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Superparamagnetic Iron Oxide Nanoparticles—Current and Prospective Medical Applications

Materials · 2019 · Vol. 12(4) · pp. 617–617
Joanna Dulińska-LitewkaAgnieszka ŁazarczykPrzemysław HałubiecOskar SzafrańskiKarolina KarnasAnna Karewicz

Abstract

The recent, fast development of nanotechnology is reflected in the medical sciences. Superparamagnetic Iron Oxide Nanoparticles (SPIONs) are an excellent example. Thanks to their superparamagnetic properties, SPIONs have found application in Magnetic Resonance Imaging (MRI) and magnetic hyperthermia. Unlike bulk iron, SPIONs do not have remnant magnetization in the absence of the external magnetic field; therefore, a precise remote control over their action is possible. This makes them also useful as a component of the advanced drug delivery systems. Due to their easy synthesis, biocompatibility, multifunctionality, and possibility of further surface modification with various chemical agents, SPIONs could support many fields of medicine. SPIONs have also some disadvantages, such as their high uptake by macrophages. Nevertheless, based on the ongoing studies, they seem to be very promising in oncological therapy (especially in the brain, breast, prostate, and pancreatic tumors). The main goal of our paper is, therefore, to present the basic properties of SPIONs, to discuss their current role in medicine, and to review their applications in order to inspire future developments of new, improved SPION systems.

Nanoparticle-Based Drug DeliveryCharacterization and Applications of Magnetic NanoparticlesMicrofluidic and Bio-sensing TechnologiesNanotechnologySuperparamagnetismBiocompatibilityMaterials scienceMagnetic hyperthermiaDrug deliveryMagnetic resonance imagingIron oxide nanoparticlesNanoparticleMagnetic nanoparticles

Funding

  • Uniwersytet Jagielloński Collegium Medicum
Citations
550
FWCI
25.36
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References
125
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100%
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References
Aptamers and Their Biological Applications
Sensors · 2012 · 806 citations
Nanocarriers’ entry into the cell: relevance to drug delivery
Cellular and Molecular Life Sciences · 2009 · 1,482 citations
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