had more prominent projections to rNST regions medial and ventral to P2X2 staining, i.e., the medial and ventral subdivisions. In addition, GABAergic neurons projected robustly to the lateral subdivision and adjacent parts of the reticular formation and spinal trigeminal nucleus. Although cNST neurons also projected to the P2X2-rich central subdivision, such projections were sparser. These findings suggest that cNST visceral signals exert stronger excitatory and inhibitory influences on local autonomic and reflex pathways associated with the medial and ventral subdivisions compared to weaker modulation of ascending pathways arising from the central subdivision and ultimately destined for the forebrain.
© 2018 Wiley Periodicals, Inc.

Entities:  

Keywords:  RRID MMRRC_036778-UCD; RRID: AB_10013483; RRID: AB_2040054; RRID: AB_221569; RRID: AB_2314409; RRID: AB_2315160; RRID: AB_2315161; RRID: AB_390204; RRID: AB_90738; RRID: ISMR_JAX 016963; RRID: ISMR_JAX: 000664; RRID: ISMR_JAX: 007908; RRID: ISMR_JAX: 010802; RRID: ISMR_RBRC09645; RRID:AB_90755; intrasolitary; rNST subdivisions; taste; visceral

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Year:  2018        PMID: 30325514      PMCID: PMC6193849          DOI: 10.1002/cne.24501

Source DB:  PubMed          Journal:  J Comp Neurol        ISSN: 0021-9967            Impact factor:   3.215


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