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RESEARCH ARTICLE   Open Access    

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

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    Hiroyuki Kenmoku, Akira Kaneko, Takanobu Saito, Takahiro Nemoto, Yoshikazu Kato, Shunsuke Ohira. 2025. Scale‐Up Strategy Focused on Hydrodynamic Stress for Mammalian Cell Culture Established by a Dry‐Wet Approach. Engineering in Life Sciences. 25:54 doi: 10.1002/elsc.70054
    Hiroyuki Kenmoku, Akira Kaneko, Takanobu Saito, Takahiro Nemoto, Yoshikazu Kato, Shunsuke Ohira. 2025. Scale‐Up Strategy Focused on Hydrodynamic Stress for Mammalian Cell Culture Established by a Dry‐Wet Approach. Engineering in Life Sciences. 25:54 doi: 10.1002/elsc.70054

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Research Article   Open Access    

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

Engineering in Life Sciences  25(11) Article number: 10.1002/elsc.70054  (2025)  |  Cite this article
    • Copyright: © 2025 by the author(s). Exclusive Licensee Maximum Academic Press, Fayetteville, GA. This article is an open access article distributed under Creative Commons Attribution License (CC BY 4.0), visit https://creativecommons.org/licenses/by/4.0/.
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    Cite this article
    Hiroyuki Kenmoku, Akira Kaneko, Takanobu Saito, Takahiro Nemoto, Yoshikazu Kato, Shunsuke Ohira. 2025. Scale‐Up Strategy Focused on Hydrodynamic Stress for Mammalian Cell Culture Established by a Dry‐Wet Approach. Engineering in Life Sciences. 25:54 doi: 10.1002/elsc.70054
    Hiroyuki Kenmoku, Akira Kaneko, Takanobu Saito, Takahiro Nemoto, Yoshikazu Kato, Shunsuke Ohira. 2025. Scale‐Up Strategy Focused on Hydrodynamic Stress for Mammalian Cell Culture Established by a Dry‐Wet Approach. Engineering in Life Sciences. 25:54 doi: 10.1002/elsc.70054
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