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Ultrasound Imaging Based on Magnetic Lipid Microbubble Contrast Agent with Fe3O4 Nanoparticles

机译:基于Fe3O4纳米颗粒的磁性脂质微泡造影剂的超声成像

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To construct magnetic microbubbles with dual response characteristics of ultrasound and magnetic field. The surfactant-based microbubble ultrasound contrast agent (ST68) was prepared using acoustic cavitation. Magnetic Fe3O4 nanoparticles having a negative charge on the surface were prepared by the polyol method. The microbubbles were used as the template, and the magnetic microbubbles were prepared by alternating deposition of polyethyleneimine and magnetic Fe3O4 nanoparticles on the surface of microbubbles using electrostatic attraction for a layer-by-layer self assembly. An in vitro ultrasound contrast device was set up to compare the ultrasound images of the silicone tube in the device before and after the injection of human magnetic microbubbles (3 x 10/M), and to observe the movement of the magnetic microbubbles after the magnetic field was applied to the silicone tube. To evaluate the contrast effect of magnetic microbubbles in vivo, we compared the renal ultrasound images of New Zealand white rabbits before and after injection of human magnetic microbubbles. The surface of Fe3O4 nanoparticles displayed a stable negative charge (-24.6 +/- 67 mV). More than 98% of the assembled magnetic microbubbles were smaller than 8 which met the basic size requirement for an ultrasound contrast agent. There was no echo signal in the silicone tube before the injection of magnetic microbubbles. Following injection, a solid echo was detected in the silicone tube. After the application of the magnetic field, the magnetic microbubbles migrated in the direction of magnetic field. Contrast-enhanced ultrasound did not image the kidney before the injection of magnetic microbubbles, while the kidney shadow was clear following injection. Magnetic targeted microbubbles and contrast-enhanced ultrasound provide good imaging, which lays the foundation for further studies of magnetic targeted microbubble contrast agents in diagnosis and treatment.
机译:为了构建与超声和磁场的双重响应特性磁性微泡。所述表面活性剂基的微泡的超声造影剂(ST68)使用声空化制备。通过多元醇方法制备具有表面上的负电荷磁性纳米Fe3O4。微泡被用作模板,并且通过使用静电吸引力的层 - 层自组装微泡的表面上交替的聚亚乙基亚胺和磁性纳米Fe3O4的沉积制备的磁性微泡。体外超声造影设备成立之前和人类磁性微泡后注入到该装置中的硅树脂管的超声图像进行比较(3×10 / M),和磁性后,观察磁性微泡的运动场施加到硅树脂管。为了评估在体内的磁性微泡的对比效果,我们之前和人类磁性微泡注射后相比,新西兰白兔的肾超声图像。四氧化三铁纳米颗粒的表面上显示的稳定负电荷(-24.6 +/- 67毫伏)。组装的磁性微泡的98%以上是小于8,其符合基本尺寸要求的用于超声造影剂。有磁性微泡的喷射之前在硅树脂管无回声信号。注射后,在硅树脂管中检测到了坚实的回声。磁场的施加后,将微泡磁性迁移在磁场的方向。超声造影没有像肾脏磁性微注射前,而肾阴影注射后是显而易见的。磁靶向微泡超声造影提供良好的成像,这奠定了诊断和治疗的磁性定向的微泡造影剂的进一步研究奠定了基础。

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