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Photothermal Effect of Superparamagnetic Fe3O4 Nanoparticles Irradiated by Near-Infrared Laser

机译:近红外激光照射超顺磁Fe3O4纳米粒子的光热效应

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摘要

Fe3O4 nanoparticles (NPs) have been widely used in biomedicine due to their unique magnetism, biocompatibility, and biodegradability. Magnetic hyperthermia of Fe3O4 NPs for cancer treatment has attracted more attention. However, it could interfere with magnetic field-sensitive devices of patients, such as pacemakers. Therefore, it is necessary to find a new method for clinical therapy. In this study, the superparamagnetic Fe3O4 NPs were fabricated. Visible-near-infrared absorption spectra indicated that the Fe3O4 NPs have near-infrared absorption. The influences of Fe3O4 NP concentrations, power density, and wavelength of near-infrared laser irradiation on the photothermal performance of Fe3O4 NPs were investigated. The results revealed that high concentrations, large power density, and short irradiation wavelength could improve the photothermal performance of Fe3O4 NPs. The temperature variation and the absorption intensity simultaneously determined the photothermal transduction efficiency of Fe3O4 NPs. The application of the photothermal performance of Fe3O4 NPs would provide a new opportunity for clinic cancer treatment.
机译:由于其独特的磁,生物相容性和生物降解性,Fe3O4纳米颗粒(NPS)已广泛用于生物医学中。癌症治疗的Fe3O4 NPS的磁体热疗引起了更多的关注。然而,它可能干扰患者的磁场敏感装置,例如起搏器。因此,有必要找到一种临床治疗方法。在这项研究中,制造了超顺磁Fe3O4 NPS。可见近红外吸收光谱表明Fe3O4 NPS具有近红外吸收。研究了Fe3O4 NP浓度,功率密度和波长对近红外激光照射对Fe3O4NP的光热性能的影响。结果表明,高浓度,大功率密度和短照射波长可以提高Fe3O4 NPS的光热性能。温度变化和吸收强度同时确定Fe3O4 NPS的光热转导效率。 Fe3O4 NPS的光热性能的应用将为临床癌症治疗提供新的机会。

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