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Ferrimagnetic Nanoparticles Enhance Microwave Heating for Tumor Hyperthermia Therapy

机译:亚尾纳米粒子增强微波加热用于肿瘤热疗治疗

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Localized tumor hyperthermia therapy has been intensively studied for the past three decades. One engineering limitation has been the difficulty of specifically targeting cancerous tissues in the normal tissue surroundings. Recent attention has turned to the deposition of nanoparticles in the tumor to enhance heating relative to its surroundings. The work in magnetic nanoparticles has focused on resonant hysteresis loop heating in the 100 to 300 kHz range, where that mechanism dominates - however extremely high magnetic field strengths are required to realize an advantage, up to 10~5 (A/m). We introduce experimental evidence that substantial advantages in heating can also be obtained at the microwave ISM frequency of 2.45 GHz when γ-hematite (Fe_2O_3) is dispersed in media at concentrations on the order of 10~(12) particles/mL.
机译:在过去的三十年里,局部肿瘤热疗治疗已经集中研究。一种工程限制一直是特别靶向正常组织周围癌组织的难度。最近的关注转向肿瘤中纳米颗粒的沉积,以增强相对于周围环境的加热。磁性纳米粒子的作品集中于在100至300kHz范围内的共振滞后环加热,其中该机构主导 - 然而,需要极高的磁场强度来实现优势,最高可达10〜5(A / M)。我们引入实验证据,即加热的显着优势也可以在2.45GHz的微波ISM频率下获得,当γ-赤铁矿(Fe_2O_3)以10〜(12)颗粒/ mL的浓度为浓度的培养基中。

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