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PMID: 41282967 Published · epublish English Journal Article

Scale-Up Strategy Focused on Hydrodynamic Stress for Mammalian Cell Culture Established by a Dry-Wet Approach.

Engineering in life sciences ·Vol. 25 ·No. 11 ·2025-11-00 ·页码 e70054

Kenmoku H, Kaneko A, Saito T, Nemoto T, Kato Y, Ohira S

Abstract

Today, most recombinant protein drugs are produced by mammalian cells in a stirred-type bioreactor (BR). Although cell culture scale-up strategies have been extensively investigated, scale-up and switching BRs while maintaining comparable culture performance remains a challenging step. This is because the empirical correlations used to determine operating parameters are applicable only for limited situations using similar BRs across scales. In addition, a few small scale-down models (SSDMs) are able to evaluate cellular sensitivity to the shear environment of manufacturing-scale BRs. In this study, we focused on the hydrodynamic stress associated with agitation and developed an SSDM that generates high shear stress without undesirable secondary effects such as vortex formation and severe gas hold-up. In-house BRs with various scales and configurations were used for fed-batch culture of CHO-K1 cells, and their shear environment was characterized by computational fluid dynamics (CFD). Using the dry-wet approach, we found that average shear stress was well correlated with titer decrease as an indicator of culture performance. We also confirmed that the response to shear stress differs among cell lines, and that evaluation of the shear sensitivity of cells is accordingly a risk mitigation step that is required to ensure successful scale-up.

Keywords
CFD CHO cell bioreactor scale up
作者与单位
共 6 位作者,点击展开单位 / ORCID
Kenmoku Hiroyuki
Upstream Bioprocess Science, Chemical and Biological Technology Laboratory, CMC Development, Astellas Pharma. Inc Ibaraki Japan.
Kaneko Akira
Research & Development Section, Mixing Laboratory, SATAKE MultiMix Corporation Toda-shi Saitama Japan.
Saito Takanobu
Upstream Bioprocess Science, Chemical and Biological Technology Laboratory, CMC Development, Astellas Pharma. Inc Ibaraki Japan.
Nemoto Takahiro
Research & Development Section, Mixing Laboratory, SATAKE MultiMix Corporation Toda-shi Saitama Japan.
Kato Yoshikazu
Research & Development Section, Mixing Laboratory, SATAKE MultiMix Corporation Toda-shi Saitama Japan.
Ohira Shunsuke
Upstream Bioprocess Science, Chemical and Biological Technology Laboratory, CMC Development, Astellas Pharma. Inc Ibaraki Japan.
Article Info
Journal
Engineering in life sciences
Abbr.
Eng Life Sci
ISSN
1618-0240
Published
2025-11-00
电子出版
2025-00-21
页码
e70054
Language
English
Country/Region
Germany
NLM ID
101193313
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