Cargando…
Whole-Retina Reduced Electrophysiological Activity in Mice Bearing Retina-Specific Deletion of Vesicular Acetylcholine Transporter
BACKGROUND: Despite rigorous characterization of the role of acetylcholine in retinal development, long-term effects of its absence as a neurotransmitter are unknown. One of the unanswered questions is how acetylcholine contributes to the functional capacity of mature retinal circuits. The current s...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2015
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4520552/ https://www.ncbi.nlm.nih.gov/pubmed/26226617 http://dx.doi.org/10.1371/journal.pone.0133989 |
_version_ | 1782383678714806272 |
---|---|
author | Bedore, Jake Martyn, Amanda C. Li, Anson K. C. Dolinar, Eric A. McDonald, Ian S. Coupland, Stuart G. Prado, Vania F. Prado, Marco A. Hill, Kathleen A. |
author_facet | Bedore, Jake Martyn, Amanda C. Li, Anson K. C. Dolinar, Eric A. McDonald, Ian S. Coupland, Stuart G. Prado, Vania F. Prado, Marco A. Hill, Kathleen A. |
author_sort | Bedore, Jake |
collection | PubMed |
description | BACKGROUND: Despite rigorous characterization of the role of acetylcholine in retinal development, long-term effects of its absence as a neurotransmitter are unknown. One of the unanswered questions is how acetylcholine contributes to the functional capacity of mature retinal circuits. The current study investigates the effects of disrupting cholinergic signalling in mice, through deletion of vesicular acetylcholine transporter (VAChT) in the developing retina, pigmented epithelium, optic nerve and optic stalk, on electrophysiology and structure of the mature retina. METHODS & RESULTS: A combination of electroretinography, optical coherence tomography imaging and histological evaluation assessed retinal integrity in mice bearing retina- targeted (embryonic day 12.5) deletion of VAChT (VAChT(Six3-Cre-flox/flox)) and littermate controls at 5 and 12 months of age. VAChT(Six3-Cre-flox/flox) mice did not show any gross changes in nuclear layer cellularity or synaptic layer thickness. However, VAChT(Six3-Cre-flox/flox) mice showed reduced electrophysiological response of the retina to light stimulus under scotopic conditions at 5 and 12 months of age, including reduced a-wave, b-wave, and oscillatory potential (OP) amplitudes and decreased OP peak power and total energy. Reduced a-wave amplitude was proportional to the reduction in b-wave amplitude and not associated with altered a-wave 10%-90% rise time or inner and outer segment thicknesses. SIGNIFICANCE: This study used a novel genetic model in the first examination of function and structure of the mature mouse retina with disruption of cholinergic signalling. Reduced amplitude across the electroretinogram wave form does not suggest dysfunction in specific retinal cell types and could reflect underlying changes in the retinal and/or extraretinal microenvironment. Our findings suggest that release of acetylcholine by VAChT is essential for the normal electrophysiological response of the mature mouse retina. |
format | Online Article Text |
id | pubmed-4520552 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-45205522015-08-06 Whole-Retina Reduced Electrophysiological Activity in Mice Bearing Retina-Specific Deletion of Vesicular Acetylcholine Transporter Bedore, Jake Martyn, Amanda C. Li, Anson K. C. Dolinar, Eric A. McDonald, Ian S. Coupland, Stuart G. Prado, Vania F. Prado, Marco A. Hill, Kathleen A. PLoS One Research Article BACKGROUND: Despite rigorous characterization of the role of acetylcholine in retinal development, long-term effects of its absence as a neurotransmitter are unknown. One of the unanswered questions is how acetylcholine contributes to the functional capacity of mature retinal circuits. The current study investigates the effects of disrupting cholinergic signalling in mice, through deletion of vesicular acetylcholine transporter (VAChT) in the developing retina, pigmented epithelium, optic nerve and optic stalk, on electrophysiology and structure of the mature retina. METHODS & RESULTS: A combination of electroretinography, optical coherence tomography imaging and histological evaluation assessed retinal integrity in mice bearing retina- targeted (embryonic day 12.5) deletion of VAChT (VAChT(Six3-Cre-flox/flox)) and littermate controls at 5 and 12 months of age. VAChT(Six3-Cre-flox/flox) mice did not show any gross changes in nuclear layer cellularity or synaptic layer thickness. However, VAChT(Six3-Cre-flox/flox) mice showed reduced electrophysiological response of the retina to light stimulus under scotopic conditions at 5 and 12 months of age, including reduced a-wave, b-wave, and oscillatory potential (OP) amplitudes and decreased OP peak power and total energy. Reduced a-wave amplitude was proportional to the reduction in b-wave amplitude and not associated with altered a-wave 10%-90% rise time or inner and outer segment thicknesses. SIGNIFICANCE: This study used a novel genetic model in the first examination of function and structure of the mature mouse retina with disruption of cholinergic signalling. Reduced amplitude across the electroretinogram wave form does not suggest dysfunction in specific retinal cell types and could reflect underlying changes in the retinal and/or extraretinal microenvironment. Our findings suggest that release of acetylcholine by VAChT is essential for the normal electrophysiological response of the mature mouse retina. Public Library of Science 2015-07-30 /pmc/articles/PMC4520552/ /pubmed/26226617 http://dx.doi.org/10.1371/journal.pone.0133989 Text en © 2015 Bedore et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Bedore, Jake Martyn, Amanda C. Li, Anson K. C. Dolinar, Eric A. McDonald, Ian S. Coupland, Stuart G. Prado, Vania F. Prado, Marco A. Hill, Kathleen A. Whole-Retina Reduced Electrophysiological Activity in Mice Bearing Retina-Specific Deletion of Vesicular Acetylcholine Transporter |
title | Whole-Retina Reduced Electrophysiological Activity in Mice Bearing Retina-Specific Deletion of Vesicular Acetylcholine Transporter |
title_full | Whole-Retina Reduced Electrophysiological Activity in Mice Bearing Retina-Specific Deletion of Vesicular Acetylcholine Transporter |
title_fullStr | Whole-Retina Reduced Electrophysiological Activity in Mice Bearing Retina-Specific Deletion of Vesicular Acetylcholine Transporter |
title_full_unstemmed | Whole-Retina Reduced Electrophysiological Activity in Mice Bearing Retina-Specific Deletion of Vesicular Acetylcholine Transporter |
title_short | Whole-Retina Reduced Electrophysiological Activity in Mice Bearing Retina-Specific Deletion of Vesicular Acetylcholine Transporter |
title_sort | whole-retina reduced electrophysiological activity in mice bearing retina-specific deletion of vesicular acetylcholine transporter |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4520552/ https://www.ncbi.nlm.nih.gov/pubmed/26226617 http://dx.doi.org/10.1371/journal.pone.0133989 |
work_keys_str_mv | AT bedorejake wholeretinareducedelectrophysiologicalactivityinmicebearingretinaspecificdeletionofvesicularacetylcholinetransporter AT martynamandac wholeretinareducedelectrophysiologicalactivityinmicebearingretinaspecificdeletionofvesicularacetylcholinetransporter AT liansonkc wholeretinareducedelectrophysiologicalactivityinmicebearingretinaspecificdeletionofvesicularacetylcholinetransporter AT dolinarerica wholeretinareducedelectrophysiologicalactivityinmicebearingretinaspecificdeletionofvesicularacetylcholinetransporter AT mcdonaldians wholeretinareducedelectrophysiologicalactivityinmicebearingretinaspecificdeletionofvesicularacetylcholinetransporter AT couplandstuartg wholeretinareducedelectrophysiologicalactivityinmicebearingretinaspecificdeletionofvesicularacetylcholinetransporter AT pradovaniaf wholeretinareducedelectrophysiologicalactivityinmicebearingretinaspecificdeletionofvesicularacetylcholinetransporter AT pradomarcoa wholeretinareducedelectrophysiologicalactivityinmicebearingretinaspecificdeletionofvesicularacetylcholinetransporter AT hillkathleena wholeretinareducedelectrophysiologicalactivityinmicebearingretinaspecificdeletionofvesicularacetylcholinetransporter |