Please use this identifier to cite or link to this item: http://hdl.handle.net/10773/32941
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dc.contributor.authorCristóvão, Raquel O.pt_PT
dc.contributor.authorAlmeida, Mafalda R.pt_PT
dc.contributor.authorBarros, Maria A.pt_PT
dc.contributor.authorNunes, João C. F.pt_PT
dc.contributor.authorBoaventura, Rui A. R.pt_PT
dc.contributor.authorLoureiro, José M.pt_PT
dc.contributor.authorFaria, Joaquim L.pt_PT
dc.contributor.authorNeves, Márcia C.pt_PT
dc.contributor.authorFreire, Mara G.pt_PT
dc.contributor.authorEbinuma-Santos, Valéria C.pt_PT
dc.contributor.authorTavares, Ana P. M.pt_PT
dc.contributor.authorSilva, Cláudia G.pt_PT
dc.date.accessioned2022-01-18T12:20:24Z-
dc.date.available2022-01-18T12:20:24Z-
dc.date.issued2020-
dc.identifier.urihttp://hdl.handle.net/10773/32941-
dc.description.abstractThe enzyme L-asparaginase (ASNase) presents effective antineoplastic properties used for acute lymphoblastic leukemia treatment besides their potential use in the food sector to decrease the acrylamide formation. Considering their applications, the improvement of this enzyme's properties by efficient immobilization techniques is in high demand. Carbon nanotubes are promising enzyme immobilization supports, since these materials have increased surface area and effective capacity for enzyme loading. Accordingly, in this study, multi-walled carbon nanotubes (MWCNTs) were explored as novel supports for ASNase immobilization by a simple adsorption method. The effect of pH and contact time of immobilization, as well as the ASNase to nanoparticles mass ratio, were optimized according to the enzyme immobilization yield and relative recovered activity. The enzyme–MWCNTs bioconjugation was confirmed by thermogravimetric analysis (TGA), Fourier transform infrared spectroscopy (FTIR), Raman and transmission electron microscopy (TEM) studies. MWCNTs have a high ASNase loading capacity, with a maximum immobilization yield of 90%. The adsorbed ASNase retains 90% of the initial enzyme activity at the optimized conditions (pH 8.0, 60 min, and 1.5 x 10-3 g mL1 of ASNase). According to these results, ASNase immobilized onto MWCNTs can find improved applications in several areas, namely biosensors, medicine and food industry.pt_PT
dc.language.isoengpt_PT
dc.publisherRoyal Society of Chemistrypt_PT
dc.relationPOCI-01-0145-FEDER-031268pt_PT
dc.relationUIDB/50011/2020pt_PT
dc.relationUIDP/50011/2020pt_PT
dc.relationIF/01634/2015pt_PT
dc.relationIF/00514/2014pt_PT
dc.relation2018/06908-8pt_PT
dc.relationDL57/2016pt_PT
dc.relationSFRH/BD/150671/2020pt_PT
dc.rightsopenAccesspt_PT
dc.rights.urihttp://creativecommons.org/licenses/by-nc/4.0/pt_PT
dc.titleDevelopment and characterization of a novel l-asparaginase/MWCNT nanobioconjugatept_PT
dc.typearticlept_PT
dc.description.versionpublishedpt_PT
dc.peerreviewedyespt_PT
degois.publication.firstPage31205pt_PT
degois.publication.issue52pt_PT
degois.publication.lastPage31213pt_PT
degois.publication.titleRSC Advancespt_PT
degois.publication.volume10pt_PT
dc.identifier.doi10.1039/D0RA05534Dpt_PT
dc.identifier.essn2046-2069pt_PT
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