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In this expert handbook both the topics and contributors are selected so as to provide an authoritative view of possible applications for this new technology. The result is an up-to-date survey of current challenges and opportunities in the design and operation of bioreactors for high-value products in the biomedical and chemical industries. Combining theory and practice, the authors explain such leading-edge technologies as single-use bioreactors, bioreactor simulators, and soft sensor monitoring, and discuss novel applications, such as stem cell production, process development, and…mehr
In this expert handbook both the topics and contributors are selected so as to provide an authoritative view of possible applications for this new technology. The result is an up-to-date survey of current challenges and opportunities in the design and operation of bioreactors for high-value products in the biomedical and chemical industries. Combining theory and practice, the authors explain such leading-edge technologies as single-use bioreactors, bioreactor simulators, and soft sensor monitoring, and discuss novel applications, such as stem cell production, process development, and multi-product reactors, using case studies from academia as well as from industry. A final section addresses the latest trends, including culture media design and systems biotechnology, which are expected to have an increasing impact on bioreactor design. With its focus on cutting-edge technologies and discussions of future developments, this handbook will remain an invaluable reference for many years to come.
Carl-Fredrik Mandenius is professor of Engineering Biology at Linköping University (Sweden) since 1999 and head of the Division of Biotechnology. He holds a master and PhD degree in Engineering from Lund University. His main research interests are bioprocess engineering, biosensor technology and biotechnology design.
Inhaltsangabe
New bioreactor design challenges: An Overview Bioreactors for expansion of induced pluripotent stem cells and their differentiation to cardiac cells Scale up of stem cell manufacture for cell therapy needs Culturing entrapped hESC in continuous stirred reactors Artificial liver bioreactor design Design of microbioreactor system for process development, Multivariate modeling for bioreactor monitoring and control Rational integration of bioreactors with primary recovery Virtual operator training simulators for bioreactors Soft sensor monitoring and control of bioreactors Coping with physiological stress in recombinant protein production by bioreactor design The design bottlenecks with single use bioreactors The Bioreactor-on a-Chip Multibioreactors and Design-of-Experiments Culture media design Systems biotechnology
New bioreactor design challenges: An Overview Bioreactors for expansion of induced pluripotent stem cells and their differentiation to cardiac cells Scale up of stem cell manufacture for cell therapy needs Culturing entrapped hESC in continuous stirred reactors Artificial liver bioreactor design Design of microbioreactor system for process development, Multivariate modeling for bioreactor monitoring and control Rational integration of bioreactors with primary recovery Virtual operator training simulators for bioreactors Soft sensor monitoring and control of bioreactors Coping with physiological stress in recombinant protein production by bioreactor design The design bottlenecks with single use bioreactors The Bioreactor-on a-Chip Multibioreactors and Design-of-Experiments Culture media design Systems biotechnology
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