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dc.contributor.authorGhorbani, M
dc.contributor.authorHamishehkar, H
dc.contributor.authorArsalani, N
dc.contributor.authorEntezami, AA
dc.date.accessioned2018-08-26T09:32:23Z
dc.date.available2018-08-26T09:32:23Z
dc.date.issued2015
dc.identifier.urihttp://dspace.tbzmed.ac.ir:8080/xmlui/handle/123456789/57332
dc.description.abstractIn this work, a thermo and pH-responsive poly-N-isopropylacrylamide-co-itaconic acid containing thiol side groups were successfully synthesized to prepare Doxorubicin-loaded polymer@Au/Fe<inf>3</inf>O<inf>4</inf> core/shell nanoparticles (DOX-NPs). Copolymer and NPs were fully characterized by FT-IR, HNMR, photo-correlation spectroscopy, SEM, X-ray diffraction, vibrating-sample magnetometer, thermal gravimetric analysis, and UV-Vis spectroscopy. The stimuli-responsive characteristics of NPs were evaluated by in vitro release study in simulated cancerous environment. The biocompatibility and cytotoxic properties of NPs and DOX-NPs are explored by MTT method. The prepared NPs with the size of 50آ nm showed paramagnetic characteristics with suitable and stable dispersion at physiological medium and high loading capacity (up to 55آ %) of DOX. DOX-NPs yielded a pH- and temperature-triggered release of entrapped drugs at tumor tissue environment (59آ % of DOX release) compared to physiological condition (20آ % of DOX release) during 48آ h. In vitro cytotoxicity studies indicated that the NPs showed no cytotoxicity on A549 cells at different amounts after incubation for 72آ h confirming its suitability as a drug carrier. DOX-NPs, on the other hand, caused an efficient anticancer performance as verified by MTT assay test. It was concluded that developed NPs by us in this study may open the possibilities for targeted delivery of DOX to the cancerous tissues. é 2015, Springer Science+Business Media Dordrecht.
dc.language.isoEnglish
dc.relation.ispartofJournal of Nanoparticle Research
dc.subjectAcrylic monomers
dc.subjectBiocompatibility
dc.subjectChemotherapy
dc.subjectCytotoxicity
dc.subjectGravimetric analysis
dc.subjectMedical nanotechnology
dc.subjectNanoparticles
dc.subjectPhysiology
dc.subjectSynthesis (chemical)
dc.subjectThermogravimetric analysis
dc.subjectTissue
dc.subjectX ray diffraction
dc.subjectCore/shell
dc.subjectDoxorubicin
dc.subjectPhotocorrelation spectroscopy
dc.subjectPoly n-isopropylacrylamide
dc.subjectStimuli-responsive
dc.subjectTargeted drug delivery
dc.subjectThermal gravimetric analysis
dc.subjectVibrating sample magnetometer
dc.subjectGold
dc.subject3 (4,5 dimethyl 2 thiazolyl) 2,5 diphenyltetrazolium bromide
dc.subjectdoxorubicin
dc.subjectgold nanoparticle
dc.subjectitaconic acid
dc.subjectmagnetite nanoparticle
dc.subjectpoly n isopropylacrylamide co itaconic acid
dc.subjectunclassified drug
dc.subjectA549 cell line
dc.subjectArticle
dc.subjectbioassay
dc.subjectcontrolled study
dc.subjectdrug delivery system
dc.subjectdrug release
dc.subjectdrug targeting
dc.subjecthuman
dc.subjecthuman cell
dc.subjectin vitro study
dc.subjectinfrared spectroscopy
dc.subjectmagnetometer
dc.subjectnanoanalysis
dc.subjectnanofabrication
dc.subjectparticle size
dc.subjectpH
dc.subjectphoton correlation spectroscopy
dc.subjectpriority journal
dc.subjectproton nuclear magnetic resonance
dc.subjectscanning electron microscopy
dc.subjecttemperature sensitivity
dc.subjectthermogravimetry
dc.subjecttumor microenvironment
dc.subjectultraviolet spectroscopy
dc.subjectX ray diffraction
dc.titlePreparation of thermo and pH-responsive polymer@Au/Fe<inf>3</inf>O<inf>4</inf> core/shell nanoparticles as a carrier for delivery of anticancer agent
dc.typeArticle
dc.citation.volume17
dc.citation.issue7
dc.citation.indexScopus
dc.identifier.DOIhttps://doi.org/10.1007/s11051-015-3097-z


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