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Cone Genesis Tracing by the Chrnb4-EGFP Mouse Line: Evidences of Cellular Material Fusion after Cone Precursor Transplantation

The cone function is essential to mediate high visual acuity, color vision, and daylight vision. Inherited cone dystrophies and age-related macular degeneration affect a substantial percentage of the world population. To identify and isolate the most competent cells for transplantation and integrati...

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Autores principales: Decembrini, Sarah, Martin, Catherine, Sennlaub, Florian, Chemtob, Sylvain, Biel, Martin, Samardzija, Marijana, Moulin, Alexandre, Behar-Cohen, Francine, Arsenijevic, Yvan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5363218/
https://www.ncbi.nlm.nih.gov/pubmed/28143742
http://dx.doi.org/10.1016/j.ymthe.2016.12.015
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author Decembrini, Sarah
Martin, Catherine
Sennlaub, Florian
Chemtob, Sylvain
Biel, Martin
Samardzija, Marijana
Moulin, Alexandre
Behar-Cohen, Francine
Arsenijevic, Yvan
author_facet Decembrini, Sarah
Martin, Catherine
Sennlaub, Florian
Chemtob, Sylvain
Biel, Martin
Samardzija, Marijana
Moulin, Alexandre
Behar-Cohen, Francine
Arsenijevic, Yvan
author_sort Decembrini, Sarah
collection PubMed
description The cone function is essential to mediate high visual acuity, color vision, and daylight vision. Inherited cone dystrophies and age-related macular degeneration affect a substantial percentage of the world population. To identify and isolate the most competent cells for transplantation and integration into the retina, cone tracing during development would be an important added value. To that aim, the Chrnb4-EGFP mouse line was characterized throughout retinogenesis. It revealed a sub-population of early retinal progenitors expressing the reporter gene that is progressively restricted to mature cones during retina development. The presence of the native CHRNB4 protein was confirmed in EGFP-positive cells, and it presents a similar pattern in the human retina. Sub-retinal transplantations of distinct subpopulations of Chrnb4-EGFP-expressing cells revealed the embryonic day 15.5 high-EGFP population the most efficient cells to interact with host retinas to provoke the appearance of EGFP-positive cones in the photoreceptor layer. Importantly, transplantations into the DsRed retinas revealed material exchanges between donor and host retinas, as >80% of transplanted EGFP-positive cones also were DsRed positive. Whether this cell material fusion is of significant therapeutic advantage requires further thorough investigations. The Chrnb4-EGFP mouse line definitely opens new research perspectives in cone genesis and retina repair.
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spelling pubmed-53632182018-03-01 Cone Genesis Tracing by the Chrnb4-EGFP Mouse Line: Evidences of Cellular Material Fusion after Cone Precursor Transplantation Decembrini, Sarah Martin, Catherine Sennlaub, Florian Chemtob, Sylvain Biel, Martin Samardzija, Marijana Moulin, Alexandre Behar-Cohen, Francine Arsenijevic, Yvan Mol Ther Original Article The cone function is essential to mediate high visual acuity, color vision, and daylight vision. Inherited cone dystrophies and age-related macular degeneration affect a substantial percentage of the world population. To identify and isolate the most competent cells for transplantation and integration into the retina, cone tracing during development would be an important added value. To that aim, the Chrnb4-EGFP mouse line was characterized throughout retinogenesis. It revealed a sub-population of early retinal progenitors expressing the reporter gene that is progressively restricted to mature cones during retina development. The presence of the native CHRNB4 protein was confirmed in EGFP-positive cells, and it presents a similar pattern in the human retina. Sub-retinal transplantations of distinct subpopulations of Chrnb4-EGFP-expressing cells revealed the embryonic day 15.5 high-EGFP population the most efficient cells to interact with host retinas to provoke the appearance of EGFP-positive cones in the photoreceptor layer. Importantly, transplantations into the DsRed retinas revealed material exchanges between donor and host retinas, as >80% of transplanted EGFP-positive cones also were DsRed positive. Whether this cell material fusion is of significant therapeutic advantage requires further thorough investigations. The Chrnb4-EGFP mouse line definitely opens new research perspectives in cone genesis and retina repair. American Society of Gene & Cell Therapy 2017-03-01 2017-01-28 /pmc/articles/PMC5363218/ /pubmed/28143742 http://dx.doi.org/10.1016/j.ymthe.2016.12.015 Text en © 2017 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Article
Decembrini, Sarah
Martin, Catherine
Sennlaub, Florian
Chemtob, Sylvain
Biel, Martin
Samardzija, Marijana
Moulin, Alexandre
Behar-Cohen, Francine
Arsenijevic, Yvan
Cone Genesis Tracing by the Chrnb4-EGFP Mouse Line: Evidences of Cellular Material Fusion after Cone Precursor Transplantation
title Cone Genesis Tracing by the Chrnb4-EGFP Mouse Line: Evidences of Cellular Material Fusion after Cone Precursor Transplantation
title_full Cone Genesis Tracing by the Chrnb4-EGFP Mouse Line: Evidences of Cellular Material Fusion after Cone Precursor Transplantation
title_fullStr Cone Genesis Tracing by the Chrnb4-EGFP Mouse Line: Evidences of Cellular Material Fusion after Cone Precursor Transplantation
title_full_unstemmed Cone Genesis Tracing by the Chrnb4-EGFP Mouse Line: Evidences of Cellular Material Fusion after Cone Precursor Transplantation
title_short Cone Genesis Tracing by the Chrnb4-EGFP Mouse Line: Evidences of Cellular Material Fusion after Cone Precursor Transplantation
title_sort cone genesis tracing by the chrnb4-egfp mouse line: evidences of cellular material fusion after cone precursor transplantation
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5363218/
https://www.ncbi.nlm.nih.gov/pubmed/28143742
http://dx.doi.org/10.1016/j.ymthe.2016.12.015
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