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Optic nerve regeneration in the mouse is a complex trait modulated by genetic background

PURPOSE: The present study is designed to identify the influences of genetic background on optic nerve regeneration using the two parental strains (C57BL/6J and DBA/2J) and seven BXD recombinant inbred mouse strains. METHODS: To study regeneration in the optic nerve, Pten was knocked down in the ret...

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Autores principales: Wang, Jiaxing, Li, Ying, King, Rebecca, Struebing, Felix L., Geisert, Eldon E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Vision 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5815339/
https://www.ncbi.nlm.nih.gov/pubmed/29463955
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author Wang, Jiaxing
Li, Ying
King, Rebecca
Struebing, Felix L.
Geisert, Eldon E.
author_facet Wang, Jiaxing
Li, Ying
King, Rebecca
Struebing, Felix L.
Geisert, Eldon E.
author_sort Wang, Jiaxing
collection PubMed
description PURPOSE: The present study is designed to identify the influences of genetic background on optic nerve regeneration using the two parental strains (C57BL/6J and DBA/2J) and seven BXD recombinant inbred mouse strains. METHODS: To study regeneration in the optic nerve, Pten was knocked down in the retinal ganglion cells using adenoassociated virus (AAV) delivery of shRNA, and a mild inflammatory response was induced with an intravitreal injection of zymosan with CPT-cAMP. The axons of the retinal ganglion cells were damaged by optic nerve crush (ONC). Following a 12-day survival period, regenerating axons were labeled by cholera toxin B, and 2 days later, the regenerating axons within the optic nerve were examined. The number of axons at 0.5 mm and 1 mm from the crush site were counted. In addition, we measured the distance that five axons had grown down the nerve and the longest distance a single axon reached. RESULTS: The analysis revealed a considerable amount of differential axonal regeneration across the seven BXD strains and the parental strains. There was a statistically significant difference (p=0.014 Mann–Whitney U test) in the regenerative capacity in the number of axons reaching 0.5 mm from a low of 236.1±24.4 axons in the BXD102 mice to a high of 759.8±79.2 axons in the BXD29 mice. There were also statistically significant differences (p=0.014 Mann–Whitney U test) in the distance axons traveled. Looking at a minimum of five axons, the shortest distance was 787.2±46.5 µm in the BXD102 mice, and the maximum distance was 2025.5±223.3 µm in the BXD29 mice. CONCLUSIONS: Differences in genetic background can have a profound effect on axonal regeneration causing a threefold increase in the number of regenerating axons at 0.5 mm from the crush site and a 2.5-fold increase in the distance traveled by at least five axons in the damaged optic nerve.
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spelling pubmed-58153392018-02-20 Optic nerve regeneration in the mouse is a complex trait modulated by genetic background Wang, Jiaxing Li, Ying King, Rebecca Struebing, Felix L. Geisert, Eldon E. Mol Vis Research Article PURPOSE: The present study is designed to identify the influences of genetic background on optic nerve regeneration using the two parental strains (C57BL/6J and DBA/2J) and seven BXD recombinant inbred mouse strains. METHODS: To study regeneration in the optic nerve, Pten was knocked down in the retinal ganglion cells using adenoassociated virus (AAV) delivery of shRNA, and a mild inflammatory response was induced with an intravitreal injection of zymosan with CPT-cAMP. The axons of the retinal ganglion cells were damaged by optic nerve crush (ONC). Following a 12-day survival period, regenerating axons were labeled by cholera toxin B, and 2 days later, the regenerating axons within the optic nerve were examined. The number of axons at 0.5 mm and 1 mm from the crush site were counted. In addition, we measured the distance that five axons had grown down the nerve and the longest distance a single axon reached. RESULTS: The analysis revealed a considerable amount of differential axonal regeneration across the seven BXD strains and the parental strains. There was a statistically significant difference (p=0.014 Mann–Whitney U test) in the regenerative capacity in the number of axons reaching 0.5 mm from a low of 236.1±24.4 axons in the BXD102 mice to a high of 759.8±79.2 axons in the BXD29 mice. There were also statistically significant differences (p=0.014 Mann–Whitney U test) in the distance axons traveled. Looking at a minimum of five axons, the shortest distance was 787.2±46.5 µm in the BXD102 mice, and the maximum distance was 2025.5±223.3 µm in the BXD29 mice. CONCLUSIONS: Differences in genetic background can have a profound effect on axonal regeneration causing a threefold increase in the number of regenerating axons at 0.5 mm from the crush site and a 2.5-fold increase in the distance traveled by at least five axons in the damaged optic nerve. Molecular Vision 2018-02-15 /pmc/articles/PMC5815339/ /pubmed/29463955 Text en Copyright © 2018 Molecular Vision. http://creativecommons.org/licenses/by-nc-nd/3.0/ 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 work is properly cited, used for non-commercial purposes, and is not altered or transformed.
spellingShingle Research Article
Wang, Jiaxing
Li, Ying
King, Rebecca
Struebing, Felix L.
Geisert, Eldon E.
Optic nerve regeneration in the mouse is a complex trait modulated by genetic background
title Optic nerve regeneration in the mouse is a complex trait modulated by genetic background
title_full Optic nerve regeneration in the mouse is a complex trait modulated by genetic background
title_fullStr Optic nerve regeneration in the mouse is a complex trait modulated by genetic background
title_full_unstemmed Optic nerve regeneration in the mouse is a complex trait modulated by genetic background
title_short Optic nerve regeneration in the mouse is a complex trait modulated by genetic background
title_sort optic nerve regeneration in the mouse is a complex trait modulated by genetic background
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5815339/
https://www.ncbi.nlm.nih.gov/pubmed/29463955
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AT struebingfelixl opticnerveregenerationinthemouseisacomplextraitmodulatedbygeneticbackground
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