|Title:||Dynamic single-use bioreactors used in modern liter- and m3-scale biotechnological processes : engineering characteristics and scaling up|
|Authors :||Löffelholz, Christian|
Kaiser, Stephan C.
|Published in :||Disposable Bioreactors II|
|Editors of the parent work:||Eibl, Dieter|
|Publisher / Ed. Institution :||Springer|
|Publisher / Ed. Institution:||Berlin|
|Series :||Advances in Biochemical Engineering/Biotechnology|
|Language :||Englisch / English|
|Subjects :||Computational fluid dynamics; Engineering characteristics; Main applications; Scale-up; Single-use bioreactor types|
|Subject (DDC) :||660: Technische Chemie|
|Abstract:||During the past 10 years, single-use bioreactors have been well accepted in modern biopharmaceutical production processes targeting high-value products. Up to now, such processes have mainly been small- or medium-scale mammalian cell culture-based seed inoculum, vaccine or antibody productions. However, recently first attempts have been made to modify existing single-use bioreactors for the cultivation of plant cells and tissue cultures, and microorganisms. This has even led to the development of new single-use bioreactor types. Moreover, due to safety issues it has become clear that single-use bioreactors are the “must have” for expanding human stem cells delivering cell therapeutics, the biopharmaceuticals of the next generation. So it comes as no surprise that numerous different dynamic single-use bioreactor types, which are suitable for a wide range of applications, already dominate the market today. Bioreactor working principles, main applications, and bioengineering data are presented in this review, based on a current overview of greater than milliliter-scale, commercially available, dynamic single-use bioreactors. The focus is on stirred versions, which are omnipresent in R&D and manufacturing, and in particular Sartorius Stedim’s BIOSTAT family. Finally, we examine development trends for single-use bioreactors, after discussing proven approaches for fast scaling-up processes.|
|Departement:||Life Sciences und Facility Management|
|Organisational Unit:||Institut für Chemie und Biotechnologie (ICBT)|
|Publication type:||Buchbeitrag / Book Part|
|Type of review:||Keine Angabe / Not specified|
|License (according to publishing contract) :||Lizenz gemäss Verlagsvertrag / Licence according to publishing contract|
|Appears in Collections:||Publikationen Life Sciences und Facility Management|
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