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1.
Appl Biochem Biotechnol ; 170(7): 1560-73, 2013 Aug.
Article in English | MEDLINE | ID: mdl-23703579

ABSTRACT

Immobilized lipase from Candida antarctica (Novozyme 435) was tested for the synthesis of various phenolic acid esters (ethyl and n-butyl cinnamate, ethyl p-coumarate and n-butyl p-methoxycinnamate). The second-order kinetic model was used to mathematically describe the reaction kinetics and to compare present processes quantitatively. It was found that the model agreed well with the experimental data. Further, the effect of alcohol type on the esterification of cinnamic acid was investigated. The immobilized lipase showed more ability to catalyze the synthesis of butyl cinnamate. Therefore, the process was optimized for the synthesis of butyl cinnamate as a function of solvent polarity (logP) and amount of biocatalyst. The highest ester yield of 60.7 % was obtained for the highest enzyme concentration tested (3 % w/w), but the productivity was for 34 % lower than the corresponding value obtained for the enzyme concentration of 1 % (w/w). The synthesized esters were purified, identified, and screened for antioxidant activities. Both DPPH assay and cyclic voltammetry measurement have shown that cinnamic acid esters have better antioxidant properties than cinnamic acid itself.


Subject(s)
Antioxidants/chemical synthesis , Cinnamates/chemistry , Fatty Acids/chemical synthesis , Fungal Proteins/chemistry , Lipase/chemistry , Lipids/chemical synthesis , Models, Chemical , Computer Simulation , Enzymes, Immobilized/chemistry , Feasibility Studies
2.
Carbohydr Res ; 341(11): 1779-87, 2006 Aug 14.
Article in English | MEDLINE | ID: mdl-16696959

ABSTRACT

The kinetics of the oxidation of D-glucose to D-gluconic acid by bromine in aqueous solution were studied using potentiometric techniques and theoretical considerations of complex bromine-bromide-pH equilibria. The pH has a strong influence on reaction rate. At pH < 8 the reaction is very slow, while in the pH range pH 8-9.5 the reaction is sufficiently fast and seems optimal for the reaction. The proposed active species at that pH region is hypobromous acid. At pH > 9.5, the reaction is further accelerated due to the formation of hypobromite. The proposed kinetics expression for gluconic acid formation, based on the determined kinetic parameters at pH 9.24, is of the form dc(GA)/dt = 160c(2)(G)c(o)(HOBr)c(o)(H(+)c(o)(Br)


Subject(s)
Bromine/chemistry , Glucose/chemistry , Bromates/chemistry , Gluconates/chemistry , Hydrogen-Ion Concentration , Kinetics , Models, Chemical , Oxidation-Reduction , Time Factors , Water/chemistry
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