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Urocortin-positive nerve fibres and cells are present in the human choroid

Authors :
Kaser-Eichberger, Alexandra
Platzl, Christian
Wolfmeier, Heidi
Trost, Andrea
Horn, Anja
Barnerssoi, Miriam
Strohmaier, Clemens
Schroedl, Falk
Source :
British Journal of Ophthalmology; 2023, Vol. 107 Issue: 10 p1575-1582, 8p
Publication Year :
2023

Abstract

BackgroundChoroidal vascular regulation is mediated by the autonomic nervous system in order to gain proper blood flow control. While the mechanisms behind this control are unknown, neuroregulatory peptides are involved in this process. To better understand choroidal function, we investigate the presence of urocortin-1 (UCN), a neuroregulatory peptide with vascular effects, in the human choroid and its possible intrinsic and extrinsic origin.MethodsHuman choroid and eye-related cranial ganglia (superior cervical ganglion- SCG, ciliary ganglion-CIL, pterygopalatine ganglion-PPG, trigeminal ganglion-TRI) were prepared for immunohistochemistry against UCN, protein–gene product 9.5 (PGP9.5), substance P (SP), tyrosine hydroxylase (TH) and vesicular acetylcholine transporter (VAChT). For documentation, confocal laser scanning microscopy was used.ResultsIn choroidal stroma, UCN-immunoreactivity was present in nerve fibres, small cells and intrinsic choroidal neurons (ICN). Some UCN+ nerve fibres colocalised for VAChT, while others were VAChT. A similar situation was found with SP: some UCN+ nerve fibres showed colocalisation for SP, while others lacked SP. Colocalisation for UCN and TH was not observed. In eye-related cranial ganglia, only few cells in the SCG, PPG and TRI were UCN+, while many cells of the CIL displayed weak UCN immunoreactivity.ConclusionUCN is part of the choroidal innervation. UCN+/VAChT+ fibres could derive from the few cells of the PPG or cells of the CIL, if these indeed supply the choroid. UCN+/SP+ fibres might originate from ICN, or the few UCN+ cells detected in the TRI. Further studies are necessary to establish UCN function in the choroid and its implication for choroidal autonomic control.

Details

Language :
English
ISSN :
00071161 and 14682079
Volume :
107
Issue :
10
Database :
Supplemental Index
Journal :
British Journal of Ophthalmology
Publication Type :
Periodical
Accession number :
ejs64011728
Full Text :
https://doi.org/10.1136/bjophthalmol-2021-320697