Santos_2008_Colloids.Surf.B.Biointerfaces_61_229

Reference

Title : Covalent attachment of Candida rugosa lipase on chemically modified hybrid matrix of polysiloxane-polyvinyl alcohol with different activating compounds - Santos_2008_Colloids.Surf.B.Biointerfaces_61_229
Author(s) : Santos JC , Mijone PD , Nunes GF , Perez VH , de Castro HF
Ref : Colloids Surf B Biointerfaces , 61 :229 , 2008
Abstract :

Candida rugosa lipase was immobilized by covalent binding on hybrid matrix of polysiloxane-polyvinyl alcohol chemically modified with different activating agents as glutaraldehyde, sodium metaperiodate and carbonyldiimidazole. The experimental results suggested that functional activating agents render different interactions between enzyme and support, producing consequently alterations in the optimal reaction conditions. Properties of the immobilized systems were assessed and their performance on hydrolytic and synthetic reactions were evaluated and compared with the free enzyme. In hydrolytic reactions using p-nitrophenyl palmitate as substrate all immobilized systems showed higher thermal stability and optima pH and temperature values in relation to the free lipase. Among the activating compounds, carbonyldiimidazole resulted in a total recovery of activity on the support and the highest thermal stability. For the butyl butyrate synthesis, the best performance (molar conversion of 95% and volumetric productivity of 2.33 g L(-1)h(-1)) was attained with the lipase immobilized on POS-PVA activated with sodium metaperiodate. The properties of the support and immobilized derivatives were also evaluated by scanning electron microscopy (SEM), energy dispersive X-ray spectroscopies and chemical composition (FTIR).

PubMedSearch : Santos_2008_Colloids.Surf.B.Biointerfaces_61_229
PubMedID: 17889514

Related information

Citations formats

Santos JC, Mijone PD, Nunes GF, Perez VH, de Castro HF (2008)
Covalent attachment of Candida rugosa lipase on chemically modified hybrid matrix of polysiloxane-polyvinyl alcohol with different activating compounds
Colloids Surf B Biointerfaces 61 :229

Santos JC, Mijone PD, Nunes GF, Perez VH, de Castro HF (2008)
Colloids Surf B Biointerfaces 61 :229