The aim of this work was to evaluate (R)-β-hydroxyisobutyric acid (HIBA) production by microbial stereoselective oxidation of 2-methyl-1,3 propanediol under different conditions, and to compare the performance of this bioconversion in traditional aqueous media and aqueous/organic biphasic media. The oxidation is a two-step reaction with hydroxyisobutanal as an intermediate. Among the operational factors tested, pH and aeration were those, which most significantly affected the biocatalytic activity. Enantiomeric excesses higher than 95% were consistently obtained. For substrate concentrations above 50 mg ml-1 a slight substrate inhibition was observed. Product inhibition was much stronger, and together with the decrease of the pH during the bioconversion was the most important limiting factor in long-term bioconversions. Kinetic parameters were determined for different pH values. A compromise pH value of 4 was determined to be the optimum for HIBA production and simultaneous extraction with an organic phase of trioctyl phosphine oxide (TOPO) in isooctane.

Microbial stereoselective oxidation of 2-methyl-1,3-propanediol to (R)-β-hydroxyisobutyric acid in aqueous/organic biphasic systems / R. Leon, D.M.F. Prazeres, F. Molinari, J.M.S. Cabral. - In: BIOCATALYSIS AND BIOTRANSFORMATION. - ISSN 1024-2422. - 20:3(2002), pp. 201-207.

Microbial stereoselective oxidation of 2-methyl-1,3-propanediol to (R)-β-hydroxyisobutyric acid in aqueous/organic biphasic systems

F. Molinari
Penultimo
;
2002

Abstract

The aim of this work was to evaluate (R)-β-hydroxyisobutyric acid (HIBA) production by microbial stereoselective oxidation of 2-methyl-1,3 propanediol under different conditions, and to compare the performance of this bioconversion in traditional aqueous media and aqueous/organic biphasic media. The oxidation is a two-step reaction with hydroxyisobutanal as an intermediate. Among the operational factors tested, pH and aeration were those, which most significantly affected the biocatalytic activity. Enantiomeric excesses higher than 95% were consistently obtained. For substrate concentrations above 50 mg ml-1 a slight substrate inhibition was observed. Product inhibition was much stronger, and together with the decrease of the pH during the bioconversion was the most important limiting factor in long-term bioconversions. Kinetic parameters were determined for different pH values. A compromise pH value of 4 was determined to be the optimum for HIBA production and simultaneous extraction with an organic phase of trioctyl phosphine oxide (TOPO) in isooctane.
Settore CHIM/11 - Chimica e Biotecnologia delle Fermentazioni
2002
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/193073
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