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Alterations of the Hippocampal Neurogenic Niche in a Mouse Model of Dravet Syndrome

Hippocampal neurogenesis, the process by which neural stem cells (NSCs) continuously generate new neurons in the dentate gyrus (DG) of most mammals including humans, is chiefly regulated by neuronal activity. Thus, severe alterations have been found in samples from epilepsy patients and in the hippo...

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Autores principales: Martín-Suárez, Soraya, Abiega, Oihane, Ricobaraza, Ana, Hernandez-Alcoceba, Rubén, Encinas, Juan Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7385077/
https://www.ncbi.nlm.nih.gov/pubmed/32793597
http://dx.doi.org/10.3389/fcell.2020.00654
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author Martín-Suárez, Soraya
Abiega, Oihane
Ricobaraza, Ana
Hernandez-Alcoceba, Rubén
Encinas, Juan Manuel
author_facet Martín-Suárez, Soraya
Abiega, Oihane
Ricobaraza, Ana
Hernandez-Alcoceba, Rubén
Encinas, Juan Manuel
author_sort Martín-Suárez, Soraya
collection PubMed
description Hippocampal neurogenesis, the process by which neural stem cells (NSCs) continuously generate new neurons in the dentate gyrus (DG) of most mammals including humans, is chiefly regulated by neuronal activity. Thus, severe alterations have been found in samples from epilepsy patients and in the hippocampal neurogenic niche in mouse models of epilepsy. Reactive-like and gliogenic NSCs plus aberrant newborn neurons with altered migration, morphology, and functional properties are induced by seizures in experimental models of temporal lobe epilepsy. Hippocampal neurogenesis participates in memory and learning and in the control of anxiety and stress. It has been therefore hypothesized that part of the cognitive symptoms associated with epilepsy could be promoted by impaired hippocampal neurogenesis. We here analyze for the first time the alterations of the neurogenic niche in a novel mouse model of Dravet syndrome (DS), a genetic encephalopathy with severe epilepsy in infancy and multiple neurological comorbidities. Scn1a(WT/A1783V) mice, hereafter referred to as DS, carrying a heterozygous and clinically relevant SCN1A mutation (A1783V) recapitulate the disease at the genetic and phenotypic levels. We demonstrate that in the neurogenic niche of young adult DS mice there are fewer NSCs, they have impaired cell division and bear reactive-like morphology. In addition, there is significant aberrant neurogenesis. Newborn immature neurons migrate abnormally, and several morphological features are drastically changed. Thus, this study shows for the first time important modifications in hippocampal neurogenesis in DS and opens venues for further research on this topic.
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spelling pubmed-73850772020-08-12 Alterations of the Hippocampal Neurogenic Niche in a Mouse Model of Dravet Syndrome Martín-Suárez, Soraya Abiega, Oihane Ricobaraza, Ana Hernandez-Alcoceba, Rubén Encinas, Juan Manuel Front Cell Dev Biol Cell and Developmental Biology Hippocampal neurogenesis, the process by which neural stem cells (NSCs) continuously generate new neurons in the dentate gyrus (DG) of most mammals including humans, is chiefly regulated by neuronal activity. Thus, severe alterations have been found in samples from epilepsy patients and in the hippocampal neurogenic niche in mouse models of epilepsy. Reactive-like and gliogenic NSCs plus aberrant newborn neurons with altered migration, morphology, and functional properties are induced by seizures in experimental models of temporal lobe epilepsy. Hippocampal neurogenesis participates in memory and learning and in the control of anxiety and stress. It has been therefore hypothesized that part of the cognitive symptoms associated with epilepsy could be promoted by impaired hippocampal neurogenesis. We here analyze for the first time the alterations of the neurogenic niche in a novel mouse model of Dravet syndrome (DS), a genetic encephalopathy with severe epilepsy in infancy and multiple neurological comorbidities. Scn1a(WT/A1783V) mice, hereafter referred to as DS, carrying a heterozygous and clinically relevant SCN1A mutation (A1783V) recapitulate the disease at the genetic and phenotypic levels. We demonstrate that in the neurogenic niche of young adult DS mice there are fewer NSCs, they have impaired cell division and bear reactive-like morphology. In addition, there is significant aberrant neurogenesis. Newborn immature neurons migrate abnormally, and several morphological features are drastically changed. Thus, this study shows for the first time important modifications in hippocampal neurogenesis in DS and opens venues for further research on this topic. Frontiers Media S.A. 2020-07-21 /pmc/articles/PMC7385077/ /pubmed/32793597 http://dx.doi.org/10.3389/fcell.2020.00654 Text en Copyright © 2020 Martín-Suárez, Abiega, Ricobaraza, Hernandez-Alcoceba and Encinas. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Martín-Suárez, Soraya
Abiega, Oihane
Ricobaraza, Ana
Hernandez-Alcoceba, Rubén
Encinas, Juan Manuel
Alterations of the Hippocampal Neurogenic Niche in a Mouse Model of Dravet Syndrome
title Alterations of the Hippocampal Neurogenic Niche in a Mouse Model of Dravet Syndrome
title_full Alterations of the Hippocampal Neurogenic Niche in a Mouse Model of Dravet Syndrome
title_fullStr Alterations of the Hippocampal Neurogenic Niche in a Mouse Model of Dravet Syndrome
title_full_unstemmed Alterations of the Hippocampal Neurogenic Niche in a Mouse Model of Dravet Syndrome
title_short Alterations of the Hippocampal Neurogenic Niche in a Mouse Model of Dravet Syndrome
title_sort alterations of the hippocampal neurogenic niche in a mouse model of dravet syndrome
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7385077/
https://www.ncbi.nlm.nih.gov/pubmed/32793597
http://dx.doi.org/10.3389/fcell.2020.00654
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