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Enhancing CHO cell productivity through a dual selection system using Aspg and Gs in glutamine free medium

  • Tae Kwang Ha
  • , Andreu Òdena
  • , Karen Julie la Cour Karottki
  • , Che Lin Kim
  • , Hooman Hefzi
  • , Gyun Min Lee
  • , Helene Faustrup Kildegaard
  • , Lars K. Nielsen
  • , Lise Marie Grav
  • , Nathan E. Lewis*
  • *Corresponding author for this work
  • Technical University of Denmark
  • University of California at San Diego
  • Korea Advanced Institute of Science and Technology

Research output: Contribution to journalJournal articleResearchpeer-review

Abstract

The dominant method for generating Chinese hamster ovary (CHO) cell lines that produce high titers of biotherapeutic proteins utilizes selectable markers such as dihydrofolate reductase (Dhfr) or glutamine synthetase (Gs), alongside inhibitory compounds like methotrexate or methionine sulfoximine, respectively. Recent work has shown the importance of asparaginase (Aspg) for growth in media lacking glutamine—the selection medium for Gs-based selection systems. We generated a Gs/Aspg double knockout CHO cell line and evaluated its utility as a novel dual selectable system via co-transfection of Gs-Enbrel and Aspg-Enbrel plasmids. Using the same selection conditions as the standard Gs system, the resulting cells from the Gs/Aspg dual selection showed substantially improved specific productivity and titer compared to the standard Gs selection method, however, with reduced growth rate and viability. Following adaptation in the selection medium, the cells improved viability and growth while still achieving ~5-fold higher specific productivity and ~3-fold higher titer than Gs selection alone. We anticipate that with further optimization of culture medium and selection conditions, this approach would serve as an effective addition to workflows for the industrial production of recombinant biotherapeutics.
Original languageEnglish
JournalBiotechnology and Bioengineering
Volume120
Issue number4
Pages (from-to)1159-1166
Number of pages7
ISSN0006-3592
DOIs
Publication statusPublished - 2023

Keywords

  • Asparaginase
  • Biotherapeutic production
  • Chinese hamster ovary cells
  • Glutamine synthease
  • Mammalian cell line
  • Selection system

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