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Iron oxide nanoparticle-containing microbubble composites as contrast agents for MR and ultrasound dual-modality imaging.

机译:含氧化铁纳米颗粒的微泡复合材料,作为MR和超声双峰成像的造影剂。

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摘要

Magnetic resonance (MR) and ultrasound (US) imaging are widely used diagnostic modalities for various experimental and clinical applications. In this study, iron oxide nanoparticle-embedded polymeric microbubbles were designed as multi-modal contrast agents for hybrid MR-US imaging. These magnetic nano-in-micro imaging probes were prepared via a one-pot emulsion polymerization to form poly(butyl cyanoacrylate) microbubbles, along with the oil-in-water (O/W) encapsulation of iron oxide nanoparticles in the bubble shell. The nano-in-micro embedding strategy was validated using NMR and electron microscopy. These hybrid imaging agents exhibited strong contrast in US and an increased transversal relaxation rate in MR. Moreover, a significant increase in longitudinal and transversal relaxivities was observed after US-induced bubble destruction, which demonstrated triggerable MR imaging properties. Proof-of-principle in vivo experiments confirmed that these nanoparticle-embedded microbubble composites are suitable contrast agents for both MR and US imaging. In summary, these magnetic nano-in-micro hybrid materials are highly interesting systems for bimodal MR-US imaging, and their enhanced relaxivities upon US-induced destruction recommend them as potential vehicles for MR-guided US-mediated drug and gene delivery.
机译:磁共振(MR)和超声(US)成像是各种实验和临床应用中广泛使用的诊断方式。在这项研究中,嵌入式氧化铁纳米粒子的聚合物微泡被设计为混合MR-US成像的多峰造影剂。这些磁性纳米显微成像探头是通过一锅式乳液聚合反应制备的,以形成聚氰基丙烯酸丁酯微气泡,并将氧化铁纳米颗粒的水包油(O / W)封装在气泡壳中。使用NMR和电子显微镜验证了纳米微嵌入策略。这些混合成像剂在US中显示出强烈的对比度,在MR中显示出增加的横向弛豫率。而且,在US诱导的气泡破坏后,观察到纵向和横向弛豫性显着增加,这证明了可触发的MR成像特性。原理验证的体内实验证实,这些纳米粒子嵌入的微泡复合材料是适用于MR和US成像的造影剂。总之,这些磁性纳米微混合材料是用于双峰MR-US成像的高度有趣的系统,其在US诱导破坏后增强的弛豫性推荐它们作为MR引导的US介导的药物和基因递送的潜在载体。

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