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One-step Reprogramming of Human Fibroblasts into Oligodendrocyte-like Cells by SOX10, OLIG2, and NKX6.2

Limited access to human oligodendrocytes impairs better understanding of oligodendrocyte pathology in myelin diseases. Here, we describe a method to robustly convert human fibroblasts directly into oligodendrocyte-like cells (dc-hiOLs), which allows evaluation of remyelination-promoting compounds an...

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Autores principales: Chanoumidou, Konstantina, Hernández-Rodríguez, Benjamín, Windener, Farina, Thomas, Christian, Stehling, Martin, Mozafari, Sabah, Albrecht, Stefanie, Ottoboni, Linda, Antel, Jack, Kim, Kee-Pyo, Velychko, Sergiy, Cui, Qiao Ling, Xu, Yu Kang T., Martino, Gianvito, Winkler, Jürgen, Schöler, Hans R., Baron-Van Evercooren, Anne, Boespflug-Tanguy, Odile, Vaquerizas, Juan M., Ehrlich, Marc, Kuhlmann, Tanja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8072064/
https://www.ncbi.nlm.nih.gov/pubmed/33770499
http://dx.doi.org/10.1016/j.stemcr.2021.03.001
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author Chanoumidou, Konstantina
Hernández-Rodríguez, Benjamín
Windener, Farina
Thomas, Christian
Stehling, Martin
Mozafari, Sabah
Albrecht, Stefanie
Ottoboni, Linda
Antel, Jack
Kim, Kee-Pyo
Velychko, Sergiy
Cui, Qiao Ling
Xu, Yu Kang T.
Martino, Gianvito
Winkler, Jürgen
Schöler, Hans R.
Baron-Van Evercooren, Anne
Boespflug-Tanguy, Odile
Vaquerizas, Juan M.
Ehrlich, Marc
Kuhlmann, Tanja
author_facet Chanoumidou, Konstantina
Hernández-Rodríguez, Benjamín
Windener, Farina
Thomas, Christian
Stehling, Martin
Mozafari, Sabah
Albrecht, Stefanie
Ottoboni, Linda
Antel, Jack
Kim, Kee-Pyo
Velychko, Sergiy
Cui, Qiao Ling
Xu, Yu Kang T.
Martino, Gianvito
Winkler, Jürgen
Schöler, Hans R.
Baron-Van Evercooren, Anne
Boespflug-Tanguy, Odile
Vaquerizas, Juan M.
Ehrlich, Marc
Kuhlmann, Tanja
author_sort Chanoumidou, Konstantina
collection PubMed
description Limited access to human oligodendrocytes impairs better understanding of oligodendrocyte pathology in myelin diseases. Here, we describe a method to robustly convert human fibroblasts directly into oligodendrocyte-like cells (dc-hiOLs), which allows evaluation of remyelination-promoting compounds and disease modeling. Ectopic expression of SOX10, OLIG2, and NKX6.2 in human fibroblasts results in rapid generation of O4(+) cells, which further differentiate into MBP(+) mature oligodendrocyte-like cells within 16 days. dc-hiOLs undergo chromatin remodeling to express oligodendrocyte markers, ensheath axons, and nanofibers in vitro, respond to promyelination compound treatment, and recapitulate in vitro oligodendroglial pathologies associated with Pelizaeus-Merzbacher leukodystrophy related to PLP1 mutations. Furthermore, DNA methylome analysis provides evidence that the CpG methylation pattern significantly differs between dc-hiOLs derived from fibroblasts of young and old donors, indicating the maintenance of the source cells’ “age.” In summary, dc-hiOLs represent a reproducible technology that could contribute to personalized medicine in the field of myelin diseases.
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spelling pubmed-80720642021-04-29 One-step Reprogramming of Human Fibroblasts into Oligodendrocyte-like Cells by SOX10, OLIG2, and NKX6.2 Chanoumidou, Konstantina Hernández-Rodríguez, Benjamín Windener, Farina Thomas, Christian Stehling, Martin Mozafari, Sabah Albrecht, Stefanie Ottoboni, Linda Antel, Jack Kim, Kee-Pyo Velychko, Sergiy Cui, Qiao Ling Xu, Yu Kang T. Martino, Gianvito Winkler, Jürgen Schöler, Hans R. Baron-Van Evercooren, Anne Boespflug-Tanguy, Odile Vaquerizas, Juan M. Ehrlich, Marc Kuhlmann, Tanja Stem Cell Reports Article Limited access to human oligodendrocytes impairs better understanding of oligodendrocyte pathology in myelin diseases. Here, we describe a method to robustly convert human fibroblasts directly into oligodendrocyte-like cells (dc-hiOLs), which allows evaluation of remyelination-promoting compounds and disease modeling. Ectopic expression of SOX10, OLIG2, and NKX6.2 in human fibroblasts results in rapid generation of O4(+) cells, which further differentiate into MBP(+) mature oligodendrocyte-like cells within 16 days. dc-hiOLs undergo chromatin remodeling to express oligodendrocyte markers, ensheath axons, and nanofibers in vitro, respond to promyelination compound treatment, and recapitulate in vitro oligodendroglial pathologies associated with Pelizaeus-Merzbacher leukodystrophy related to PLP1 mutations. Furthermore, DNA methylome analysis provides evidence that the CpG methylation pattern significantly differs between dc-hiOLs derived from fibroblasts of young and old donors, indicating the maintenance of the source cells’ “age.” In summary, dc-hiOLs represent a reproducible technology that could contribute to personalized medicine in the field of myelin diseases. Elsevier 2021-03-25 /pmc/articles/PMC8072064/ /pubmed/33770499 http://dx.doi.org/10.1016/j.stemcr.2021.03.001 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Chanoumidou, Konstantina
Hernández-Rodríguez, Benjamín
Windener, Farina
Thomas, Christian
Stehling, Martin
Mozafari, Sabah
Albrecht, Stefanie
Ottoboni, Linda
Antel, Jack
Kim, Kee-Pyo
Velychko, Sergiy
Cui, Qiao Ling
Xu, Yu Kang T.
Martino, Gianvito
Winkler, Jürgen
Schöler, Hans R.
Baron-Van Evercooren, Anne
Boespflug-Tanguy, Odile
Vaquerizas, Juan M.
Ehrlich, Marc
Kuhlmann, Tanja
One-step Reprogramming of Human Fibroblasts into Oligodendrocyte-like Cells by SOX10, OLIG2, and NKX6.2
title One-step Reprogramming of Human Fibroblasts into Oligodendrocyte-like Cells by SOX10, OLIG2, and NKX6.2
title_full One-step Reprogramming of Human Fibroblasts into Oligodendrocyte-like Cells by SOX10, OLIG2, and NKX6.2
title_fullStr One-step Reprogramming of Human Fibroblasts into Oligodendrocyte-like Cells by SOX10, OLIG2, and NKX6.2
title_full_unstemmed One-step Reprogramming of Human Fibroblasts into Oligodendrocyte-like Cells by SOX10, OLIG2, and NKX6.2
title_short One-step Reprogramming of Human Fibroblasts into Oligodendrocyte-like Cells by SOX10, OLIG2, and NKX6.2
title_sort one-step reprogramming of human fibroblasts into oligodendrocyte-like cells by sox10, olig2, and nkx6.2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8072064/
https://www.ncbi.nlm.nih.gov/pubmed/33770499
http://dx.doi.org/10.1016/j.stemcr.2021.03.001
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