Applications of magnetic nanoparticles in biomedicine
Применение магнитных наночастиц в биомедицине
2003-06-19
SCID: 54.1/m3nubc4z
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MRI contrast agentsmagnetic hyperthermiamagnetic nanoparticlesmagnetic separationtargeted drug delivery
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Abstract (AI)
The physical principles underlying some current biomedical applications of magnetic nanoparticles are reviewed. Starting from well-known basic concepts, and drawing on examples from biology and biomedicine, the relevant physics of magnetic materials and their responses to applied magnetic fields are surveyed. The way these properties are controlled and used is illustrated with reference to (i) magnetic separation of labelled cells and other biological entities; (ii) therapeutic drug, gene and radionuclide delivery; (iii) radio frequency methods for the catabolism of tumours via hyperthermia; and (iv) contrast enhancement agents for magnetic resonance imaging applications. Future prospects are also discussed.
Key Findings
1
Magnetic nanoparticle properties can be controlled for separating labeled cells and other biological entities.
2
Magnetic nanoparticles can enhance contrast in magnetic resonance imaging, with future biomedical prospects also considered.
3
Magnetic nanoparticles support targeted delivery of therapeutic drugs, genes, and radionuclides.
4
Radio-frequency excitation of magnetic nanoparticles enables tumor catabolism through hyperthermia.
5
The review explains physical principles governing magnetic nanoparticles and their responses to applied magnetic fields in biomedical settings.
Research Object
Magnetic nanoparticles in biomedical applications
Research Subject
The physical properties of magnetic nanoparticles, their responses to applied magnetic fields, and their biomedical functions in cell separation, therapeutic delivery, tumor hyperthermia, and magnetic resonance imaging contrast enhancement
Publication Details
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2003-06-19
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