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A 3D Sphere Culture System Containing Functional Polymers for Large-Scale Human Pluripotent Stem Cell Production

Utilizing human pluripotent stem cells (hPSCs) in cell-based therapy and drug discovery requires large-scale cell production. However, scaling up conventional adherent cultures presents challenges of maintaining a uniform high quality at low cost. In this regard, suspension cultures are a viable alt...

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Autores principales: Otsuji, Tomomi G., Bin, Jiang, Yoshimura, Azumi, Tomura, Misayo, Tateyama, Daiki, Minami, Itsunari, Yoshikawa, Yoshihiro, Aiba, Kazuhiro, Heuser, John E., Nishino, Taito, Hasegawa, Kouichi, Nakatsuji, Norio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4050473/
https://www.ncbi.nlm.nih.gov/pubmed/24936458
http://dx.doi.org/10.1016/j.stemcr.2014.03.012
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author Otsuji, Tomomi G.
Bin, Jiang
Yoshimura, Azumi
Tomura, Misayo
Tateyama, Daiki
Minami, Itsunari
Yoshikawa, Yoshihiro
Aiba, Kazuhiro
Heuser, John E.
Nishino, Taito
Hasegawa, Kouichi
Nakatsuji, Norio
author_facet Otsuji, Tomomi G.
Bin, Jiang
Yoshimura, Azumi
Tomura, Misayo
Tateyama, Daiki
Minami, Itsunari
Yoshikawa, Yoshihiro
Aiba, Kazuhiro
Heuser, John E.
Nishino, Taito
Hasegawa, Kouichi
Nakatsuji, Norio
author_sort Otsuji, Tomomi G.
collection PubMed
description Utilizing human pluripotent stem cells (hPSCs) in cell-based therapy and drug discovery requires large-scale cell production. However, scaling up conventional adherent cultures presents challenges of maintaining a uniform high quality at low cost. In this regard, suspension cultures are a viable alternative, because they are scalable and do not require adhesion surfaces. 3D culture systems such as bioreactors can be exploited for large-scale production. However, the limitations of current suspension culture methods include spontaneous fusion between cell aggregates and suboptimal passaging methods by dissociation and reaggregation. 3D culture systems that dynamically stir carrier beads or cell aggregates should be refined to reduce shearing forces that damage hPSCs. Here, we report a simple 3D sphere culture system that incorporates mechanical passaging and functional polymers. This setup resolves major problems associated with suspension culture methods and dynamic stirring systems and may be optimal for applications involving large-scale hPSC production.
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spelling pubmed-40504732014-06-16 A 3D Sphere Culture System Containing Functional Polymers for Large-Scale Human Pluripotent Stem Cell Production Otsuji, Tomomi G. Bin, Jiang Yoshimura, Azumi Tomura, Misayo Tateyama, Daiki Minami, Itsunari Yoshikawa, Yoshihiro Aiba, Kazuhiro Heuser, John E. Nishino, Taito Hasegawa, Kouichi Nakatsuji, Norio Stem Cell Reports Resource Utilizing human pluripotent stem cells (hPSCs) in cell-based therapy and drug discovery requires large-scale cell production. However, scaling up conventional adherent cultures presents challenges of maintaining a uniform high quality at low cost. In this regard, suspension cultures are a viable alternative, because they are scalable and do not require adhesion surfaces. 3D culture systems such as bioreactors can be exploited for large-scale production. However, the limitations of current suspension culture methods include spontaneous fusion between cell aggregates and suboptimal passaging methods by dissociation and reaggregation. 3D culture systems that dynamically stir carrier beads or cell aggregates should be refined to reduce shearing forces that damage hPSCs. Here, we report a simple 3D sphere culture system that incorporates mechanical passaging and functional polymers. This setup resolves major problems associated with suspension culture methods and dynamic stirring systems and may be optimal for applications involving large-scale hPSC production. Elsevier 2014-04-24 /pmc/articles/PMC4050473/ /pubmed/24936458 http://dx.doi.org/10.1016/j.stemcr.2014.03.012 Text en © 2014 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).
spellingShingle Resource
Otsuji, Tomomi G.
Bin, Jiang
Yoshimura, Azumi
Tomura, Misayo
Tateyama, Daiki
Minami, Itsunari
Yoshikawa, Yoshihiro
Aiba, Kazuhiro
Heuser, John E.
Nishino, Taito
Hasegawa, Kouichi
Nakatsuji, Norio
A 3D Sphere Culture System Containing Functional Polymers for Large-Scale Human Pluripotent Stem Cell Production
title A 3D Sphere Culture System Containing Functional Polymers for Large-Scale Human Pluripotent Stem Cell Production
title_full A 3D Sphere Culture System Containing Functional Polymers for Large-Scale Human Pluripotent Stem Cell Production
title_fullStr A 3D Sphere Culture System Containing Functional Polymers for Large-Scale Human Pluripotent Stem Cell Production
title_full_unstemmed A 3D Sphere Culture System Containing Functional Polymers for Large-Scale Human Pluripotent Stem Cell Production
title_short A 3D Sphere Culture System Containing Functional Polymers for Large-Scale Human Pluripotent Stem Cell Production
title_sort 3d sphere culture system containing functional polymers for large-scale human pluripotent stem cell production
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4050473/
https://www.ncbi.nlm.nih.gov/pubmed/24936458
http://dx.doi.org/10.1016/j.stemcr.2014.03.012
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