The mutational impact of culturing human pluripotent and adult stem cells

Genetic changes acquired during in vitro culture pose a challenge to application of stem cells. Here the authors use whole genome sequencing to show that cultured human adult and pluripotent stem cells have a high mutational load caused by oxidative stress and reduced oxygen tension in culture lower...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Ewart Kuijk, Myrthe Jager, Bastiaan van der Roest, Mauro D. Locati, Arne Van Hoeck, Jerome Korzelius, Roel Janssen, Nicolle Besselink, Sander Boymans, Ruben van Boxtel, Edwin Cuppen
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
Materias:
Q
Acceso en línea:https://doaj.org/article/1f6a475491464666a79c0e3f7512c41e
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:1f6a475491464666a79c0e3f7512c41e
record_format dspace
spelling oai:doaj.org-article:1f6a475491464666a79c0e3f7512c41e2021-12-02T16:49:45ZThe mutational impact of culturing human pluripotent and adult stem cells10.1038/s41467-020-16323-42041-1723https://doaj.org/article/1f6a475491464666a79c0e3f7512c41e2020-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16323-4https://doaj.org/toc/2041-1723Genetic changes acquired during in vitro culture pose a challenge to application of stem cells. Here the authors use whole genome sequencing to show that cultured human adult and pluripotent stem cells have a high mutational load caused by oxidative stress and reduced oxygen tension in culture lowers mutation rates.Ewart KuijkMyrthe JagerBastiaan van der RoestMauro D. LocatiArne Van HoeckJerome KorzeliusRoel JanssenNicolle BesselinkSander BoymansRuben van BoxtelEdwin CuppenNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ewart Kuijk
Myrthe Jager
Bastiaan van der Roest
Mauro D. Locati
Arne Van Hoeck
Jerome Korzelius
Roel Janssen
Nicolle Besselink
Sander Boymans
Ruben van Boxtel
Edwin Cuppen
The mutational impact of culturing human pluripotent and adult stem cells
description Genetic changes acquired during in vitro culture pose a challenge to application of stem cells. Here the authors use whole genome sequencing to show that cultured human adult and pluripotent stem cells have a high mutational load caused by oxidative stress and reduced oxygen tension in culture lowers mutation rates.
format article
author Ewart Kuijk
Myrthe Jager
Bastiaan van der Roest
Mauro D. Locati
Arne Van Hoeck
Jerome Korzelius
Roel Janssen
Nicolle Besselink
Sander Boymans
Ruben van Boxtel
Edwin Cuppen
author_facet Ewart Kuijk
Myrthe Jager
Bastiaan van der Roest
Mauro D. Locati
Arne Van Hoeck
Jerome Korzelius
Roel Janssen
Nicolle Besselink
Sander Boymans
Ruben van Boxtel
Edwin Cuppen
author_sort Ewart Kuijk
title The mutational impact of culturing human pluripotent and adult stem cells
title_short The mutational impact of culturing human pluripotent and adult stem cells
title_full The mutational impact of culturing human pluripotent and adult stem cells
title_fullStr The mutational impact of culturing human pluripotent and adult stem cells
title_full_unstemmed The mutational impact of culturing human pluripotent and adult stem cells
title_sort mutational impact of culturing human pluripotent and adult stem cells
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/1f6a475491464666a79c0e3f7512c41e
work_keys_str_mv AT ewartkuijk themutationalimpactofculturinghumanpluripotentandadultstemcells
AT myrthejager themutationalimpactofculturinghumanpluripotentandadultstemcells
AT bastiaanvanderroest themutationalimpactofculturinghumanpluripotentandadultstemcells
AT maurodlocati themutationalimpactofculturinghumanpluripotentandadultstemcells
AT arnevanhoeck themutationalimpactofculturinghumanpluripotentandadultstemcells
AT jeromekorzelius themutationalimpactofculturinghumanpluripotentandadultstemcells
AT roeljanssen themutationalimpactofculturinghumanpluripotentandadultstemcells
AT nicollebesselink themutationalimpactofculturinghumanpluripotentandadultstemcells
AT sanderboymans themutationalimpactofculturinghumanpluripotentandadultstemcells
AT rubenvanboxtel themutationalimpactofculturinghumanpluripotentandadultstemcells
AT edwincuppen themutationalimpactofculturinghumanpluripotentandadultstemcells
AT ewartkuijk mutationalimpactofculturinghumanpluripotentandadultstemcells
AT myrthejager mutationalimpactofculturinghumanpluripotentandadultstemcells
AT bastiaanvanderroest mutationalimpactofculturinghumanpluripotentandadultstemcells
AT maurodlocati mutationalimpactofculturinghumanpluripotentandadultstemcells
AT arnevanhoeck mutationalimpactofculturinghumanpluripotentandadultstemcells
AT jeromekorzelius mutationalimpactofculturinghumanpluripotentandadultstemcells
AT roeljanssen mutationalimpactofculturinghumanpluripotentandadultstemcells
AT nicollebesselink mutationalimpactofculturinghumanpluripotentandadultstemcells
AT sanderboymans mutationalimpactofculturinghumanpluripotentandadultstemcells
AT rubenvanboxtel mutationalimpactofculturinghumanpluripotentandadultstemcells
AT edwincuppen mutationalimpactofculturinghumanpluripotentandadultstemcells
_version_ 1718383201606434816