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Updated: Feb 27, 2026

Generic Protocol for Optimization of Heterologous Protein Production Using Automated Microbioreactor Technology
Published on: December 15, 2017
Application of iterative robust model-based optimal experimental design for the calibration of biocatalytic models
Timothy Van Daele1, Krist V Gernaey2, Rolf H Ringborg2
1Faculty of Bioscience Engineering, BIOMATH, Dept. of Mathematical Modelling, Statistics and Bioinformatics, Ghent University, Coupure Links 653, Ghent, 9000, Belgium.
Abstract:
The aim of model calibration is to estimate unique parameter values from available experimental data, here applied to a biocatalytic process. The traditional approach of first gathering data followed by performing a model calibration is inefficient, since the information gathered during experimentation is not actively used to optimize the experimental design. By applying an iterative robust model-based optimal experimental design, the limited amount of data collected is used to design additional informative experiments. The algorithm is used here to calibrate the initial reaction rate of an ω-transaminase catalyzed reaction in a more accurate way. The parameter confidence region estimated from the Fisher Information Matrix is compared with the likelihood confidence region, which is not only more accurate but also a computationally more expensive method. As a result, an important deviation between both approaches is found, confirming that linearization methods should be applied with care for nonlinear models. © 2017 American Institute of Chemical Engineers Biotechnol. Prog., 33:1278-1293, 2017.
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