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Reconfigurable Magnetic Microswarm for Thrombolysis under Ultrasound Imaging

机译:可重构磁微群在超声成像下进行溶栓

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We propose thrombolysis using a magnetic nanoparticle microswarm with tissue plasminogen activator (tPA) under ultrasound imaging. The microswarm is generated in blood using an oscillating magnetic field and can be navigated with locomotion along both the long and short axis. By modulating the input field, the aspect ratio of the microswarm can be reversibly tuned, showing the ability to adapt to different confined environments. Simulation results indicate that both in-plane and out-of-plane fluid convection are induced around the microswarm, which can be further enhanced by tuning the aspect ratio of the microswarm. Under ultrasound imaging, the microswarm is navigated in a microchannel towards a blood clot and deformed to obtain optimal lysis. Experimental results show that the lysis rate reaches -0.1725 ± 0.0612 mm3/min in the 37°C blood environment under the influence of the microswarm-induced fluid convection and tPA. The lysis rate is enhanced 2.5-fold compared to that without the microswarm (-0.0681 ± 0.0263 mm3/min). Our method provides a new strategy to increase the efficiency of thrombolysis by applying microswarm-induced fluid convection, indicating that swarming microanorobots have the potential to act as effective tools towards targeted therapy.
机译:我们建议在超声成像下使用带有组织纤溶酶原激活物(tPA)的磁性纳米微粒微溶栓进行溶栓。微群是使用振荡磁场在血液中生成的,并且可以沿长轴和短轴移动来进行导航。通过调制输入场,可以可逆地调整微群的纵横比,从而显示出适应不同密闭环境的能力。仿真结果表明,在微群周围会引起平面内和平面外的流体对流,这可以通过调整微群的纵横比来进一步增强。在超声成像下,微群在微通道中朝向血凝块导航并变形以获得最佳裂解。实验结果表明,裂解速率达到-0.1725±0.0612 mm 3 在微群诱导的流体对流和tPA的影响下,在37°C的血液环境中的/ min。与没有微团的情况相比,裂解速率提高了2.5倍(-0.0681±0.0263 mm) 3 / min)。我们的方法提供了一种新的策略,通过应用微群诱导的流体对流来提高溶栓效率,这表明成群的微型/纳米机器人有可能充当靶向治疗的有效工具。

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