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Shape Anisotropic Iron Oxide-Based Magnetic Nanoparticles: Synthesis and Biomedical Applications

Raquel G. D. Andrade, Sérgio R. S. Veloso, Elisabete M. S. Castanheira

2020International Journal of Molecular Sciences172 citationsDOIOpen Access PDF

Abstract

Research on iron oxide-based magnetic nanoparticles and their clinical use has been, so far, mainly focused on the spherical shape. However, efforts have been made to develop synthetic routes that produce different anisotropic shapes not only in magnetite nanoparticles, but also in other ferrites, as their magnetic behavior and biological activity can be improved by controlling the shape. Ferrite nanoparticles show several properties that arise from finite-size and surface effects, like high magnetization and superparamagnetism, which make them interesting for use in nanomedicine. Herein, we show recent developments on the synthesis of anisotropic ferrite nanoparticles and the importance of shape-dependent properties for biomedical applications, such as magnetic drug delivery, magnetic hyperthermia and magnetic resonance imaging. A brief discussion on toxicity of iron oxide nanoparticles is also included.

Topics & Concepts

SuperparamagnetismMaterials scienceNanoparticleNanomedicineMagnetic nanoparticlesMagnetic hyperthermiaIron oxide nanoparticlesNanotechnologyMagnetiteIron oxideMagnetismMagnetic anisotropyFerrite (magnet)Drug deliveryMagnetizationMagnetic resonance imagingNuclear magnetic resonanceMagnetic fieldCondensed matter physicsMetallurgyComposite materialPhysicsMedicineRadiologyQuantum mechanicsNanoparticle-Based Drug DeliveryIron oxide chemistry and applicationsMagnetic Properties and Synthesis of Ferrites
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