Name: | Description: | Size: | Format: | |
---|---|---|---|---|
472.3 KB | Adobe PDF |
Advisor(s)
Abstract(s)
The production of prebiotic galactooligosaccharides (GOS) from lactose has been widely studied whereas the synthesis of new prebiotic oligosaccharides with improved properties as those derived from lactulose is receiving an increasing interest. Understanding the mechanism of enzymatic oligosaccharides synthesis from lactulose would help to improve the quality of the products in a rational way as well as
to increase the production efficiency by optimally selecting the operating conditions. A detailed kinetic model describing the enzymatic transgalactosylation reaction during lactulose hydrolysis is presented here for the first time. The model was calibrated with the experimental data obtained in batch assays with two different B-galactosidases at various temperatures and concentrations of substrate. A complete system identification loop, including model selection, robust estimation of the parameters by means of a global optimization method and computation of confidence intervals was performed. The kinetic model showed a good agreement between experimental data and predictions for lactulose conversion
and provided important insights into the mechanism of formation of new gligosaccharides with potential prebiotic properties.
Description
Keywords
Kinetic models Lactulose Transgalactosylation Model selection Parameter estimation Identifiability analysis
Citation
RODRIGUEZ-FERNANDEZ, Maria.. [et al.] - Detailed kinetic model describing new oligosaccharides synthesis using different β-galactosidases. Journal of Biotechnology. ISSN 0168-1656. Vol. 153, n.º 3-4 (2011), p. 116–124
Publisher
Elsevier