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Numerical simulation of synergistic interaction of magnetic hyperthermia and intraperitoneal delivery of temperature-sensitive liposomes

机译:磁体热疗协同相互作用的数值模拟,腹腔内递送温度敏感脂质体

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The efficacy of intraperitoneal chemotherapy (IPC) can be significantly enhanced by a temperature-sensitive liposomes (TSLs) administration. Magnetic hyperthermia (MHT) has the potential to provide sufficient heat for TSLs to release their contents. For the first time, we used computational modeling to simulate MHT combined with intraperitoneal (IP) delivery of doxorubicin-loaded temperature-sensitive liposomes (TSL-Dox). Results indicate that this combination therapy can improve treatment efficacy. The results also indicate that using large and octahedral MNPs can increase drug penetration by ten folds against normal IPC.
机译:通过温度敏感的脂质体(TSL)给药,可以显着提高腹膜内化疗(IPC)的功效。磁体热疗(MHT)有可能为TSL提供足够的热量以释放它们的内容物。我们首次使用计算建模来模拟MHT与腹腔内(IP)递送多柔比蛋白加载的温敏性脂质体(TSL-DOX)。结果表明,这种联合治疗可以改善治疗效果。结果还表明,使用大型和八面体MNP可以将药物渗透率增加10折来对抗正常IPC。

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