Publication | Closed Access
Clusters of Superparamagnetic Iron Oxide Nanoparticles Encapsulated in a Hydrogel: A Particle Architecture Generating a Synergistic Enhancement of the T<sub>2</sub> Relaxation
179
Citations
31
References
2011
Year
NanoparticlesMagnetic PropertiesEngineeringIron Oxide NanoparticlesTransverse Relaxation RatePolymer-based MagnetMagnetic ResonanceSynergistic EnhancementBiomedical EngineeringChemistryFerrofluidHydrogelsNanomedicineCarbon AerogelsBiophysicsMaterials SciencePh-responsive HydrogelNanotechnologyNanobiotechnologyParticle ArchitectureNanomaterialsNano-drug DeliveryMedicineFunctional Materials
Clusters of iron oxide nanoparticles encapsulated in a pH-responsive hydrogel are synthesized and studied for their ability to alter the T(2)-relaxivity of protons. Encapsulation of the clusters with the hydrophilic coating is shown to enhance the transverse relaxation rate by up to 85% compared to clusters with no coating. With the use of pH-sensitive hydrogel, difficulties inherent in comparing particle samples are eliminated and a clear increase in relaxivity as the coating swells is demonstrated. Agreement with Monte Carlo simulations indicates that the lower diffusivity of water inside the coating and near the particle surface leads to the enhancement. This demonstration of a surface-active particle structure opens new possibilities in using similar structures for nanoparticle-based diagnostics using magnetic resonance imaging.
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