Progress in applications of magnetic nanoparticles in biomedicine
Прогресс в применении магнитных наночастиц в биомедицине
2009-11-05
SCID: 54.1/jtemctcc
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magnetic actuationmagnetic hyperthermiamagnetic nanoparticlesmagnetic particle imagingmagnetic resonance imaging contrast agents
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Abstract (AI)
A progress report is presented on a selection of scientific, technological and commercial advances in the biomedical applications of magnetic nanoparticles since 2003. Particular attention is paid to (i) magnetic actuation for in vitro non-viral transfection and tissue engineering and in vivo drug delivery and gene therapy, (ii) recent clinical results for magnetic hyperthermia treatments of brain and prostate cancer via direct injection, and continuing efforts to develop new agents suitable for targeted hyperthermia following intravenous injection and (iii) developments in medical sensing technologies involving a new generation of magnetic resonance imaging contrast agents, and the invention of magnetic particle imaging as a new modality. Ongoing prospects are also discussed.
Key Findings
1
Clinical results demonstrate magnetic hyperthermia applications for brain and prostate cancer treatment following direct nanoparticle injection.
2
Magnetic actuation enables in vitro non-viral transfection and tissue engineering, as well as in vivo drug delivery and gene therapy.
3
Magnetic nanoparticles have advanced substantially since 2003 across scientific, technological, and commercial biomedical applications.
4
Magnetic sensing technologies have progressed through new MRI contrast agents and the invention of magnetic particle imaging as a new modality.
5
Research continues on magnetic agents suitable for targeted hyperthermia after intravenous administration.
Research Object
Magnetic nanoparticles in biomedical applications
Research Subject
Scientific, technological, commercial, and clinical advances in magnetic actuation, drug delivery and gene therapy, magnetic hyperthermia, and medical sensing technologies involving magnetic nanoparticles
Publication Details
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2009-11-05
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