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Cultivation of Mammalian Cells Using a Single-use Pneumatic Bioreactor System
Authors:Kristina M Obom  Patrick J Cummings  Janelle A Ciafardoni  Yasunori Hashimura  Daniel Giroux
Institution:1Center for Biotechnology Education, Johns Hopkins University;2PBS Biotech, Inc.
Abstract:Recent advances in mammalian, insect, and stem cell cultivation and scale-up have created tremendous opportunities for new therapeutics and personalized medicine innovations. However, translating these advances into therapeutic applications will require in vitro systems that allow for robust, flexible, and cost effective bioreactor systems. There are several bioreactor systems currently utilized in research and commercial settings; however, many of these systems are not optimal for establishing, expanding, and monitoring the growth of different cell types. The culture parameters most challenging to control in these systems include, minimizing hydrodynamic shear, preventing nutrient gradient formation, establishing uniform culture medium aeration, preventing microbial contamination, and monitoring and adjusting culture conditions in real-time. Using a pneumatic single-use bioreactor system, we demonstrate the assembly and operation of this novel bioreactor for mammalian cells grown on micro-carriers. This bioreactor system eliminates many of the challenges associated with currently available systems by minimizing hydrodynamic shear and nutrient gradient formation, and allowing for uniform culture medium aeration. Moreover, the bioreactor’s software allows for remote real-time monitoring and adjusting of the bioreactor run parameters. This bioreactor system also has tremendous potential for scale-up of adherent and suspension mammalian cells for production of a variety therapeutic proteins, monoclonal antibodies, stem cells, biosimilars, and vaccines.
Keywords:Bioengineering  Issue 92  single-use bioreactor  cell culture  mammalian cell culture  pneumatic wheel  upstream bioprocessing  Air-Wheel bioreactor
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