Clinical applications of magnetic nanoparticles for hyperthermia
Клиническое применение магнитных наночастиц для гипертермии
2008-01-01
SCID: 54.1/mnmhzmpb
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alternating magnetic fieldcancer treatmentclinical trialsmagnetic fluid hyperthermiamagnetic nanoparticles
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Abstract (AI)
Magnetic fluids are increasingly used for clinical applications such as drug delivery, magnetic resonance imaging and magnetic fluid hyperthermia. The latter technique that has been developed as a cancer treatment for several decades comprises the injection of magnetic nanoparticles into tumors and their subsequent heating in an alternating magnetic field. Depending on the applied temperature and the duration of heating this treatment either results in direct tumor cell killing or makes the cells more susceptible to concomitant radio- or chemotherapy. Numerous groups are working in this field worldwide, but only one approach has been tested in clinical trials so far. Here, we summarize the clinical data gained in these studies on magnetic fluid induced hyperthermia.
Key Findings
1
Although many groups worldwide study magnetic fluid hyperthermia, only one approach had undergone clinical trials at the time of review.
2
Magnetic fluid hyperthermia treats cancer by injecting magnetic nanoparticles into tumors and heating them with an alternating magnetic field.
3
Magnetic fluids also have clinical applications in drug delivery and magnetic resonance imaging.
4
The paper summarizes clinical data from studies evaluating magnetic fluid-induced hyperthermia.
5
Treatment effects depend on heating temperature and duration, causing either direct tumor-cell killing or increased sensitivity to radio- and chemotherapy.
Research Object
magnetic fluid-induced hyperthermia using magnetic nanoparticles injected into tumors
Research Subject
clinical efficacy and treatment outcomes of tumor heating in an alternating magnetic field, including direct tumor-cell killing and sensitization to radio- or chemotherapy
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2008-01-01
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