The components of shear stress affecting insect cells used with the baculovirus expression vector system

Author:

Weidner Tobias12,Druzinec Damir1,Mühlmann Martina2,Buchholz Rainer2,Czermak Peter134

Affiliation:

1. Institute of Bioprocess Engineering and Pharmaceutical Technology , University of Applied Sciences Mittelhessen , Giessen , Germany

2. Institute of Bioprocess Engineering , Friedrich-Alexander University of Erlangen-Nuremberg , Erlangen , Germany

3. Department of Chemical Engineering , Kansas State University , Manhattan, KS , USA

4. Fraunhofer Institute for Molecular Biology and Applied Ecology, Project Group Bioresources , Giessen , Germany

Abstract

Abstract Insect-based expression platforms such as the baculovirus expression vector system (BEVS) are widely used for the laboratory- and industrial-scale production of recombinant proteins. Thereby, major drawbacks to gain high-quality proteins are the lytic infection cycle and the shear sensitivity of infected insect cells due to turbulence and aeration. Smaller bubbles were formerly assumed to be more harmful than larger ones, but we found that cell damage is also dependent on the concentration of protective agents such as Pluronic®. At the appropriate concentration, Pluronic forms a layer around air bubbles and hinders the attachment of cells, thus limiting the damage. In this context, we used microaeration to vary bubble sizes and confirmed that size is not the most important factor, but the total gas surface area in the reactor is. If the surface area exceeds a certain threshold, the concentration of Pluronic is no longer sufficient for cell protection. To investigate the significance of shear forces, a second study was carried out in which infected insect cells were cultivated in a hollow fiber module to protect them from shear forces. Both model studies revealed important aspects of the design and scale-up of BEVS processes for the production of recombinant proteins.

Publisher

Walter de Gruyter GmbH

Subject

General Biochemistry, Genetics and Molecular Biology

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