| Literature DB >> 21618458 |
Saeideh Naderi1, Mukesh Meshram, Catherine Wei, Brendan McConkey, Brian Ingalls, Hector Budman, Jeno Scharer.
Abstract
A metabolic flux based methodology was developed for modeling the metabolism of a Chinese hamster ovary cell line. The elimination of insignificant fluxes resulted in a simplified metabolic network which was the basis for modeling the significant metabolites. Employing kinetic rate expressions for growing and non-growing subpopulations, a logistic model was developed for cell growth and dynamic models were formulated to describe culture composition and monoclonal antibody (MAb) secretion. The model was validated for a range of nutrient concentrations. Good agreement was obtained between model predictions and experimental data. The ultimate goal of this study is to establish a comprehensive dynamic model which may be used for model-based optimization of the cell culture for MAb production in both batch and fed-batch systems.Entities:
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Year: 2011 PMID: 21618458 DOI: 10.1002/btpr.647
Source DB: PubMed Journal: Biotechnol Prog ISSN: 1520-6033