Search results for "magnetic targeting"

showing 4 items of 4 documents

Inulin-based polymer coated SPIONs as potential drug delivery systems for targeted cancer therapy

2014

This paper deal with the synthesis and characterization of PEGylated squalene-grafted-inulin amphiphile capable of self-assembling and self-organizing into nanocarriers once placed in aqueous media. It was exploited as coating agent for obtaining doxorubicin loaded superparamagnetic iron oxide nanoparticles (SPIONs) endowed with stealth like behavior and excellent physicochemical stability. Inulin was firstly modified in the side chain with primary amine groups, followed in turn by conjugation with squalenoyl derivatives through common amidic coupling agents and PEGylation by imine linkage. Polymer coated SPIONs were so obtained by spontaneous self-assembling of inulin copolymer onto magnet…

Hydrodynamic radiusCell SurvivalPolymersSurface PropertiesPharmaceutical ScienceTherapeutic indexSpectroscopy Fourier Transform InfraredAmphiphileZeta potentialmedicineSPIONs Inulin copolymer Doxorubicin Magnetic targeting Squalene PegylatedHumansOrganic chemistryDoxorubicinParticle SizeMagnetite NanoparticlesDrug CarriersAntibiotics AntineoplasticMolecular StructureChemistryInulinGeneral MedicineHCT116 CellsCombinatorial chemistryDrug LiberationDoxorubicinDrug deliveryMicroscopy Electron ScanningPEGylationNanocarriersBiotechnologymedicine.drugEuropean Journal of Pharmaceutics and Biopharmaceutics
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Polymeric Nanocarriers for Magnetic Targeted Drug Delivery: Preparation, Characterization, and in Vitro and in Vivo Evaluation

2013

In this paper the preparation of magnetic nano- carriers (MNCs), containing superparamagnetic domains, is reported, useful as potential magnetically targeted drug delivery systems. The preparation of MNCs was performed by using the PHEA-IB-p(BMA) graft copolymer as coating material through the homogenization−solvent evaporation method. Magnetic and nonmagnetic nanocarriers containing flutamide (FLU-MNCs) were prepared. The prepared nanocarriers have been exhaustively characterized by dynamic light scattering (DLS), transmission electron microscopy (TEM), and magnetic measurements. Biological evaluation was performed by in vitro cytotoxicity and cell uptake tests and in vivo biodistribution …

MaleMaterials sciencePharmaceutical ScienceAntineoplastic AgentsNanotechnologyMagneticsDrug Delivery SystemsDynamic light scatteringIn vivoCell Line TumorDrug DiscoveryLNCaPAnimalsHumansDistribution (pharmacology)Tissue DistributionParticle SizeRats WistarMagnetite NanoparticlesDrug Carriersequipment and suppliesmagnetic nanocarrier magnetic targeting flutamide superparamagnetic nanoparticlesFlutamideIn vitroRatsTargeted drug deliverySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoBiophysicsMolecular MedicineNanocarriersPeptideshuman activitiesSuperparamagnetismMolecular Pharmaceutics
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STRATEGIE DI DIREZIONAMENTO ALL’EPATOCARCINOMA DI FARMACI ANTITUMORALI MEDIANTE SISTEMI NANOPARTICELLARI E DI VISUALIZZAZIONE IN CELLULE TUMORALI DEL…

Lo scopo di questo lavoro di tesi è stato quello di realizzare nuovi sistemi nanoparticellari per il direzionamento di farmaci o di agenti per l’imaging, potenzialmente utilizzabili per la terapia e/o per la diagnosi dell’epatocarcinoma (HCC), in particolare per quelle forme caratterizzate dall’overespressione del recettore di membrana degli epatociti ASGP-R o del recettore mitocondriale TSPO. In particolare, nel capitolo 2 sono state descritte la sintesi, la caratterizzazione chimico fisica, la capacità di internalizzazione cellulare e l’efficacia antitumorale di un nuovo sistema nanoparticellare, costituito da un dendrimero a struttura poli-amido-aminica (PAMAM) di quarta generazione, opp…

PAMAM dendrimerLactobionic acidQD nanoparticleTSPO receptorSPIONimagingSorafenibASGPR receptor; TSPO receptor; HEPATOCELLULAR CARCINOMA; Lactobionic acid; Sorafenib; PAMAM dendrimer; QD nanoparticles; Micelles pegilated; SPION; magnetic targeting;imaging;magnetic targetingASGPR receptorMicelles pegilatedSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoHEPATOCELLULAR CARCINOMA
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Metallic Core Nanocarriers for Multiple Cancer Targeting

2014

SPIOns Inulin Squalene Magnetic targeting
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