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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Acoustic Energy Controlled Nanoparticle Aggregation for Nanotherapy
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Acoustic Energy Controlled Nanoparticle Aggregation for Nanotherapy

机译:纳米疗法的声能量控制纳米粒子聚集

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Patients with unresectable or nonablatable tumors are difficult to cure, but nanotherapy combining targeted nanoparticles has many severe side effects due to the toxicities of anticancer drugs. We found that acoustic energy can produce a local region with high concentration from a low concentration suspended liquid of nano-SiO2 particles at 2.5 MHz. Our calculated results show that the main reason for aggregation is the synthesized effect of the potential well of acoustic energy and streaming to trap them. In addition, the aggregated region can be manipulated to a targeted position in the vessel phantom by moving the ultrasound transducer external to the body. This noninvasive manipulation of suspended nanoparticles can rapidly increase the local drug concentration, but reduce the total dosage of anticancer drugs, which has the potential to be used for patients with advanced tumors by improving the physiological effects and reducing the side effects.
机译:患者难以治愈,但纳米疗法组合靶向纳米颗粒具有许多严重的副作用,由于抗癌药物的毒性。我们发现声能可以在2.5MHz的低浓度悬浮液中产生高浓度的局部区域。我们的计算结果表明,聚集的主要原因是声能量和流动的潜在井的合成效果,以捕获它们。另外,通过将外部换能器移动到身体外部的超声换能器,可以将聚集区域操纵到血管体模的目标位置。这种非侵入式操纵悬浮的纳米颗粒可以迅速增加局部药物浓度,但通过改善生理效果并降低副作用,降低抗癌药物的总剂量,这具有可用于患有晚期肿瘤的患者。

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