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mRNA-Driven Generation of Transgene-Free Neural Stem Cells from Human Urine-Derived Cells

Human neural stem cells (NSCs) hold enormous promise for neurological disorders, typically requiring their expandable and differentiable properties for regeneration of damaged neural tissues. Despite the therapeutic potential of induced NSCs (iNSCs), a major challenge for clinical feasibility is the...

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Autores principales: Kang, Phil Jun, Son, Daryeon, Ko, Tae Hee, Hong, Wonjun, Yun, Wonjin, Jang, Jihoon, Choi, Jong-Il, Song, Gwonhwa, Lee, Jangbo, Kim, In Yong, You, Seungkwon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6769943/
https://www.ncbi.nlm.nih.gov/pubmed/31489945
http://dx.doi.org/10.3390/cells8091043
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author Kang, Phil Jun
Son, Daryeon
Ko, Tae Hee
Hong, Wonjun
Yun, Wonjin
Jang, Jihoon
Choi, Jong-Il
Song, Gwonhwa
Lee, Jangbo
Kim, In Yong
You, Seungkwon
author_facet Kang, Phil Jun
Son, Daryeon
Ko, Tae Hee
Hong, Wonjun
Yun, Wonjin
Jang, Jihoon
Choi, Jong-Il
Song, Gwonhwa
Lee, Jangbo
Kim, In Yong
You, Seungkwon
author_sort Kang, Phil Jun
collection PubMed
description Human neural stem cells (NSCs) hold enormous promise for neurological disorders, typically requiring their expandable and differentiable properties for regeneration of damaged neural tissues. Despite the therapeutic potential of induced NSCs (iNSCs), a major challenge for clinical feasibility is the presence of integrated transgenes in the host genome, contributing to the risk for undesired genotoxicity and tumorigenesis. Here, we describe the advanced transgene-free generation of iNSCs from human urine-derived cells (HUCs) by combining a cocktail of defined small molecules with self-replicable mRNA delivery. The established iNSCs were completely transgene-free in their cytosol and genome and further resembled human embryonic stem cell-derived NSCs in the morphology, biological characteristics, global gene expression, and potential to differentiate into functional neurons, astrocytes, and oligodendrocytes. Moreover, iNSC colonies were observed within eight days under optimized conditions, and no teratomas formed in vivo, implying the absence of pluripotent cells. This study proposes an approach to generate transplantable iNSCs that can be broadly applied for neurological disorders in a safe, efficient, and patient-specific manner.
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spelling pubmed-67699432019-10-30 mRNA-Driven Generation of Transgene-Free Neural Stem Cells from Human Urine-Derived Cells Kang, Phil Jun Son, Daryeon Ko, Tae Hee Hong, Wonjun Yun, Wonjin Jang, Jihoon Choi, Jong-Il Song, Gwonhwa Lee, Jangbo Kim, In Yong You, Seungkwon Cells Article Human neural stem cells (NSCs) hold enormous promise for neurological disorders, typically requiring their expandable and differentiable properties for regeneration of damaged neural tissues. Despite the therapeutic potential of induced NSCs (iNSCs), a major challenge for clinical feasibility is the presence of integrated transgenes in the host genome, contributing to the risk for undesired genotoxicity and tumorigenesis. Here, we describe the advanced transgene-free generation of iNSCs from human urine-derived cells (HUCs) by combining a cocktail of defined small molecules with self-replicable mRNA delivery. The established iNSCs were completely transgene-free in their cytosol and genome and further resembled human embryonic stem cell-derived NSCs in the morphology, biological characteristics, global gene expression, and potential to differentiate into functional neurons, astrocytes, and oligodendrocytes. Moreover, iNSC colonies were observed within eight days under optimized conditions, and no teratomas formed in vivo, implying the absence of pluripotent cells. This study proposes an approach to generate transplantable iNSCs that can be broadly applied for neurological disorders in a safe, efficient, and patient-specific manner. MDPI 2019-09-06 /pmc/articles/PMC6769943/ /pubmed/31489945 http://dx.doi.org/10.3390/cells8091043 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kang, Phil Jun
Son, Daryeon
Ko, Tae Hee
Hong, Wonjun
Yun, Wonjin
Jang, Jihoon
Choi, Jong-Il
Song, Gwonhwa
Lee, Jangbo
Kim, In Yong
You, Seungkwon
mRNA-Driven Generation of Transgene-Free Neural Stem Cells from Human Urine-Derived Cells
title mRNA-Driven Generation of Transgene-Free Neural Stem Cells from Human Urine-Derived Cells
title_full mRNA-Driven Generation of Transgene-Free Neural Stem Cells from Human Urine-Derived Cells
title_fullStr mRNA-Driven Generation of Transgene-Free Neural Stem Cells from Human Urine-Derived Cells
title_full_unstemmed mRNA-Driven Generation of Transgene-Free Neural Stem Cells from Human Urine-Derived Cells
title_short mRNA-Driven Generation of Transgene-Free Neural Stem Cells from Human Urine-Derived Cells
title_sort mrna-driven generation of transgene-free neural stem cells from human urine-derived cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6769943/
https://www.ncbi.nlm.nih.gov/pubmed/31489945
http://dx.doi.org/10.3390/cells8091043
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