Engineering characteristics of a single‐use stirred bioreactor at bench‐scale: The Mobius CellReady 3L bioreactor as a case study

作者: Stephan C. Kaiser , Regine Eibl , Dieter Eibl

DOI: 10.1002/ELSC.201000171

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摘要: Stirred single-use bioreactors can be used as substitutes for their conventional counterparts made of glass or stainless steel in the development and production biopharmaceuticals wherever possible. Various studies have confirmed comparability cell growth well product quantity quality. However, information about engineering characteristics is still rare. This study focuses on stirred Mobius® CellReady 3L bioreactor. The main parameters typical operation conditions animal cultivations are presented first time. Numerical simulations with a commercial CFD package (Fluent 6.3) were accomplished to obtain data single- multi-phase fluid flow, power input, mixing time oxygen mass transfer. results, which compared from experiments literature, reveal suitability bioreactor expansion protein cultures. Furthermore, enable comparisons other reusable culture at bench-scale.

参考文章(38)
Z. Jaworski, W. Bujalski, N. Otomo, A.W. Nienow, CFD Study of Homogenization with Dual Rushton Turbines—Comparison with Experimental Results Chemical Engineering Research and Design. ,vol. 78, pp. 327- 333 ,(2000) , 10.1205/026387600527437
René Brecht, Disposable bioreactors: maturation into pharmaceutical glycoprotein manufacturing. Advances in Biochemical Engineering \/ Biotechnology. ,vol. 115, pp. 1- 31 ,(2009) , 10.1007/10_2008_33
R. Eibl, D. Eibl, Application of Disposable Bag Bioreactors in Tissue Engineering and for the Production of Therapeutic Agents Bioreactor Systems for Tissue Engineering. ,vol. 112, pp. 183- 207 ,(2009) , 10.1007/978-3-540-69357-4_8
Yusuf Chisti, Animal-cell damage in sparged bioreactors Trends in Biotechnology. ,vol. 18, pp. 420- 432 ,(2000) , 10.1016/S0167-7799(00)01474-8
S. Hiraoka, Y. Kato, Y. Tada, N. Ozaki, Y. Murakami, Y.S. Lee, Power Consumption and Mixing Time in an Agitated Vessel with Double Impeller Chemical Engineering Research & Design. ,vol. 79, pp. 805- 810 ,(2001) , 10.1205/02638760152721613
Klaas Van't Riet, Review of Measuring Methods and Results in Nonviscous Gas-Liquid Mass Transfer in Stirred Vessels Industrial & Engineering Chemistry Process Design and Development. ,vol. 18, pp. 357- 364 ,(1979) , 10.1021/I260071A001
F. Kerdouss, A. Bannari, P. Proulx, R. Bannari, M. Skrga, Y. Labrecque, Two-phase mass transfer coefficient prediction in stirred vessel with a CFD model Computers & Chemical Engineering. ,vol. 32, pp. 1943- 1955 ,(2008) , 10.1016/J.COMPCHEMENG.2007.10.010
D. Nehring, P. Czermak, J. Vorlop, H. Lubben, Experimental study of a ceramic microsparging aeration system in a pilot-scale animal cell culture. Biotechnology Progress. ,vol. 20, pp. 1710- 1717 ,(2004) , 10.1021/BP049762E
Marko Laakkonen, Ville Alopaeus, Juhani Aittamaa, Validation of bubble breakage, coalescence and mass transfer models for gas–liquid dispersion in agitated vessel Chemical Engineering Science. ,vol. 61, pp. 218- 228 ,(2006) , 10.1016/J.CES.2004.11.066
C. Langheinrich, A.W. Nienow, T. Eddleston, N.C. Stevenson, A.N. Emery, T.M. Clayton, N.K.H. Slater, Oxygen Transfer in Stirred Bioreactors Under Animal Cell Culture Conditions Food and Bioproducts Processing. ,vol. 80, pp. 39- 44 ,(2002) , 10.1205/096030802753479098