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Direct Reprogramming of Adult Human Somatic Stem Cells Into Functional Neurons Using Sox2, Ascl1, and Neurog2

Reprogramming of somatic cells into induced pluripotent stem cells (iPS) or directly into cells from a different lineage, including neurons, has revolutionized research in regenerative medicine in recent years. Mesenchymal stem cells are good candidates for lineage reprogramming and autologous trans...

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Autores principales: Araújo, Jessica Alves de Medeiros, Hilscher, Markus M., Marques-Coelho, Diego, Golbert, Daiane C. F., Cornelio, Deborah A., Batistuzzo de Medeiros, Silvia R., Leão, Richardson N., Costa, Marcos R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6003093/
https://www.ncbi.nlm.nih.gov/pubmed/29937717
http://dx.doi.org/10.3389/fncel.2018.00155
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author Araújo, Jessica Alves de Medeiros
Hilscher, Markus M.
Marques-Coelho, Diego
Golbert, Daiane C. F.
Cornelio, Deborah A.
Batistuzzo de Medeiros, Silvia R.
Leão, Richardson N.
Costa, Marcos R.
author_facet Araújo, Jessica Alves de Medeiros
Hilscher, Markus M.
Marques-Coelho, Diego
Golbert, Daiane C. F.
Cornelio, Deborah A.
Batistuzzo de Medeiros, Silvia R.
Leão, Richardson N.
Costa, Marcos R.
author_sort Araújo, Jessica Alves de Medeiros
collection PubMed
description Reprogramming of somatic cells into induced pluripotent stem cells (iPS) or directly into cells from a different lineage, including neurons, has revolutionized research in regenerative medicine in recent years. Mesenchymal stem cells are good candidates for lineage reprogramming and autologous transplantation, since they can be easily isolated from accessible sources in adult humans, such as bone marrow and dental tissues. Here, we demonstrate that expression of the transcription factors (TFs) SRY (sex determining region Y)-box 2 (Sox2), Mammalian achaete-scute homolog 1 (Ascl1), or Neurogenin 2 (Neurog2) is sufficient for reprogramming human umbilical cord mesenchymal stem cells (hUCMSC) into induced neurons (iNs). Furthermore, the combination of Sox2/Ascl1 or Sox2/Neurog2 is sufficient to reprogram up to 50% of transfected hUCMSCs into iNs showing electrical properties of mature neurons and establishing synaptic contacts with co-culture primary neurons. Finally, we show evidence supporting the notion that different combinations of TFs (Sox2/Ascl1 and Sox2/Neurog2) may induce multiple and overlapping neuronal phenotypes in lineage-reprogrammed iNs, suggesting that neuronal fate is determined by a combination of signals involving the TFs used for reprogramming but also the internal state of the converted cell. Altogether, the data presented here contribute to the advancement of techniques aiming at obtaining specific neuronal phenotypes from lineage-converted human somatic cells to treat neurological disorders.
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spelling pubmed-60030932018-06-22 Direct Reprogramming of Adult Human Somatic Stem Cells Into Functional Neurons Using Sox2, Ascl1, and Neurog2 Araújo, Jessica Alves de Medeiros Hilscher, Markus M. Marques-Coelho, Diego Golbert, Daiane C. F. Cornelio, Deborah A. Batistuzzo de Medeiros, Silvia R. Leão, Richardson N. Costa, Marcos R. Front Cell Neurosci Neuroscience Reprogramming of somatic cells into induced pluripotent stem cells (iPS) or directly into cells from a different lineage, including neurons, has revolutionized research in regenerative medicine in recent years. Mesenchymal stem cells are good candidates for lineage reprogramming and autologous transplantation, since they can be easily isolated from accessible sources in adult humans, such as bone marrow and dental tissues. Here, we demonstrate that expression of the transcription factors (TFs) SRY (sex determining region Y)-box 2 (Sox2), Mammalian achaete-scute homolog 1 (Ascl1), or Neurogenin 2 (Neurog2) is sufficient for reprogramming human umbilical cord mesenchymal stem cells (hUCMSC) into induced neurons (iNs). Furthermore, the combination of Sox2/Ascl1 or Sox2/Neurog2 is sufficient to reprogram up to 50% of transfected hUCMSCs into iNs showing electrical properties of mature neurons and establishing synaptic contacts with co-culture primary neurons. Finally, we show evidence supporting the notion that different combinations of TFs (Sox2/Ascl1 and Sox2/Neurog2) may induce multiple and overlapping neuronal phenotypes in lineage-reprogrammed iNs, suggesting that neuronal fate is determined by a combination of signals involving the TFs used for reprogramming but also the internal state of the converted cell. Altogether, the data presented here contribute to the advancement of techniques aiming at obtaining specific neuronal phenotypes from lineage-converted human somatic cells to treat neurological disorders. Frontiers Media S.A. 2018-06-08 /pmc/articles/PMC6003093/ /pubmed/29937717 http://dx.doi.org/10.3389/fncel.2018.00155 Text en Copyright © 2018 Araújo, Hilscher, Marques-Coelho, Golbert, Cornelio, Batistuzzo de Medeiros, Leão and Costa. 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 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 Neuroscience
Araújo, Jessica Alves de Medeiros
Hilscher, Markus M.
Marques-Coelho, Diego
Golbert, Daiane C. F.
Cornelio, Deborah A.
Batistuzzo de Medeiros, Silvia R.
Leão, Richardson N.
Costa, Marcos R.
Direct Reprogramming of Adult Human Somatic Stem Cells Into Functional Neurons Using Sox2, Ascl1, and Neurog2
title Direct Reprogramming of Adult Human Somatic Stem Cells Into Functional Neurons Using Sox2, Ascl1, and Neurog2
title_full Direct Reprogramming of Adult Human Somatic Stem Cells Into Functional Neurons Using Sox2, Ascl1, and Neurog2
title_fullStr Direct Reprogramming of Adult Human Somatic Stem Cells Into Functional Neurons Using Sox2, Ascl1, and Neurog2
title_full_unstemmed Direct Reprogramming of Adult Human Somatic Stem Cells Into Functional Neurons Using Sox2, Ascl1, and Neurog2
title_short Direct Reprogramming of Adult Human Somatic Stem Cells Into Functional Neurons Using Sox2, Ascl1, and Neurog2
title_sort direct reprogramming of adult human somatic stem cells into functional neurons using sox2, ascl1, and neurog2
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6003093/
https://www.ncbi.nlm.nih.gov/pubmed/29937717
http://dx.doi.org/10.3389/fncel.2018.00155
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