Cargando…

SOX2(+) Cell Population from Normal Human Brain White Matter Is Able to Generate Mature Oligodendrocytes

OBJECTIVES: A number of neurodegenerative diseases progress with a loss of myelin, which makes them candidate diseases for the development of cell-replacement therapies based on mobilisation or isolation of the endogenous neural/glial progenitor cells, in vitro expansion, and further implantation. C...

Descripción completa

Detalles Bibliográficos
Autores principales: Oliver-De La Cruz, Jorge, Carrión-Navarro, Josefa, García-Romero, Noemí, Gutiérrez-Martín, Antonio, Lázaro-Ibáñez, Elisa, Escobedo-Lucea, Carmen, Perona, Rosario, Belda-Iniesta, Cristobal, Ayuso-Sacido, Angel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4047120/
https://www.ncbi.nlm.nih.gov/pubmed/24901457
http://dx.doi.org/10.1371/journal.pone.0099253
_version_ 1782480371369115648
author Oliver-De La Cruz, Jorge
Carrión-Navarro, Josefa
García-Romero, Noemí
Gutiérrez-Martín, Antonio
Lázaro-Ibáñez, Elisa
Escobedo-Lucea, Carmen
Perona, Rosario
Belda-Iniesta, Cristobal
Ayuso-Sacido, Angel
author_facet Oliver-De La Cruz, Jorge
Carrión-Navarro, Josefa
García-Romero, Noemí
Gutiérrez-Martín, Antonio
Lázaro-Ibáñez, Elisa
Escobedo-Lucea, Carmen
Perona, Rosario
Belda-Iniesta, Cristobal
Ayuso-Sacido, Angel
author_sort Oliver-De La Cruz, Jorge
collection PubMed
description OBJECTIVES: A number of neurodegenerative diseases progress with a loss of myelin, which makes them candidate diseases for the development of cell-replacement therapies based on mobilisation or isolation of the endogenous neural/glial progenitor cells, in vitro expansion, and further implantation. Cells expressing A2B5 or PDGFRA/CNP have been isolated within the pool of glial progenitor cells in the subcortical white matter of the normal adult human brain, all of which demonstrate glial progenitor features. However, the heterogeneity and differentiation potential of this pool of cells is not yet well established. METHODS: We used diffusion tensor images, histopathology, and immunostaining analysis to demonstrate normal cytoarchitecture and the absence of abnormalities in human temporal lobe samples from patients with mesial temporal sclerosis. These samples were used to isolate and enrich glial progenitor cells in vitro, and later to detect such cells in vivo. RESULTS: We have identified a subpopulation of SOX2(+) cells, most of them co-localising with OLIG2, in the white matter of the normal adult human brain in vivo. These cells can be isolated and enriched in vitro, where they proliferate and generate immature (O4(+)) and mature (MBP(+)) oligodendrocytes and, to a lesser extent, astrocytes (GFAP(+)). CONCLUSION: Our results demonstrate the existence of a new glial progenitor cell subpopulation that expresses SOX2 in the white matter of the normal adult human brain. These cells might be of use for tissue regeneration procedures.
format Online
Article
Text
id pubmed-4047120
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-40471202014-06-09 SOX2(+) Cell Population from Normal Human Brain White Matter Is Able to Generate Mature Oligodendrocytes Oliver-De La Cruz, Jorge Carrión-Navarro, Josefa García-Romero, Noemí Gutiérrez-Martín, Antonio Lázaro-Ibáñez, Elisa Escobedo-Lucea, Carmen Perona, Rosario Belda-Iniesta, Cristobal Ayuso-Sacido, Angel PLoS One Research Article OBJECTIVES: A number of neurodegenerative diseases progress with a loss of myelin, which makes them candidate diseases for the development of cell-replacement therapies based on mobilisation or isolation of the endogenous neural/glial progenitor cells, in vitro expansion, and further implantation. Cells expressing A2B5 or PDGFRA/CNP have been isolated within the pool of glial progenitor cells in the subcortical white matter of the normal adult human brain, all of which demonstrate glial progenitor features. However, the heterogeneity and differentiation potential of this pool of cells is not yet well established. METHODS: We used diffusion tensor images, histopathology, and immunostaining analysis to demonstrate normal cytoarchitecture and the absence of abnormalities in human temporal lobe samples from patients with mesial temporal sclerosis. These samples were used to isolate and enrich glial progenitor cells in vitro, and later to detect such cells in vivo. RESULTS: We have identified a subpopulation of SOX2(+) cells, most of them co-localising with OLIG2, in the white matter of the normal adult human brain in vivo. These cells can be isolated and enriched in vitro, where they proliferate and generate immature (O4(+)) and mature (MBP(+)) oligodendrocytes and, to a lesser extent, astrocytes (GFAP(+)). CONCLUSION: Our results demonstrate the existence of a new glial progenitor cell subpopulation that expresses SOX2 in the white matter of the normal adult human brain. These cells might be of use for tissue regeneration procedures. Public Library of Science 2014-06-05 /pmc/articles/PMC4047120/ /pubmed/24901457 http://dx.doi.org/10.1371/journal.pone.0099253 Text en © 2014 Oliver-De La Cruz et al http://creativecommons.org/licenses/by/4.0/ 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 author and source are properly credited.
spellingShingle Research Article
Oliver-De La Cruz, Jorge
Carrión-Navarro, Josefa
García-Romero, Noemí
Gutiérrez-Martín, Antonio
Lázaro-Ibáñez, Elisa
Escobedo-Lucea, Carmen
Perona, Rosario
Belda-Iniesta, Cristobal
Ayuso-Sacido, Angel
SOX2(+) Cell Population from Normal Human Brain White Matter Is Able to Generate Mature Oligodendrocytes
title SOX2(+) Cell Population from Normal Human Brain White Matter Is Able to Generate Mature Oligodendrocytes
title_full SOX2(+) Cell Population from Normal Human Brain White Matter Is Able to Generate Mature Oligodendrocytes
title_fullStr SOX2(+) Cell Population from Normal Human Brain White Matter Is Able to Generate Mature Oligodendrocytes
title_full_unstemmed SOX2(+) Cell Population from Normal Human Brain White Matter Is Able to Generate Mature Oligodendrocytes
title_short SOX2(+) Cell Population from Normal Human Brain White Matter Is Able to Generate Mature Oligodendrocytes
title_sort sox2(+) cell population from normal human brain white matter is able to generate mature oligodendrocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4047120/
https://www.ncbi.nlm.nih.gov/pubmed/24901457
http://dx.doi.org/10.1371/journal.pone.0099253
work_keys_str_mv AT oliverdelacruzjorge sox2cellpopulationfromnormalhumanbrainwhitematterisabletogeneratematureoligodendrocytes
AT carrionnavarrojosefa sox2cellpopulationfromnormalhumanbrainwhitematterisabletogeneratematureoligodendrocytes
AT garciaromeronoemi sox2cellpopulationfromnormalhumanbrainwhitematterisabletogeneratematureoligodendrocytes
AT gutierrezmartinantonio sox2cellpopulationfromnormalhumanbrainwhitematterisabletogeneratematureoligodendrocytes
AT lazaroibanezelisa sox2cellpopulationfromnormalhumanbrainwhitematterisabletogeneratematureoligodendrocytes
AT escobedoluceacarmen sox2cellpopulationfromnormalhumanbrainwhitematterisabletogeneratematureoligodendrocytes
AT peronarosario sox2cellpopulationfromnormalhumanbrainwhitematterisabletogeneratematureoligodendrocytes
AT beldainiestacristobal sox2cellpopulationfromnormalhumanbrainwhitematterisabletogeneratematureoligodendrocytes
AT ayusosacidoangel sox2cellpopulationfromnormalhumanbrainwhitematterisabletogeneratematureoligodendrocytes