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(07B306) Enhancing cancer therapeutics using size-optimized magnetic fluid hyperthermia

机译:(07b306)使用尺寸优化的磁性流体热疗增强癌症治疗剂

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Magnetic fluid hyperthermia (MFH) employs heat dissipation from magnetic nanoparticles to elicit a therapeutic outcome in tumor sites, which results in either cell death (>42°C) or damage (<42 °C) depending on the localized rise in temperature. We investigated the therapeutic effect of MFH in immortalized T lymphocyte (Jurkat) cells using monodisperse magnetite (Fe_3O_4) nanoparticles (MNPs) synthesized in organic solvents and subsequently transferred to aqueous phase using a biocompatible amphiphilic polymer. Monodisperse MNPs, ~16 nm diameter, show maximum heating efficiency, or specific loss power (watts/g Fe_3O_4) in a 373 kHz alternating magnetic field. Our in vitro results, for 15 min of heating, show that only 40% of cells survive for a relatively low dose (490 μg Fe/ml) of these size-optimized MNPs, compared to 80% and 90% survival fraction for 12 and 13 nm MNPs at 600 μg Fe/ml. The significant decrease in cell viability due to MNP-induced hyperthermia from only size-optimized nanoparticles demonstrates the central idea of tailoring size for a specific frequency in order to intrinsically improve the therapeutic potency of MFH by optimizing both dose and time of application.
机译:磁性流体热疗(MFH)采用磁性纳米颗粒的散热,以引发肿瘤部位的治疗结果,这导致细胞死亡(> 42℃)或损伤(<42℃),这取决于局部温度升高。我们研究了MFH的在使用单分散磁铁矿(Fe_3O_4)纳米颗粒(的MNP)在有机溶剂中合成,并随后使用生物相容的两亲性聚合物转移至水相的永生化T淋巴细胞(的Jurkat)细胞的治疗效果。单分散MNP,直径〜16nm,显示373kHz交流磁场中的最大加热效率,或特定的损耗功率(Watts / g Fe_3O_4)。我们的体外结果为15分钟加热,表明,只有40%的细胞对这些尺寸优化的MNP的相对低剂量(490μgFE/ mL)存活,而12和12的80%和90%的存活率相比。在600μgfe / ml的13 nm mnps。由于大小优化的纳米粒子的MNP诱导的热疗导致的细胞活力显着降低证明了特定频率剪裁大小的中心概念,以便通过优化施用剂量和时间来本地提高MFH的治疗效力。

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