Utilize este identificador para referenciar este registo: https://hdl.handle.net/10216/162880
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Campo DCValorIdioma
dc.creatorBarros, Rita A. M.
dc.creatorCristóvão, Raquel O.
dc.creatorCarabineiro, Sónia A. C.
dc.creatorNeves, Márcia C.
dc.creatorFreire, Mara G.
dc.creatorJoaquim Luís Faria
dc.creatorSantos-Ebinuma, Valéria C.
dc.creatorTavares, Ana P. M.
dc.creatorClaudia G Silva
dc.date.accessioned2025-11-13T20:11:07Z-
dc.date.available2025-11-13T20:11:07Z-
dc.date.issued2022
dc.identifier.issn2673-6284
dc.identifier.othersigarra:562923
dc.identifier.urihttps://hdl.handle.net/10216/162880-
dc.description.abstractL-asparaginase (ASNase) is an aminohydrolase currently used in the pharmaceutical and food industries. Enzyme immobilization is an exciting option for both applications, allowing for a more straightforward recovery and increased stability. High surface area and customizable porosity make carbon xerogels (CXs) promising materials for ASNase immobilization. This work describes the influence of contact time, pH, and ASNase concentration on the immobilization yield (IY) and relative recovered activity (RRA) using the Central Composite Design methodology. The most promising results were obtained using CX with an average pore size of 4 nm (CX-4), reaching IY and RRA of 100%. At the optimal conditions (contact time 49 min, pH 6.73, and [ASNase] 0.26 mg·mL1), the ASNase-CXs biocomposite was characterized and evaluated in terms of kinetic properties and operational, thermal, and pH stabilities. The immobilized ASNase onto CX-4 retained 71% of its original activity after six continuous reaction cycles, showed good thermal stability at 37 °C (RRA of 91% after 90 min), and was able to adapt to both acidic and alkaline environments. Finally, the results indicated a 3.9-fold increase in the immobilized ASNase affinity for the substrate, confirming the potential of CXs as a support for ASNase and as a cost-effective tool for subsequent use in the therapeutic and food sectors.
dc.language.isoeng
dc.relationinfo:eu-repo/grantAgreement/FCT - Fundação para a Ciência e a Tecnologia/Programa de Financiamento Plurianual de Unidades de I&D/UIDB/50020/2020_UIDP/50020/2020/Financiamento Plurianual 2020-2023 para a Unidade LA LSRE-LCM Laboratório de Processos de Separação e Reacção - Laboratório de Catálise e Materiais/LA LSRE-LCM
dc.rightsopenAccess
dc.titleImmobilization and Characterization of L-Asparaginase over Carbon Xerogels
dc.typeArtigo em Revista Científica Internacional
dc.contributor.uportoFaculdade de Engenharia
dc.identifier.doi10.3390/biotech11020010
dc.identifier.authenticusP-018-800
Aparece nas coleções:FEUP - Artigo em Revista Científica Internacional

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