Construction of a novel kinetic model for the production process of a CVA6 VLP vaccine in CHO cells

Author:

Xing ZhouORCID,Nguyen Thao BichORCID,Kanai-Bai GuirongORCID,Yamano-Adachi NorikoORCID,Omasa TakeshiORCID

Abstract

AbstractBioprocess development benefits from kinetic models in many aspects, including scale-up, optimization, and process understanding. However, current models are unable to simulate the production process of a coxsackievirus A6 (CVA6) virus-like particle (VLP) vaccine using Chinese hamster ovary cell culture. In this study, a novel kinetic model was constructed, correlating (1) cell growth, death, and lysis kinetics, (2) metabolism of major metabolites, and (3) CVA6 VLP production. To construct the model, two batches of a laboratory-scale 2 L bioreactor cell culture were prepared and various pH shift strategies were applied to examine the effect of pH shift. The proposed model described the experimental data under various conditions with high accuracy and quantified the effect of pH shift. Next, cell culture performance with various pH shift timings was predicted by the calibrated model. A trade-off relationship was found between product yield and quality. Consequently, multiple objective optimization was performed by integrating desirability methodology with model simulation. Finally, the optimal operating conditions that balanced product yield and quality were predicted. In general, the proposed model improved the process understanding and enabled in silico process development of a CVA6 VLP vaccine.

Funder

Japan Agency for Medical Research and Development

Japan Society for the Promotion of Science

Osaka University

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Clinical Biochemistry,Biomedical Engineering,Bioengineering,Biotechnology

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