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As with all of pharmaceutical production, the regulatory
environment for the production of therapeutics has been changing as
a direct result of the US FDA-initiated Quality by Design (QbD)
guidelines and corresponding activities of the International
Committee for Harmonization (ICH). Given the rapid growth in the
biopharmaceutical area and the complexity of the molecules, the
optimum use of which are still being developed, there is a great
need for flexible and proactive teams in order to satisfy the
regulatory requirements during process development. Process
Analytical Technologies (PAT) applied in biopharmaceutical process
development and manufacturing have received significant attention
in recent years as an enabler to the QbD paradigm. PAT Applied in
Biopharmaceutical Process Development and Manufacturing covers
technological advances in measurement sciences, data acquisition,
monitoring, and control. Technical leaders present real-life case
studies in areas including measuring and monitoring raw materials,
cell culture, purification, and cleaning and lyophilization
processes via advanced PAT. They also explore how data are
collected and analyzed using advanced analytical techniques such as
multivariate data analysis, monitoring, and control in real-time.
Invaluable for experienced practitioners in PAT in
biopharmaceuticals, this book is an excellent reference guide for
regulatory officials and a vital training aid for students who need
to learn the state of the art in this interdisciplinary and
exciting area.
Illustrating techniques in model development, signal processing,
data reconciliation, process monitoring, quality assurance,
intelligent real-time process supervision, and fault detection and
diagnosis, Batch Fermentation offers valuable simulation and
control strategies for batch fermentation applications in the food,
pharmaceutical, and chemical industries. The book provides
approaches for determining optimal reference trajectories and
operating conditions; estimating final product quality; modifying,
adjusting, and enhancing batch process operations; and designing
integrated real-time intelligent knowledge-based systems for
process monitoring and fault diagnosis.
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