Functionalisation of magnetic nanoparticles for applications in biomedicine

Функционализация магнитных наночастиц для применения в биомедицине
Catherine C. Berry, Adam Curtis
2003-06-19

hyperthermic treatmentiron oxide particlesmagnetic nanoparticlesmagnetic resonance imagingsite-specific drug delivery
Magnetic nanoparticles have been proposed for use as biomedical purposes to a large extent for several years. In recent years, nanotechnology has developed to a stage that makes it possible to produce, characterize and specifically tailor the functional properties of nanoparticles for clinical applications. This has led to various opportunities such as improving the quality of magnetic resonance imaging, hyperthermic treatment for malignant cells, site-specific drug delivery and the manipulation of cell membranes. To this end a variety of iron oxide particles have been synthesized. A common failure in targeted systems is due to the opsonization of the particles on entry into the bloodstream, rendering the particles recognizable by the body's major defence system, the reticulo-endothelial system. This review discusses each of the above bio-applications of such magnetic nanoparticles and details some of the main recent advances in biological research.
1
A major limitation of targeted magnetic nanoparticle systems is opsonization in the bloodstream, which leads to recognition and removal by the reticulo-endothelial system.
2
Iron oxide magnetic nanoparticles have potential applications in improving magnetic resonance imaging, treating malignant cells by hyperthermia, enabling site-specific drug delivery, and manipulating cell membranes.
3
Magnetic nanoparticles can be specifically tailored for clinical biomedical applications through advances in nanotechnology, including production and characterization methods.
4
The review summarizes recent biological advances involving magnetic nanoparticle functionalization across imaging, therapy, drug delivery, and cell-membrane manipulation.

Functionalized iron oxide magnetic nanoparticles for biomedical applications

Their biomedical functional properties, applications, and resistance to opsonization, including MRI enhancement, hyperthermia, site-specific drug delivery, and cell-membrane manipulation

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2003-06-19
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Catherine C. Berry
Adam Curtis
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