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Magnetic Nanoparticles: Surface Effects and Properties Related to Biomedicine Applications

International Journal of Molecular Sciences · 2013 · Vol. 14(11) · pp. 21266–21305
Bashar IssaIhab M. ObaidatBorhan AlbissYousef Haik

Abstract

Due to finite size effects, such as the high surface-to-volume ratio and different crystal structures, magnetic nanoparticles are found to exhibit interesting and considerably different magnetic properties than those found in their corresponding bulk materials. These nanoparticles can be synthesized in several ways (e.g., chemical and physical) with controllable sizes enabling their comparison to biological organisms from cells (10-100 μm), viruses, genes, down to proteins (3-50 nm). The optimization of the nanoparticles' size, size distribution, agglomeration, coating, and shapes along with their unique magnetic properties prompted the application of nanoparticles of this type in diverse fields. Biomedicine is one of these fields where intensive research is currently being conducted. In this review, we will discuss the magnetic properties of nanoparticles which are directly related to their applications in biomedicine. We will focus mainly on surface effects and ferrite nanoparticles, and on one diagnostic application of magnetic nanoparticles as magnetic resonance imaging contrast agents.

Characterization and Applications of Magnetic NanoparticlesNanoparticle-Based Drug DeliveryMagnetic properties of thin filmsBiomedicineNanoparticleNanotechnologyMagnetic nanoparticlesMaterials scienceBioinformaticsBiology

MeSH terms

Contrast MediaFerric CompoundsHumansMagnetic Resonance ImagingParticle SizeSurface PropertiesAnisotropyMagnetite Nanoparticles

Funding

  • National Research Foundation
Citations
1,204
FWCI
31.15
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