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IMAC capture of recombinant protein from unclarified mammalian cell feed streams
Authors:Alexander Kinna  Berend Tolner  Enrique Miranda Rota  Nigel Titchener‐Hooker  Darren Nesbeth  Kerry Chester
Institution:1. Department of Oncology, University College London, UCL Cancer Institute, 72 Huntley Street, London, UK;2. Department of Biochemical Engineering, University College London, Gower Street, London, UK;3. +44 (0) 2076790700+44 (0) 2076796817
Abstract:Fusion‐tag affinity chromatography is a key technique in recombinant protein purification. Current methods for protein recovery from mammalian cells are hampered by the need for feed stream clarification. We have developed a method for direct capture using immobilized metal affinity chromatography (IMAC) of hexahistidine (His6) tagged proteins from unclarified mammalian cell feed streams. The process employs radial flow chromatography with 300–500 μm diameter agarose resin beads that allow free passage of cells but capture His‐tagged proteins from the feed stream; circumventing expensive and cumbersome centrifugation and/or filtration steps. The method is exemplified by Chinese Hamster Ovary (CHO) cell expression and subsequent recovery of recombinant His‐tagged carcinoembryonic antigen (CEA); a heavily glycosylated and clinically relevant protein. Despite operating at a high NaCl concentration necessary for IMAC binding, cells remained over 96% viable after passage through the column with host cell proteases and DNA detected at ~8 U/mL and 2 ng/μL in column flow‐through, respectively. Recovery of His‐tagged CEA from unclarified feed yielded 71% product recovery. This work provides a basis for direct primary capture of fully glycosylated recombinant proteins from unclarified mammalian cell feed streams. Biotechnol. Bioeng. 2016;113: 130–140. © 2015 Wiley Periodicals, Inc.
Keywords:radial flow chromatography  downstream processing  IMAC  recombinant protein  integrated processing  Chinese hamster ovary cells
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