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PMID: 35049731 Published · epublish English Journal Article

CFD-Based and Experimental Hydrodynamic Characterization of the Single-Use Bioreactor XcellerexTM XDR-10.

Bioengineering (Basel, Switzerland) ·Vol. 9 ·No. 1 ·2022-01-08

Kreitmayer D, Gopireddy SR, Matsuura T, Aki Y, Katayama Y, Nakano T, Eguchi T, Kakihara H, Nonaka K, Profitlich T, Urbanetz NA, Gutheil E

Abstract

Understanding the hydrodynamic conditions in bioreactors is of utmost importance for the selection of operating conditions during cell culture process development. In the present study, the two-phase flow in the lab-scale single-use bioreactor XcellerexTM XDR-10 is characterized for working volumes from 4.5 L to 10 L, impeller speeds from 40 rpm to 360 rpm, and sparging with two different microporous spargers at rates from 0.02 L min-1 to 0.5 L min-1. The numerical simulations are performed with the one-way coupled Euler-Lagrange and the Euler-Euler models. The results of the agitated liquid height, the mixing time, and the volumetric oxygen mass transfer coefficient are compared to experiments. For the unbaffled XDR-10, strong surface vortex formation is found for the maximum impeller speed. To support the selection of suitable impeller speeds for cell cultivation, the surface vortex formation, the average turbulence energy dissipation rate, the hydrodynamic stress, and the mixing time are analyzed and discussed. Surface vortex formation is observed for the maximum impeller speed. Mixing times are below 30 s across all conditions, and volumetric oxygen mass transfer coefficients of up to 22.1 h-1 are found. The XDR-10 provides hydrodynamic conditions which are well suited for the cultivation of animal cells, despite the unusual design of a single bottom-mounted impeller and an unbaffled cultivation bioreactor.

Keywords
Euler–Euler simulation XcellerexTM XDR-10 computational fluid dynamics mixing time one-way Euler–Lagrange simulation oxygen mass transfer coefficient single-use bioreactor surface vortex formation
作者与单位
共 12 位作者,点击展开单位 / ORCID
Kreitmayer Diana
Interdisciplinary Center for Scientific Computing, Heidelberg University, 69120 Heidelberg, Germany. | Pharmaceutical Development, Daiichi-Sankyo Europe GmbH, 85276 Pfaffenhofen, Germany.
Gopireddy Srikanth R
Pharmaceutical Development, Daiichi-Sankyo Europe GmbH, 85276 Pfaffenhofen, Germany.
Matsuura Tomomi
Biologics Technology Research Laboratories, Biologics Division, Daiichi-Sankyo Co., Ltd., Fukushima 971-8183, Japan.
Aki Yuichi
Biologics Technology Research Laboratories, Biologics Division, Daiichi-Sankyo Co., Ltd., Fukushima 971-8183, Japan.
Katayama Yuta
Biologics Technology Research Laboratories, Biologics Division, Daiichi-Sankyo Co., Ltd., Fukushima 971-8183, Japan.
Nakano Takuya
Biologics Technology Research Laboratories, Biologics Division, Daiichi-Sankyo Co., Ltd., Fukushima 971-8183, Japan.
Eguchi Takuma
Biologics Technology Research Laboratories, Biologics Division, Daiichi-Sankyo Co., Ltd., Fukushima 971-8183, Japan.
Kakihara Hirofumi
Biologics Technology Research Laboratories, Biologics Division, Daiichi-Sankyo Co., Ltd., Fukushima 971-8183, Japan.
Nonaka Koichi
Biologics Technology Research Laboratories, Biologics Division, Daiichi-Sankyo Co., Ltd., Fukushima 971-8183, Japan.
Profitlich Thomas
Pharmaceutical Development, Daiichi-Sankyo Europe GmbH, 85276 Pfaffenhofen, Germany.
Urbanetz Nora A
Pharmaceutical Development, Daiichi-Sankyo Europe GmbH, 85276 Pfaffenhofen, Germany.
Gutheil Eva
Interdisciplinary Center for Scientific Computing, Heidelberg University, 69120 Heidelberg, Germany.
Article Info
Journal
Bioengineering (Basel, Switzerland)
Abbr.
Bioengineering (Basel)
ISSN
2306-5354
Published
2022-01-08
电子出版
2022-00-08
Language
English
Country/Region
Switzerland
NLM ID
101676056
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