Lessons in Bioreactor Scale-Up: Emerging Technologies in Biomanufacturing
Autor Muhammad Arshad Chaudhryen Limba Engleză Hardback – 7 sep 2026
Key Features
- Bioreactor scale-up is a critical step in the production of biologics such as therapeutic proteins, monoclonal antibodies, and vaccines.
- This valuable process involves translating laboratory discoveries to large-scale industrial applications, while maintaining product quality and cost-effectiveness.
- Bioreactor scale-up in chemistry involves transitioning from miniaturized, high-throughput bioreactors to larger bench-scale and pilot- or production-scale bioreactors.
- A pivotal aspect of modern biotechnology allowing lab discoveries to be applied industrially
- Bioreactor scale-up sustainability involves improving fermentation production processes and bioreactor technology to reduce costs, create compelling products, and scale the industry.
- Geometric similarity in bioreactors is crucial for successful scaling.
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Specificații
ISBN-13: 9781041411253
ISBN-10: 1041411251
Pagini: 64
Ilustrații: 112
Dimensiuni: 156 x 234 mm
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Emerging Technologies in Biomanufacturing
ISBN-10: 1041411251
Pagini: 64
Ilustrații: 112
Dimensiuni: 156 x 234 mm
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Emerging Technologies in Biomanufacturing
Public țintă
Academic, Postgraduate, Professional Practice & Development, Professional Reference, and Professional TrainingCuprins
Chapter 1: Exploring Introductory Principles. Chapter 2: A Refresher on Fluid Flow and Mixing. Chapter 3: Experimental Determination and Application of Oxygen Mass-Transfer Rate, Mass-Transfer Coefficient, and Oxygen-Uptake Rate. Chapter 4: Physiochemical Factors Affecting Oxygen Transfer and the Volumetric Mass-Transfer Coefficient in Stirred Tanks. Chapter 5: Theoretical and Empirical Correlations for Predicting the Mass-Transfer Coefficient in Stirred-Tank Bioreactors. Chapter 6: Dissolved Carbon Dioxide and Its Impact on Cell-Culture Systems. Chapter 7: Insights into Dissolved Carbon Dioxide (dCO2) Accumulation in Cell-Culture Bioreactors. Chapter 8: Strategies To Control dCO2 Accumulation Using Aeration Flow Rate. Chapter 9: Use of Mathematical Models To Design dCO2 Stripping Strategies
Notă biografică
Muhammad “Arshad” Chaudhry is working as Director – Cell Line and Upstream Process Development at Disc Medicine for the last one year. Prior to that, he has worked in various roles in upstream processing covering a wide range of biologics (monoclonal antibody, fusion proteins, allogeneic cell therapy, lenti- and AAV -based viral vectors). He has been in the cell culture field for almost 20 years now and has worked mostly in the upstream process development supporting both early and late-stage projects covering CMC activities, GMP manufacturing of clinical grade material, QbD based scale-down model development and process characterization studies. He holds a Ph.D. in Biochemical engineering from University of British Columbia, Vancouver Canada having worked under Dr. James Piret’s guidance on embryonic stem cell bioengineering and fed-batch process development projects.
Descriere
Bioreactor scale-up in pharmaceutical science refers to the process of transferring optimal conditions obtained in small-scale bioreactors to large-scale bioreactors. This book covers translating laboratory discoveries to large-scale industrial applications, while maintaining product quality and cost-effectiveness.