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Naïve-like conversion enhances the difference in innate in vitro differentiation capacity between rabbit ES cells and iPS cells

Quality evaluation of pluripotent stem cells using appropriate animal models needs to be improved for human regenerative medicine. Previously, we demonstrated that although the in vitro neural differentiating capacity of rabbit induced pluripotent stem cells (iPSCs) can be mitigated by improving the...

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Autores principales: HONSHO, Kimiko, HIROSE, Michiko, HATORI, Masanori, YASMIN, Lubna, IZU, Haruna, MATOBA, Shogo, TOGAYACHI, Sumie, MIYOSHI, Hiroyuki, SANKAI, Tadashi, OGURA, Atsuo, HONDA, Arata
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Society for Reproduction and Development 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4354226/
https://www.ncbi.nlm.nih.gov/pubmed/25345855
http://dx.doi.org/10.1262/jrd.2014-098
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author HONSHO, Kimiko
HIROSE, Michiko
HATORI, Masanori
YASMIN, Lubna
IZU, Haruna
MATOBA, Shogo
TOGAYACHI, Sumie
MIYOSHI, Hiroyuki
SANKAI, Tadashi
OGURA, Atsuo
HONDA, Arata
author_facet HONSHO, Kimiko
HIROSE, Michiko
HATORI, Masanori
YASMIN, Lubna
IZU, Haruna
MATOBA, Shogo
TOGAYACHI, Sumie
MIYOSHI, Hiroyuki
SANKAI, Tadashi
OGURA, Atsuo
HONDA, Arata
author_sort HONSHO, Kimiko
collection PubMed
description Quality evaluation of pluripotent stem cells using appropriate animal models needs to be improved for human regenerative medicine. Previously, we demonstrated that although the in vitro neural differentiating capacity of rabbit induced pluripotent stem cells (iPSCs) can be mitigated by improving their baseline level of pluripotency, i.e., by converting them into the so-called “naïve-like” state, the effect after such conversion of rabbit embryonic stem cells (ESCs) remains to be elucidated. Here we found that naïve-like conversion enhanced the differences in innate in vitro differentiation capacity between ESCs and iPSCs. Naïve-like rabbit ESCs exhibited several features indicating pluripotency, including the capacity for teratoma formation. They differentiated into mature oligodendrocytes much more effectively (3.3–7.2 times) than naïve-like iPSCs. This suggests an inherent variation in differentiation potential in vitro among PSC lines. When naïve-like ESCs were injected into preimplantation rabbit embryos, although they contributed efficiently to forming the inner cell mass of blastocysts, no chimeric pups were obtained. Thus, in vitro neural differentiation following naïve-like conversion is a promising option for determining the quality of PSCs without the need to demonstrate chimeric contribution. These results provide an opportunity to evaluate which pluripotent stem cells or treatments are best suited for therapeutic use.
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spelling pubmed-43542262015-03-13 Naïve-like conversion enhances the difference in innate in vitro differentiation capacity between rabbit ES cells and iPS cells HONSHO, Kimiko HIROSE, Michiko HATORI, Masanori YASMIN, Lubna IZU, Haruna MATOBA, Shogo TOGAYACHI, Sumie MIYOSHI, Hiroyuki SANKAI, Tadashi OGURA, Atsuo HONDA, Arata J Reprod Dev Original Article Quality evaluation of pluripotent stem cells using appropriate animal models needs to be improved for human regenerative medicine. Previously, we demonstrated that although the in vitro neural differentiating capacity of rabbit induced pluripotent stem cells (iPSCs) can be mitigated by improving their baseline level of pluripotency, i.e., by converting them into the so-called “naïve-like” state, the effect after such conversion of rabbit embryonic stem cells (ESCs) remains to be elucidated. Here we found that naïve-like conversion enhanced the differences in innate in vitro differentiation capacity between ESCs and iPSCs. Naïve-like rabbit ESCs exhibited several features indicating pluripotency, including the capacity for teratoma formation. They differentiated into mature oligodendrocytes much more effectively (3.3–7.2 times) than naïve-like iPSCs. This suggests an inherent variation in differentiation potential in vitro among PSC lines. When naïve-like ESCs were injected into preimplantation rabbit embryos, although they contributed efficiently to forming the inner cell mass of blastocysts, no chimeric pups were obtained. Thus, in vitro neural differentiation following naïve-like conversion is a promising option for determining the quality of PSCs without the need to demonstrate chimeric contribution. These results provide an opportunity to evaluate which pluripotent stem cells or treatments are best suited for therapeutic use. The Society for Reproduction and Development 2014-10-25 2015-02 /pmc/articles/PMC4354226/ /pubmed/25345855 http://dx.doi.org/10.1262/jrd.2014-098 Text en ©2015 Society for Reproduction and Development http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial No Derivatives (by-nc-nd) License.
spellingShingle Original Article
HONSHO, Kimiko
HIROSE, Michiko
HATORI, Masanori
YASMIN, Lubna
IZU, Haruna
MATOBA, Shogo
TOGAYACHI, Sumie
MIYOSHI, Hiroyuki
SANKAI, Tadashi
OGURA, Atsuo
HONDA, Arata
Naïve-like conversion enhances the difference in innate in vitro differentiation capacity between rabbit ES cells and iPS cells
title Naïve-like conversion enhances the difference in innate in vitro differentiation capacity between rabbit ES cells and iPS cells
title_full Naïve-like conversion enhances the difference in innate in vitro differentiation capacity between rabbit ES cells and iPS cells
title_fullStr Naïve-like conversion enhances the difference in innate in vitro differentiation capacity between rabbit ES cells and iPS cells
title_full_unstemmed Naïve-like conversion enhances the difference in innate in vitro differentiation capacity between rabbit ES cells and iPS cells
title_short Naïve-like conversion enhances the difference in innate in vitro differentiation capacity between rabbit ES cells and iPS cells
title_sort naïve-like conversion enhances the difference in innate in vitro differentiation capacity between rabbit es cells and ips cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4354226/
https://www.ncbi.nlm.nih.gov/pubmed/25345855
http://dx.doi.org/10.1262/jrd.2014-098
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