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dc.contributor.authorSantos, Kímberle Paiva dos-
dc.contributor.authorSilva, Caroline Mellinger-
dc.contributor.authorBrígida, Ana Iraidy Santa-
dc.contributor.authorGonçalves, Luciana Rocha Barros-
dc.date.accessioned2022-07-18T14:06:23Z-
dc.date.available2022-07-18T14:06:23Z-
dc.date.issued2020-
dc.identifier.citationGONÇALVES, L. R. B. et al. Modifying alcalase activity and stability by immobilization onto chitosan aiming at the production of bioactive peptides by hydrolysis of tilapia skin gelatin. Process Biochemistry, vol. 97, n. [s.n], p. 27-36, 2020pt_BR
dc.identifier.issn1359-5113-
dc.identifier.urihttp://www.repositorio.ufc.br/handle/riufc/67163-
dc.description.abstractThe protease from Bacillus licheniformis, commercially known as Alcalase®, was insolubilized and stabilized by immobilization onto activated chitosan. Activation with different agents, such as glutaraldehyde (GLU-Chi), glyoxyl (GLY-Chi) and divinyl sulfone (DVS-Chi) was investigated. The effect of the immobilization protocol, for instance different pH and times, were also evaluated. GLU-Chi showed the highest activity (35.6UNPA/g) with the smallest substrate (N-Boc-L-alanine p-nitrophenyl-ester, NPA), while GLY-Chi showed the highest activity (1.5 UAzocasein/g) using the greatest substrate (azocasein). A 24-h immobilization period was enough to stabilize the enzyme using the three supports under almost all conditions. Operational stability in azocasein hydrolysis was assayed and GLU-Chi showed no activity loss during 5 cycles. DVS-Chi retained around 70 % of its initial activity after the fifth cycle, whereas GLY-Chi activity retained only 10 %. Finally, the biocatalysts were used in the hydrolysis of tilapia skin gelatin aiming the production of peptides with antioxidant activity. The protein hydrolysates obtained using GLU-Chi presented the highest antioxidant activity (36.7 μM Trolox Eq). However, the best results of operational stability were obtained using DVS-Chi, which did not lose its initial activity after 3 consecutive cycles of gelatin hydrolysis.pt_BR
dc.language.isoenpt_BR
dc.publisherProcess Biochemistrypt_BR
dc.subjectAlcalasept_BR
dc.subjectChitosanpt_BR
dc.subjectImmobilizationpt_BR
dc.subjectStabilitypt_BR
dc.subjectProtein hydrolysatespt_BR
dc.subjectTilapia skin gelatinpt_BR
dc.titleModifying alcalase activity and stability by immobilization onto chitosan aiming at the production of bioactive peptides by hydrolysis of tilapia skin gelatinpt_BR
dc.typeArtigo de Periódicopt_BR
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