Cargando…

A familiar study on self-limited childhood epilepsy patients using hIPSC-derived neurons shows a bias towards immaturity at the morphological, electrophysiological and gene expression levels

BACKGROUND: Self-limited Childhood Epilepsies are the most prevalent epileptic syndrome in children. Its pathogenesis is unknown. In this disease, symptoms resolve spontaneously in approximately 50% of patients when maturity is reached, prompting to a maturation problem. The purpose of this study wa...

Descripción completa

Detalles Bibliográficos
Autores principales: Casalia, Mariana L., Casabona, Juan Cruz, García, Corina, Cavaliere Candedo, Verónica, Quintá, Héctor Ramiro, Farías, María Isabel, Gonzalez, Joaquín, Gonzalez Morón, Dolores, Córdoba, Marta, Consalvo, Damian, Mostoslavsky, Gustavo, Urbano, Francisco J., Pasquini, Juana, Murer, Mario Gustavo, Rela, Lorena, Kauffman, Marcelo A., Pitossi, Fernando J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620942/
https://www.ncbi.nlm.nih.gov/pubmed/34823607
http://dx.doi.org/10.1186/s13287-021-02658-2
_version_ 1784605338335444992
author Casalia, Mariana L.
Casabona, Juan Cruz
García, Corina
Cavaliere Candedo, Verónica
Quintá, Héctor Ramiro
Farías, María Isabel
Gonzalez, Joaquín
Gonzalez Morón, Dolores
Córdoba, Marta
Consalvo, Damian
Mostoslavsky, Gustavo
Urbano, Francisco J.
Pasquini, Juana
Murer, Mario Gustavo
Rela, Lorena
Kauffman, Marcelo A.
Pitossi, Fernando J.
author_facet Casalia, Mariana L.
Casabona, Juan Cruz
García, Corina
Cavaliere Candedo, Verónica
Quintá, Héctor Ramiro
Farías, María Isabel
Gonzalez, Joaquín
Gonzalez Morón, Dolores
Córdoba, Marta
Consalvo, Damian
Mostoslavsky, Gustavo
Urbano, Francisco J.
Pasquini, Juana
Murer, Mario Gustavo
Rela, Lorena
Kauffman, Marcelo A.
Pitossi, Fernando J.
author_sort Casalia, Mariana L.
collection PubMed
description BACKGROUND: Self-limited Childhood Epilepsies are the most prevalent epileptic syndrome in children. Its pathogenesis is unknown. In this disease, symptoms resolve spontaneously in approximately 50% of patients when maturity is reached, prompting to a maturation problem. The purpose of this study was to understand the molecular bases of this disease by generating and analyzing induced pluripotent stem cell-derived neurons from a family with 7 siblings, among whom 4 suffer from this disease. METHODS: Two affected siblings and, as controls, a healthy sister and the unaffected mother of the family were studied. Using exome sequencing, a homozygous variant in the FYVE, RhoGEF and PH Domain Containing 6 gene was identified in the patients as a putative genetic factor that could contribute to the development of this familial disorder. After informed consent was signed, skin biopsies from the 4 individuals were collected, fibroblasts were derived and reprogrammed and neurons were generated and characterized by markers and electrophysiology. Morphological, electrophysiological and gene expression analyses were performed on these neurons. RESULTS: Bona fide induced pluripotent stem cells and derived neurons could be generated in all cases. Overall, there were no major shifts in neuronal marker expression among patient and control-derived neurons. Compared to two familial controls, neurons from patients showed shorter axonal length, a dramatic reduction in synapsin-1 levels and cytoskeleton disorganization. In addition, neurons from patients developed a lower action potential threshold with time of in vitro differentiation and the amount of current needed to elicit an action potential (rheobase) was smaller in cells recorded from NE derived from patients at 12 weeks of differentiation when compared with shorter times in culture. These results indicate an increased excitability in patient cells that emerges with the time in culture. Finally, functional genomic analysis showed a biased towards immaturity in patient-derived neurons. CONCLUSIONS: We are reporting the first in vitro model of self-limited childhood epilepsy, providing the cellular bases for future in-depth studies to understand its pathogenesis. Our results show patient-specific neuronal features reflecting immaturity, in resonance with the course of the disease and previous imaging studies. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1186/s13287-021-02658-2.
format Online
Article
Text
id pubmed-8620942
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-86209422021-11-29 A familiar study on self-limited childhood epilepsy patients using hIPSC-derived neurons shows a bias towards immaturity at the morphological, electrophysiological and gene expression levels Casalia, Mariana L. Casabona, Juan Cruz García, Corina Cavaliere Candedo, Verónica Quintá, Héctor Ramiro Farías, María Isabel Gonzalez, Joaquín Gonzalez Morón, Dolores Córdoba, Marta Consalvo, Damian Mostoslavsky, Gustavo Urbano, Francisco J. Pasquini, Juana Murer, Mario Gustavo Rela, Lorena Kauffman, Marcelo A. Pitossi, Fernando J. Stem Cell Res Ther Research BACKGROUND: Self-limited Childhood Epilepsies are the most prevalent epileptic syndrome in children. Its pathogenesis is unknown. In this disease, symptoms resolve spontaneously in approximately 50% of patients when maturity is reached, prompting to a maturation problem. The purpose of this study was to understand the molecular bases of this disease by generating and analyzing induced pluripotent stem cell-derived neurons from a family with 7 siblings, among whom 4 suffer from this disease. METHODS: Two affected siblings and, as controls, a healthy sister and the unaffected mother of the family were studied. Using exome sequencing, a homozygous variant in the FYVE, RhoGEF and PH Domain Containing 6 gene was identified in the patients as a putative genetic factor that could contribute to the development of this familial disorder. After informed consent was signed, skin biopsies from the 4 individuals were collected, fibroblasts were derived and reprogrammed and neurons were generated and characterized by markers and electrophysiology. Morphological, electrophysiological and gene expression analyses were performed on these neurons. RESULTS: Bona fide induced pluripotent stem cells and derived neurons could be generated in all cases. Overall, there were no major shifts in neuronal marker expression among patient and control-derived neurons. Compared to two familial controls, neurons from patients showed shorter axonal length, a dramatic reduction in synapsin-1 levels and cytoskeleton disorganization. In addition, neurons from patients developed a lower action potential threshold with time of in vitro differentiation and the amount of current needed to elicit an action potential (rheobase) was smaller in cells recorded from NE derived from patients at 12 weeks of differentiation when compared with shorter times in culture. These results indicate an increased excitability in patient cells that emerges with the time in culture. Finally, functional genomic analysis showed a biased towards immaturity in patient-derived neurons. CONCLUSIONS: We are reporting the first in vitro model of self-limited childhood epilepsy, providing the cellular bases for future in-depth studies to understand its pathogenesis. Our results show patient-specific neuronal features reflecting immaturity, in resonance with the course of the disease and previous imaging studies. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1186/s13287-021-02658-2. BioMed Central 2021-11-25 /pmc/articles/PMC8620942/ /pubmed/34823607 http://dx.doi.org/10.1186/s13287-021-02658-2 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) . The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/ (https://creativecommons.org/publicdomain/zero/1.0/) ) applies to the data made available in this article, unless otherwise stated in a credit line to the data.
spellingShingle Research
Casalia, Mariana L.
Casabona, Juan Cruz
García, Corina
Cavaliere Candedo, Verónica
Quintá, Héctor Ramiro
Farías, María Isabel
Gonzalez, Joaquín
Gonzalez Morón, Dolores
Córdoba, Marta
Consalvo, Damian
Mostoslavsky, Gustavo
Urbano, Francisco J.
Pasquini, Juana
Murer, Mario Gustavo
Rela, Lorena
Kauffman, Marcelo A.
Pitossi, Fernando J.
A familiar study on self-limited childhood epilepsy patients using hIPSC-derived neurons shows a bias towards immaturity at the morphological, electrophysiological and gene expression levels
title A familiar study on self-limited childhood epilepsy patients using hIPSC-derived neurons shows a bias towards immaturity at the morphological, electrophysiological and gene expression levels
title_full A familiar study on self-limited childhood epilepsy patients using hIPSC-derived neurons shows a bias towards immaturity at the morphological, electrophysiological and gene expression levels
title_fullStr A familiar study on self-limited childhood epilepsy patients using hIPSC-derived neurons shows a bias towards immaturity at the morphological, electrophysiological and gene expression levels
title_full_unstemmed A familiar study on self-limited childhood epilepsy patients using hIPSC-derived neurons shows a bias towards immaturity at the morphological, electrophysiological and gene expression levels
title_short A familiar study on self-limited childhood epilepsy patients using hIPSC-derived neurons shows a bias towards immaturity at the morphological, electrophysiological and gene expression levels
title_sort familiar study on self-limited childhood epilepsy patients using hipsc-derived neurons shows a bias towards immaturity at the morphological, electrophysiological and gene expression levels
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620942/
https://www.ncbi.nlm.nih.gov/pubmed/34823607
http://dx.doi.org/10.1186/s13287-021-02658-2
work_keys_str_mv AT casaliamarianal afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT casabonajuancruz afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT garciacorina afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT cavalierecandedoveronica afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT quintahectorramiro afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT fariasmariaisabel afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT gonzalezjoaquin afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT gonzalezmorondolores afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT cordobamarta afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT consalvodamian afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT mostoslavskygustavo afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT urbanofranciscoj afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT pasquinijuana afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT murermariogustavo afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT relalorena afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT kauffmanmarceloa afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT pitossifernandoj afamiliarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT casaliamarianal familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT casabonajuancruz familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT garciacorina familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT cavalierecandedoveronica familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT quintahectorramiro familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT fariasmariaisabel familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT gonzalezjoaquin familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT gonzalezmorondolores familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT cordobamarta familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT consalvodamian familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT mostoslavskygustavo familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT urbanofranciscoj familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT pasquinijuana familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT murermariogustavo familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT relalorena familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT kauffmanmarceloa familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels
AT pitossifernandoj familiarstudyonselflimitedchildhoodepilepsypatientsusinghipscderivedneuronsshowsabiastowardsimmaturityatthemorphologicalelectrophysiologicalandgeneexpressionlevels