Please use this identifier to cite or link to this item: https://doi.org/10.21256/zhaw-30137
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dc.contributor.authorTeale, Misha Alexander-
dc.contributor.authorSchneider, Samuel Lukas-
dc.contributor.authorEibl, Dieter-
dc.contributor.authorEibl-Schindler, Regine-
dc.date.accessioned2024-03-09T09:57:54Z-
dc.date.available2024-03-09T09:57:54Z-
dc.date.issued2024-02-20-
dc.identifier.issn2227-9717de_CH
dc.identifier.urihttps://digitalcollection.zhaw.ch/handle/11475/30137-
dc.description.abstractGiven the demands human induced pluripotent stem cell (hiPSC)-based therapeutics place on manufacturing, process intensification strategies which rapidly ensure the desired cell quality and quantity should be considered. Within the context of antibody and vaccine manufacturing, one-step inoculation has emerged as an effective strategy for intensifying the upstream process. This study therefore evaluated whether this approach could be applied to the expansion of hiPSCs in flasks under static and in microcarrier-operated stirred bioreactors under dynamic conditions. Our findings demonstrated that high density working cell banks containing hiPSCs at concentrations of up to 100 × 106 cells mL−1 in CryoStor® CS10 did not impair cell growth and quality upon thawing. Furthermore, while cell distribution, growth, and viability were comparable to routinely passaged hiPSCs, those subjected to one-step inoculation and expansion on microcarriers under stirred conditions were characterized by improved attachment efficiency (≈50%) following the first day of cultivation. Accordingly, the process development outlined in this study establishes the foundation for the implementation of this intensified approach at L-scale.de_CH
dc.language.isoende_CH
dc.publisherMDPIde_CH
dc.relation.ispartofProcessesde_CH
dc.rightshttps://creativecommons.org/licenses/by/4.0/de_CH
dc.subjectMicrocarriersde_CH
dc.subjectPerfusionde_CH
dc.subjectSingle-usede_CH
dc.subjectStirred bioreactorde_CH
dc.subjectUpstream processingde_CH
dc.subject.ddc660.6: Biotechnologiede_CH
dc.titleProcess intensification in human pluripotent stem cell expansion with microcarriersde_CH
dc.typeBeitrag in wissenschaftlicher Zeitschriftde_CH
dcterms.typeTextde_CH
zhaw.departementLife Sciences und Facility Managementde_CH
zhaw.organisationalunitInstitut für Chemie und Biotechnologie (ICBT)de_CH
dc.identifier.doi10.3390/pr12030426de_CH
dc.identifier.doi10.21256/zhaw-30137-
zhaw.funding.euNode_CH
zhaw.issue3de_CH
zhaw.originated.zhawYesde_CH
zhaw.pages.start426de_CH
zhaw.publication.statuspublishedVersionde_CH
zhaw.volume12de_CH
zhaw.publication.reviewPeer review (Publikation)de_CH
zhaw.author.additionalNode_CH
zhaw.display.portraitYesde_CH
Appears in collections:Publikationen Life Sciences und Facility Management

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Teale, M. A., Schneider, S. L., Eibl, D., & Eibl-Schindler, R. (2024). Process intensification in human pluripotent stem cell expansion with microcarriers. Processes, 12(3), 426. https://doi.org/10.3390/pr12030426
Teale, M.A. et al. (2024) ‘Process intensification in human pluripotent stem cell expansion with microcarriers’, Processes, 12(3), p. 426. Available at: https://doi.org/10.3390/pr12030426.
M. A. Teale, S. L. Schneider, D. Eibl, and R. Eibl-Schindler, “Process intensification in human pluripotent stem cell expansion with microcarriers,” Processes, vol. 12, no. 3, p. 426, Feb. 2024, doi: 10.3390/pr12030426.
TEALE, Misha Alexander, Samuel Lukas SCHNEIDER, Dieter EIBL und Regine EIBL-SCHINDLER, 2024. Process intensification in human pluripotent stem cell expansion with microcarriers. Processes. 20 Februar 2024. Bd. 12, Nr. 3, S. 426. DOI 10.3390/pr12030426
Teale, Misha Alexander, Samuel Lukas Schneider, Dieter Eibl, and Regine Eibl-Schindler. 2024. “Process Intensification in Human Pluripotent Stem Cell Expansion with Microcarriers.” Processes 12 (3): 426. https://doi.org/10.3390/pr12030426.
Teale, Misha Alexander, et al. “Process Intensification in Human Pluripotent Stem Cell Expansion with Microcarriers.” Processes, vol. 12, no. 3, Feb. 2024, p. 426, https://doi.org/10.3390/pr12030426.


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