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http://repositorio.ufc.br/handle/riufc/67166
Type: | Artigo de Periódico |
Title: | Comparison of the immobilization of lipase from Pseudomonas fluorescens on divinylsulfone or p-benzoquinone activated support |
Authors: | Rios, Nathalia Saraiva Andrade Neto, Davino Machado Santos, José Cleiton Sousa dos Fechine, Pierre Basílio Almeida Fernández-Lafuente, Roberto Gonçalves, Luciana Rocha Barros |
Keywords: | Lipase;Enzyme immobilization;Adsorption;Covalent binding;Enzyme stabilization |
Issue Date: | 2019 |
Publisher: | International Journal of Biological Macromolecules |
Citation: | GONÇALVES, L. R. B. et al. Comparison of the immobilization of lipase from Pseudomonas fluorescens on divinylsulfone or p-benzoquinone activated support. International Journal of Biological Macromolecules, vol. 134, p. 936-945, 2019 |
Abstract: | NiZnFe2O4 superparamagnetic nanoparticles were coated with silica by impregnation with tetraethoxysilane (TEOS) and further activated with divinylsulfone (DVS) and p-benzoquinone (BQ) for covalent immobilization lipase from Pseudomonas fluorescens (PFL), producing the biocatalysts TEOS-NANO-DVS-PFL and TEOS-NANO-BQ-PFL. The optimal conditions for enzyme immobilization were found to be pH 7 and 0.1 M of both activating reagents. PFL was also immobilized on TEOS nanoparticles without any activation as a reference (TEOS-NANO-PFL). Results indicated that TEOS could be released from the nanoparticles at alkaline pH value. Optimal TEOS-NANO-PFL exhibited a recovered activity of 55% and a t1/2(60°C) of just over 150 min; while TEOS-NANO-DVS-PFL showed 82% of activity recovered and t1/2(60°C) of 225 min; being the TEOS-NANO-BQ-PFL the biocatalyst offering the best results (89% of recovered activity and a half-life over 1440 min), the maximum enzyme load was ≈300 U/g. |
URI: | http://www.repositorio.ufc.br/handle/riufc/67166 |
ISSN: | 1879-0003 |
Appears in Collections: | DEQ - Artigos publicados em revista científica |
Files in This Item:
File | Description | Size | Format | |
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2019_art_lrbgonçalves.pdf | 1,51 MB | Adobe PDF | View/Open |
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