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Appl Microbiol Biotechnol ; 85(3): 517-24, 2010 Jan.
Article in English | MEDLINE | ID: mdl-19629469

ABSTRACT

Extractive microbial transformation of L-phenylacetylcarbinol (L-PAC) in nonionic surfactant Triton X-100 micelle aqueous solution was investigated by response surface methodology. Based on the Box-Behnken design, a mathematical model was developed for the predication of mutual interactions between benzaldehyde, Triton X-100, and glucose on L-PAC production. It indicated that the negative or positive effect of nonionic surfactant strongly depended on the substrate concentration. The model predicted that the optimal concentration of benzaldehyde, Triton X-100, and glucose was 1.2 ml, 15 g, and 2.76 g per 100 ml, respectively. Under the optimal condition, the maximum L-PAC production was 27.6 mM, which was verified by a time course of extractive microbial transformation. A discrete fed-batch process for verification of cell activity was also presented.


Subject(s)
Acetone/analogs & derivatives , Biotechnology/methods , Surface-Active Agents/pharmacology , Acetone/metabolism , Benzaldehydes/metabolism , Biotransformation , Glucose/metabolism , Micelles , Models, Theoretical , Solutions
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