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Process development of human multipotent stromal cell microcarrier culture using an automated high-throughput microbioreactor.
Rafiq, Qasim A; Hanga, Mariana P; Heathman, Thomas R J; Coopman, Karen; Nienow, Alvin W; Williams, David J; Hewitt, Christopher J.
Afiliação
  • Rafiq QA; Department of Biochemical Engineering, Advanced Centre for Biochemical Engineering, University College London, Gower Street, London, United Kingdom.
  • Hanga MP; Aston Medical Research Institute, School of Life and Health Sciences, Aston University, Aston Triangle, Birmingham B4 7ET, United Kingdom.
  • Heathman TRJ; Centre for Biological Engineering, Loughborough University, Leicestershire LE11 3TU, United Kingdom.
  • Coopman K; Aston Medical Research Institute, School of Life and Health Sciences, Aston University, Aston Triangle, Birmingham B4 7ET, United Kingdom.
  • Nienow AW; Centre for Biological Engineering, Loughborough University, Leicestershire LE11 3TU, United Kingdom.
  • Williams DJ; Centre for Biological Engineering, Loughborough University, Leicestershire LE11 3TU, United Kingdom.
  • Hewitt CJ; PCT, A Hitachi Group Company, Allendale, New Jersey.
Biotechnol Bioeng ; 114(10): 2253-2266, 2017 10.
Article em En | MEDLINE | ID: mdl-28627713
ABSTRACT
Microbioreactors play a critical role in process development as they reduce reagent requirements and can facilitate high-throughput screening of process parameters and culture conditions. Here, we have demonstrated and explained in detail, for the first time, the amenability of the automated ambr15 cell culture microbioreactor system for the development of scalable adherent human mesenchymal multipotent stromal/stem cell (hMSC) microcarrier culture processes. This was achieved by first improving suspension and mixing of the microcarriers and then improving cell attachment thereby reducing the initial growth lag phase. The latter was achieved by using only 50% of the final working volume of medium for the first 24 h and using an intermittent agitation strategy. These changes resulted in >150% increase in viable cell density after 24 h compared to the original process (no agitation for 24 h and 100% working volume). Using the same methodology as in the ambr15, similar improvements were obtained with larger scale spinner flask studies. Finally, this improved bioprocess methodology based on a serum-based medium was applied to a serum-free process in the ambr15, resulting in >250% increase in yield compared to the serum-based process. At both scales, the agitation used during culture was the minimum required for microcarrier suspension, NJS . The use of the ambr15, with its improved control compared to the spinner flask, reduced the coefficient of variation on viable cell density in the serum containing medium from 7.65% to 4.08%, and the switch to serum free further reduced these to 1.06-0.54%, respectively. The combination of both serum-free and automated processing improved the reproducibility more than 10-fold compared to the serum-based, manual spinner flask process. The findings of this study demonstrate that the ambr15 microbioreactor is an effective tool for bioprocess development of hMSC microcarrier cultures and that a combination of serum-free medium, control, and automation improves both process yield and consistency. Biotechnol. Bioeng. 2017;114 2253-2266. © 2017 Wiley Periodicals, Inc.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Técnicas de Cultura de Células / Reatores Biológicos / Microfluídica / Células-Tronco Mesenquimais / Técnicas de Cultura Celular por Lotes Limite: Humans Idioma: En Revista: Biotechnol Bioeng Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Reino Unido

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Técnicas de Cultura de Células / Reatores Biológicos / Microfluídica / Células-Tronco Mesenquimais / Técnicas de Cultura Celular por Lotes Limite: Humans Idioma: En Revista: Biotechnol Bioeng Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Reino Unido