Search results for " SPION"

showing 8 items of 8 documents

Inulin-Ethylenediamine Coated SPIONs Magnetoplexes: A Promising Tool for Improving siRNA Delivery.

2015

An inulin based polycation (Inu-EDA) has been synthesized by the grafting of ethylenediamine molecules onto inulin backbone. The obtained inulin copolymer has been though to coat SPIONs (IC-SPIONs) and obtain stable magnetoplexes by complexation of IC-SPIONs with a model duplexed siRNA, for improving oligonucleotide transfection efficiency.The physical-chemical characteristics of IC-SPIONs and IC-SPIONs/siRNA magnetoplexes have been investigated by scanning and transmission electron microscopies, dynamic light scattering, FT-IR and qualitative surface elementary analysis. Cell compatibility and internalization in vitro of IC-SPIONs have been evaluated by MTS and fluorescence microscopy resp…

Cell SurvivalSurface PropertiesDrug CompoundingInulinPharmaceutical ScienceTransfectionpolycationchemistry.chemical_compoundDynamic light scatteringMicroscopy Electron TransmissionSpectroscopy Fourier Transform InfraredFluorescence microscopeHumansPharmacology (medical)Particle SizeRNA Small InterferingMagnetite NanoparticlesPharmacologyDrug CarriersChemistryOligonucleotideOrganic ChemistryInulinTransfectionEthylenediaminesHCT116 CellsIn vitroFerrosoferric OxideSPIONsTargeted drug deliveryBiochemistryCell cultureinulin; magnetoplexes; polycation; siRNA; SPIONssiRNABiophysicsMicroscopy Electron ScanningMolecular Medicineinulin magnetoplexes polycation siRNA SPIONsBiotechnologymagnetoplexesPharmaceutical research
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Nanosistemi polimerici per la veicolazione di farmaci antitumorali o attivi sul sistema nervoso centrale

2014

Drug Delivery Systems Nanoparticelle Micelle SPIONs.
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Metallic core nano-devices as drug delivery systems

2014

Nanoparticles SPIONs Gold NanoparticlesDrug Delivery
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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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Combining inulin multifunctional polycation and magnetic nanoparticles: Redox-responsive siRNA-loaded systems for magnetofection

2019

Superparamagnetic Iron Oxide Nanoparticles (SPIONs) are recognized as one of the most promising agents for theranostic applications. Among methods designed for siRNA delivery, magnetofection, that is, nucleic acid cell uptake under the influence of a magnetic field acting on magnetic nucleic acid vectors, is emerging as a unique approach to combining advantages such as strong improvement of the kinetics of the delivery process and the possibility of localizing nucleic acid delivery to an area where the magnetic field is applied. This paper reports on the preparation of siRNA loaded magnetoplexes&mdash

Polymers and PlasticsCystamine; DETA; Inulin; SiRNA; SPIONsCellDETACystamineNanoparticle02 engineering and technology010402 general chemistry01 natural sciencesArticlelcsh:QD241-441chemistry.chemical_compoundlcsh:Organic chemistryCystamineSiRNAmedicineChemistryInulinGeneral ChemistryGlutathione021001 nanoscience & nanotechnologyequipment and suppliesIn vitro0104 chemical sciencesmedicine.anatomical_structureSPIONsSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoMagnetofectionNucleic acidBiophysicsMagnetic nanoparticles0210 nano-technologyhuman activities
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Nanostrutture composite ad azione teranostica per il trattamento del cancro

2020

Settore CHIM/09 - Farmaceutico Tecnologico Applicativonanomedicina biopolimeri teranostica cancro SPIONs nanorods di oro
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Intravenous SPION-labeled adipocyte-derived stem cells targeted to the brain by magnetic attraction in a rat stroke model: An ultrastructural insight…

2021

Abstract Mesenchymal stem cell therapy after stroke is a promising option investigated in animal models and clinical trials. The intravenous route is commonly used in clinical settings guaranteeing an adequate safety profile although low yields of engraftment. In this report, rats subjected to ischemic stroke were injected with adipose-derived stem cells (ADSCs) labeled with superparamagnetic iron oxide nanoparticles (SPIONs) applying an external magnetic field in the skull to retain the cells. Although most published studies demonstrate viability of ADSCs, only a few have used ultrastructural techniques. In our study, the application of a local magnetic force resulted in a tendency for hig…

medicine.medical_treatmentBiomedical EngineeringPharmaceutical ScienceMedicine (miscellaneous)BioengineeringCell fate determinationCorrelative microscopy Electron microscopy Magnetic fields SPION Stem cell therapy Strokechemistry.chemical_compoundAdipocyteAdipocytesmedicineAnimalsGeneral Materials ScienceMagnetite NanoparticlesStrokeMicrogliaStem CellsMesenchymal stem cellBrainStem-cell therapymedicine.diseaseMagnetic Resonance ImagingRatsCell biologyStrokeMagnetic Fieldsmedicine.anatomical_structurechemistryUltrastructureMolecular MedicineStem cellNanomedicine: Nanotechnology, Biology and Medicine
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Nanosystem for diagnosis and photothermal treatment of tumors

2022

The invention relates to a nanosystem for the diagnosis, image-guided treatment of tumors and monitoring of the tumor microenvironment. The nanosystem is a contrast agent comprising a polymer shell based on a hyaluronic acid nanogel, super-parameg-netic iron oxide nanoparticles (SPIONs) and carbon nanoparticles (CDs).

theranostics nanomedicine MRI photo thermal therapy SPIONs hyaluronic acid
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