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Magnetic Heating of Iron Oxide Nanoparticles and Magnetic Micelles for Cancer Therapy

机译:磁性加热的氧化铁纳米粒子和胶束的癌症治疗。

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The inclusion of magnetic nanoparticles into block copolymer micelles was studied towards the development of a targeted, magnetically triggered drug delivery system for cancer therapy. Herein, we report the synthesis of magnetic nanoparticles and poly(ethylene glycol-b-caprolactone) block copolymers, and experimental verification of magnetic heating of the nanoparticles, self-assembly of the block copolymers to form magnetic micelles, and thermally-enhanced drug release. The semicrystalline core of the micelles melted at temperatures just above physiological conditions, indicating that they could be used to release a chemotherapy agent from a thermoresponsive polymer system. The magnetic nanoparticles were shown to heat effectively in high frequency magnetic fields ranging from 30–70 kA/m. Magnetic micelles also showed heating properties, that when combined with a chemotherapeutic agent and a targeting ligand could be developed for localized, triggered drug delivery. During the magnetic heating experiments, a time lag was observed in the temperature profile for magnetic micelles, likely due to the heat of fusion of melting of polycaprolactone micelle cores before bulk solution temperatures increased. Doxorubicin, incorporated into the micelles, released faster when the micelles were heated above the core melting point.
机译:研究了将磁性纳米粒子包含在嵌段共聚物胶束中,以开发用于癌症治疗的靶向,磁性触发的药物递送系统。在这里,我们报告磁性纳米粒子和聚(乙二醇-b-己内酯)嵌段共聚物的合成,以及纳米粒子的磁性加热,嵌段共聚物的自组装形成磁性胶束和热增强药物释放的实验验证。胶束的半晶核在刚好高于生理条件的温度下熔化,表明它们可用于从热响应性聚合物系统中释放化学治疗剂。磁性纳米颗粒在30-70 kA / m的高频磁场中有效加热。电磁胶束还显示出加热特性,当与化学治疗剂和靶向配体结合使用时,可以开发出用于局部触发药物递送的特性。在磁加热实验中,在磁胶束的温度曲线中观察到时间滞后,这可能是由于在本体溶液温度升高之前聚己内酯胶束核的熔化热所致。当胶束加热到核心熔点以上时,掺入胶束的阿霉素会更快地释放。

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