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Retinal Tissue Shows Glial Changes in a Dravet Syndrome Knock-in Mouse Model

Dravet syndrome (DS) is an epileptic encephalopathy caused by mutations in the Scn1a gene encoding the α1 subunit of the Nav1.1 sodium channel, which is associated with recurrent and generalized seizures, even leading to death. In experimental models of DS, histological alterations have been found i...

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Autores principales: Salazar, Juan J., Satriano, Andrea, Matamoros, José A., Fernández-Albarral, José A., Salobrar-García, Elena, López-Cuenca, Inés, de Hoz, Rosa, Sánchez-Puebla, Lidia, Ramírez, José M., Alonso, Cristina, Satta, Valentina, Hernández-Fisac, Inés, Sagredo, Onintza, Ramírez, Ana I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916888/
https://www.ncbi.nlm.nih.gov/pubmed/36769051
http://dx.doi.org/10.3390/ijms24032727
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author Salazar, Juan J.
Satriano, Andrea
Matamoros, José A.
Fernández-Albarral, José A.
Salobrar-García, Elena
López-Cuenca, Inés
de Hoz, Rosa
Sánchez-Puebla, Lidia
Ramírez, José M.
Alonso, Cristina
Satta, Valentina
Hernández-Fisac, Inés
Sagredo, Onintza
Ramírez, Ana I.
author_facet Salazar, Juan J.
Satriano, Andrea
Matamoros, José A.
Fernández-Albarral, José A.
Salobrar-García, Elena
López-Cuenca, Inés
de Hoz, Rosa
Sánchez-Puebla, Lidia
Ramírez, José M.
Alonso, Cristina
Satta, Valentina
Hernández-Fisac, Inés
Sagredo, Onintza
Ramírez, Ana I.
author_sort Salazar, Juan J.
collection PubMed
description Dravet syndrome (DS) is an epileptic encephalopathy caused by mutations in the Scn1a gene encoding the α1 subunit of the Nav1.1 sodium channel, which is associated with recurrent and generalized seizures, even leading to death. In experimental models of DS, histological alterations have been found in the brain; however, the retina is a projection of the brain and there are no studies that analyze the possible histological changes that may occur in the disease. This study analyzes the retinal histological changes in glial cells (microglia and astrocytes), retinal ganglion cells (RGCs) and GABAergic amacrine cells in an experimental model of DS (Syn-Cre/Scn1a(WT/A1783V)) compared to a control group at postnatal day (PND) 25. Retinal whole-mounts were labeled with anti-GFAP, anti-Iba-1, anti-Brn3a and anti-GAD65/67. Signs of microglial and astroglial activation, and the number of Brn3a+ and GAD65+67+ cells were quantified. We found retinal activation of astroglial and microglial cells but not death of RGCs and GABAergic amacrine cells. These changes are similar to those found at the level of the hippocampus in the same experimental model in PND25, indicating a relationship between brain and retinal changes in DS. This suggests that the retina could serve as a possible biomarker in DS.
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spelling pubmed-99168882023-02-11 Retinal Tissue Shows Glial Changes in a Dravet Syndrome Knock-in Mouse Model Salazar, Juan J. Satriano, Andrea Matamoros, José A. Fernández-Albarral, José A. Salobrar-García, Elena López-Cuenca, Inés de Hoz, Rosa Sánchez-Puebla, Lidia Ramírez, José M. Alonso, Cristina Satta, Valentina Hernández-Fisac, Inés Sagredo, Onintza Ramírez, Ana I. Int J Mol Sci Article Dravet syndrome (DS) is an epileptic encephalopathy caused by mutations in the Scn1a gene encoding the α1 subunit of the Nav1.1 sodium channel, which is associated with recurrent and generalized seizures, even leading to death. In experimental models of DS, histological alterations have been found in the brain; however, the retina is a projection of the brain and there are no studies that analyze the possible histological changes that may occur in the disease. This study analyzes the retinal histological changes in glial cells (microglia and astrocytes), retinal ganglion cells (RGCs) and GABAergic amacrine cells in an experimental model of DS (Syn-Cre/Scn1a(WT/A1783V)) compared to a control group at postnatal day (PND) 25. Retinal whole-mounts were labeled with anti-GFAP, anti-Iba-1, anti-Brn3a and anti-GAD65/67. Signs of microglial and astroglial activation, and the number of Brn3a+ and GAD65+67+ cells were quantified. We found retinal activation of astroglial and microglial cells but not death of RGCs and GABAergic amacrine cells. These changes are similar to those found at the level of the hippocampus in the same experimental model in PND25, indicating a relationship between brain and retinal changes in DS. This suggests that the retina could serve as a possible biomarker in DS. MDPI 2023-02-01 /pmc/articles/PMC9916888/ /pubmed/36769051 http://dx.doi.org/10.3390/ijms24032727 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Salazar, Juan J.
Satriano, Andrea
Matamoros, José A.
Fernández-Albarral, José A.
Salobrar-García, Elena
López-Cuenca, Inés
de Hoz, Rosa
Sánchez-Puebla, Lidia
Ramírez, José M.
Alonso, Cristina
Satta, Valentina
Hernández-Fisac, Inés
Sagredo, Onintza
Ramírez, Ana I.
Retinal Tissue Shows Glial Changes in a Dravet Syndrome Knock-in Mouse Model
title Retinal Tissue Shows Glial Changes in a Dravet Syndrome Knock-in Mouse Model
title_full Retinal Tissue Shows Glial Changes in a Dravet Syndrome Knock-in Mouse Model
title_fullStr Retinal Tissue Shows Glial Changes in a Dravet Syndrome Knock-in Mouse Model
title_full_unstemmed Retinal Tissue Shows Glial Changes in a Dravet Syndrome Knock-in Mouse Model
title_short Retinal Tissue Shows Glial Changes in a Dravet Syndrome Knock-in Mouse Model
title_sort retinal tissue shows glial changes in a dravet syndrome knock-in mouse model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916888/
https://www.ncbi.nlm.nih.gov/pubmed/36769051
http://dx.doi.org/10.3390/ijms24032727
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