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The biopharmaceutical industry has become an increasingly important
player in the global economy, and the success of these products
depends on the development and implementation of cost-effective,
robust and scaleable production processes. Bioseparations-also
called downstream processing- can be a key source of competitive
advantageto biopharmaceutical developers. Process Scale
Bioseparations for the Biopharmaceutical Industry brings together
scientific principles, empirical approaches, and practical
considerations for designing industrial downstream bioprocesses for
various classes of biomolecules. Using clear language along with
numerous case studies, examples, tables, flow charts, and
schematics, the book presents perspectives from experienced
professionals involved in purification processes and industrial
downstream unit operations. The authors provide useful experimental
design strategies and guidelines for developing
application-specific process scale bioseparations. Chapter topics
include harvest by centrifugation and filtration, expanded bed
chromatography, protein refolding, modes of preparative
chromatography, methodologies for resin screening, membrane
chromatography, protein crystallization, viral filtration,
ultrafiltration/diafiltration, implementing post-approval
downstream process changes for an antibody product, and future
trends. Ideal for both new and experienced scientists in the
biopharmaceutical industry and students, Process Scale
Bioseparations for the Biopharmaceutical Industry is a
comprehensive resource for all topics relevant to industrial
process development.
The biopharmaceutical industry has become an increasingly important
player in the global economy, and the success of these products
depends on the development and implementation of cost-effective,
robust and scaleable production processes. Bioseparations-also
called downstream processing- can be a key source of competitive
advantageto biopharmaceutical developers. Process Scale
Bioseparations for the Biopharmaceutical Industry brings together
scientific principles, empirical approaches, and practical
considerations for designing industrial downstream bioprocesses for
various classes of biomolecules.
Using clear language along with numerous case studies, examples,
tables, flow charts, and schematics, the book presents perspectives
from experienced professionals involved in purification processes
and industrial downstream unit operations. The authors provide
useful experimental design strategies and guidelines for developing
application-specific process scale bioseparations. Chapter topics
include harvest by centrifugation and filtration, expanded bed
chromatography, protein refolding, modes of preparative
chromatography, methodologies for resin screening, membrane
chromatography, protein crystallization, viral filtration,
ultrafiltration/diafiltration, implementing post-approval
downstream process changes for an antibody product, and future
trends.
Ideal for both new and experienced scientists in the
biopharmaceutical industry and students, Process Scale
Bioseparations for the Biopharmaceutical Industry is a
comprehensive resource for all topics relevant to industrial
process development.
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