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Study of cobalt ferrite nanosuspensions for low-frequency ferromagnetic hyperthermia 被引量:1

Study of cobalt ferrite nanosuspensions for low-frequency ferromagnetic hyperthermia
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摘要 High-coercive cobalt ferrite nanoparticles were synthesized and studied for magnetic hyperthermia by direct injection of their suspension into a tumor and application of a strong audio-frequency magnetic field for heating. Physical (dynamic magnetic hysteresis and heat generation in both liquid and solid dispersions), biological (toxicity and penetration of particles in therapeutic quantities into mouse tumor tissue) as well as other properties of the particles were studied. A model was developed to describe the magnetodynamics in suspensions of magnetic nanoclusters with an account for both Brownian and regular rotations, to provide understanding of observed phenomena. The experimental and theoretical techniques developed have formed a basis for controllable synthesis of the magnetic nanoparticles for low-frequency heat generation in medical and other applications. High-coercive cobalt ferrite nanoparticles were synthesized and studied for magnetic hyperthermia by direct injection of their suspension into a tumor and application of a strong audio-frequency magnetic field for heating. Physical (dynamic magnetic hysteresis and heat generation in both liquid and solid dispersions), biological (toxicity and penetration of particles in therapeutic quantities into mouse tumor tissue) as well as other properties of the particles were studied. A model was developed to describe the magnetodynamics in suspensions of magnetic nanoclusters with an account for both Brownian and regular rotations, to provide understanding of observed phenomena. The experimental and theoretical techniques developed have formed a basis for controllable synthesis of the magnetic nanoparticles for low-frequency heat generation in medical and other applications.
出处 《Particuology》 SCIE EI CAS CSCD 2008年第5期322-333,共12页 颗粒学报(英文版)
基金 the Belaru-sian Republican Foundation of Fundamental Research (Joint Belarusian-Russian Project T06P-162)
关键词 Cobalt ferrite nanoparticles Magnetic suspensions Dynamic magnetic hysteresis Medical hyperthermia Cobalt ferrite nanoparticles Magnetic suspensions Dynamic magnetic hysteresis Medical hyperthermia
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