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  4. Use of Orbital Shaken Disposable Bioreactors for Mammalian Cell Cultures from the Milliliter-Scale to the 1,000-Liter Scale
 
research article

Use of Orbital Shaken Disposable Bioreactors for Mammalian Cell Cultures from the Milliliter-Scale to the 1,000-Liter Scale

Zhang, X
•
Stettler, M  
•
Sanctis, DD
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2009
Advances in Biochemical Engineering / Biotechnology

Driven by the commercial success of recombinant biopharmaceuticals, there is an increasing demand for novel mammalian cell culture bioreactor systems for the rapid production of biologicals that require mammalian protein processing. Recently, orbitally shaken bioreactors at scales from 50 mL to 1,000 L have been explored for the cultivation of mammalian cells and are considered to be attractive alternatives to conventional stirred-tank bioreactors because of increased flexibility and reduced costs. Adequate oxygen transfer capacity was maintained during the scale-up, and strategies to increase further oxygen transfer rates (OTR) were explored, while maintaining favorable mixing parameters and low-stress conditions for sensitive lipid membrane-enclosed cells. Investigations from process development to the engineering properties of shaken bioreactors are underway, but the feasibility of establishing a robust, standardized, and transferable technical platform for mammalian cell culture based on orbital shaking and disposable materials has been established with further optimizations and studies ongoing.

  • Details
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Type
research article
DOI
10.1007/10_2008_18
Web of Science ID

WOS:000272973900002

Author(s)
Zhang, X
Stettler, M  
Sanctis, DD
Perrone, M
Parolini, N
Discacciati, M
Jesus, MD
Hacker, D  
Quarteroni, A
Wurm, F  
Date Issued

2009

Published in
Advances in Biochemical Engineering / Biotechnology
Volume

115

Start page

33

End page

53

Subjects

Disposable bioreactor

•

Mammalian cell culture

•

Orbital shaking

•

Oxygen transfer rate

•

Scale-up

•

Shaken bioreactor

•

Liquid Mass-Transfer

•

Transient Gene-Expression

•

Integrated Oxygen Sensors

•

Microtiter Plates

•

Shaking Bioreactors

•

Flasks

•

Suspension

•

Cultivation

•

Protein

•

Growth

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LBTC  
Available on Infoscience
July 15, 2009
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/41352
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