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dc.contributor.authorRio, Irina S. R.por
dc.contributor.authorRodrigues, Ana Rita O.por
dc.contributor.authorRodrigues, Carolina P.por
dc.contributor.authorAlmeida, B. G.por
dc.contributor.authorPires, A.por
dc.contributor.authorPereira, A. M.por
dc.contributor.authorAraújo, J. P.por
dc.contributor.authorCastanheira, Elisabete M. S.por
dc.contributor.authorCoutinho, Paulo J. G.por
dc.date.accessioned2020-03-19T15:43:36Z-
dc.date.available2020-03-19T15:43:36Z-
dc.date.issued2020-02-11-
dc.identifier.citationRio, I.S.R.; Rodrigues, A.R.O.; Rodrigues, C.P.; Almeida, B.G.; Pires, A.; Pereira, A.M.; Araújo, J.P.; Castanheira, E.M.S.; Coutinho, P.J.G. Development of Novel Magnetoliposomes Containing Nickel Ferrite Nanoparticles Covered with Gold for Applications in Thermotherapy. Materials 2020, 13, 815.por
dc.identifier.urihttps://hdl.handle.net/1822/64495-
dc.description.abstractMultifunctional nanosystems combining magnetic and plasmonic properties are a promising approach for cancer therapy, allowing magnetic guidance and a local temperature increase. This capability can provide a triggered drug release and synergistic cytotoxic effect in cancer cells. In this work, nickel ferrite/gold nanoparticles were developed, including nickel ferrite magnetic nanoparticles decorated with plasmonic gold nanoparticles and core/shell nanostructures (with a nickel ferrite core and a gold shell). These nanoparticles were covered with a surfactant/lipid bilayer, originating liposome-like structures with diameters below 160 nm. The heating capacity of these systems, upon excitation with light above 600 nm wavelength, was assessed through the emission quenching of rhodamine B located in the lipid layer. The developed nanosystems show promising results for future applications in thermotherapy.por
dc.description.sponsorshipThis research was funded by the Portuguese Foundation for Science and Technology (FCT) in the framework of the Strategic Funding of CF-UM-UP (UID/FIS/04650/2019) and through the research project PTDC/QUI-QFI/28020/2017 (POCI-01-0145-FEDER-028020), financed by European Fund of Regional Development (FEDER), COMPETE2020, and Portugal2020. The magnetic measurements were supported by projects UTAP-EXPL/NTec/0046/2017, NORTE-01-0145-FEDER-028538, and PTDC/FIS-MAC/29454/2017. I.S.R.R. acknowledges FCT for a research grant under CF-UM-UP Strategic Funding (UID/FIS/04650/2019).por
dc.language.isoengpor
dc.publisherMultidisciplinary Digital Publishing Institutepor
dc.relationPTDC/QUI-QFI/28020/2017por
dc.relationPTDC/FIS-MAC/29454/2017por
dc.relationEXPL/NTec/0046/2017por
dc.relationPTDC/FIS-MAC/29454/2017por
dc.relationUID/FIS/04650/2019por
dc.rightsopenAccesspor
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/por
dc.subjectmagneticpor
dc.subjectplasmonic nanoparticlespor
dc.subjectnickel ferritepor
dc.subjectgoldpor
dc.subjectmagnetoliposomespor
dc.subjectthermotherapypor
dc.subjectMagnetic/plasmonic nanoparticlespor
dc.titleDevelopment of novel magnetoliposomes containing nickel ferrite nanoparticles covered with gold for applications in thermotherapypor
dc.typearticlepor
dc.peerreviewedyespor
dc.relation.publisherversionhttps://www.mdpi.com/1996-1944/13/4/815por
oaire.citationIssue4por
oaire.citationVolume13por
dc.date.updated2020-03-02T12:40:08Z-
dc.identifier.eissn1996-1944-
dc.identifier.doi10.3390/ma13040815por
dc.subject.wosScience & Technologypor
sdum.journalMaterialspor
oaire.versionVoRpor
Aparece nas coleções:PHYSICS OF QUANTUM MATERIALS AND BIONANOSTRUCTURES (2018 - ...)

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