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Registros recuperados: 16 | |
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MARTINS, P. A.; TROBO-MASEDA, L.; LIMA, F. A.; MORAIS JÚNIOR, W. G. DE; MARCO, J. LISBOA DE; SALUM, T. F. C.; GUISAN, J. M.. |
Immobilization of lipase from Burkholderia gladioli BRM58833 on octyl sepharose (OCT) resulted in catalysts with higher activity and stability. Following, strategies were studied to further stabilize and secure the enzyme to the support using functionalized polymers, like polyethylenimine (PEI) and aldehyde-dextran (DEXa), to cover the catalyst with layers at different combinations. Alternatively, the construction of a bifunctional layer was studied using methoxypolyethylene glycol amine (NH 2 -PEG) and glycine. The catalyst OCT-PEI-DEXa was the most thermostable, with a 263.8-fold increase in stability when compared to the control condition. When evaluated under alkaline conditions, OCT-DEXa-PEG 10 /Gly was the most stable, reaching stability 70.1 times... |
Tipo: Artigo de periódico |
Palavras-chave: Enzyme stabilization; Lípase. |
Ano: 2022 |
URL: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1145248 |
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Registros recuperados: 16 | |
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