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Bioengineering Parameters for Single‐Use Bioreactors: Overview and Evaluation of Suitable Methods
Author(s) -
Löffelholz Christian,
Husemann Ute,
Greller Gerhard,
Meusel Wolfram,
Kauling Jörg,
Ay Peter,
Kraume Matthias,
Eibl Regine,
Eibl Dieter
Publication year - 2013
Publication title -
chemie ingenieur technik
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.365
H-Index - 36
eISSN - 1522-2640
pISSN - 0009-286X
DOI - 10.1002/cite.201200125
Subject(s) - bioreactor , biochemical engineering , process engineering , characterization (materials science) , biopharmaceutical , parametric statistics , computer science , process (computing) , scale up , scale (ratio) , commercialization , bioprocess , single use , process development , nanotechnology , engineering , materials science , microbiology and biotechnology , chemistry , mathematics , biology , chemical engineering , physics , statistics , organic chemistry , classical mechanics , quantum mechanics , law , political science , operating system
During the past five years, the number of single‐use bioreactors used in biopharmaceutical research and production has increased tremendously. This increase has been particularly associated with mammalian cell culture processes from small‐ to medium‐scale volumes. Even though nowadays customers can choose from a multitude of 2nd and 3rd generation single‐use bioreactors, ranging from mL‐ up to m 3 ‐scale, there is a lack of knowledge of their engineering parameters. Different approaches have been applied to characterization investigations, resulting in an inability to compare different single‐use bioreactors with each other and their reusable counterparts, creating an obstacle to a systematic approach to scaling‐up the process. This article describes parametric, experimental and computer‐based numeric methods for biochemical engineering characterization of single‐use bioreactors, which have already been used successfully for the characterization of their reusable counterparts. For the first time, these methods have been evaluated in terms of their practical application.