High cell density transient transfection of CHO cells for TGF-β1 expression.

Journal: Engineering in life sciences
Published Date:

Abstract

High cell densities for transient transfection with polyethyleneimine (PEI) can be used for rapid and maximal production of recombinant proteins. High cell densities can be obtained by different cultivation systems, such as batch or perfusion systems. Herein, densities up to 18 million cells/mL were obtained by centrifugation for transfection evaluation. PEI transfection efficiency was easily determined by transfected enhanced green fluorescence protein (EGFP) reporter plasmid DNA (pDNA). A linear correlation between fluorescence intensity and transfection efficiency was improved. The transfection efficiency of PEI was highly dependent on the transfection conditions and directly related to the level of recombinant protein. Several factors were required to optimize the transient transfection process; these factors included the media type (which is compatible with low or high cell density transfection), the preculture CHO-K1 suspension cell density, and the pDNA to PEI level. Based on design of experiment (DoE) analyses, the optimal transfection conditions for 10 × 10 cells/mL in the CHOMACS CD medium achieved 73% transfection efficiency and a cell viability of over 80%. These results were confirmed for the production of transforming growth factor-beta 1 (TGF-β1) in a shake flask. The purified TGF-β1 protein concentration from 60 mL supernatant was 27 µg/mL, and the protein was biologically active.

Authors

  • Abdalla A Elshereef
    Institute of Technical Chemistry Gottfried Wilhelm Leibniz University of Hannover Hannover Germany.
  • André Jochums
    Institute of Technical Chemistry Gottfried Wilhelm Leibniz University of Hannover Hannover Germany.
  • Antonina Lavrentieva
    Institute of Technical Chemistry Gottfried Wilhelm Leibniz University of Hannover Hannover Germany.
  • Lena Stuckenberg
    Institute of Technical Chemistry Gottfried Wilhelm Leibniz University of Hannover Hannover Germany.
  • Thomas Scheper
    Institute of Technical Chemistry Gottfried Wilhelm Leibniz University of Hannover Hannover Germany.
  • Dörte Solle
    Institute of Technical Chemistry Gottfried Wilhelm Leibniz University of Hannover Hannover Germany.

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