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Superparamagnetic iron oxide nanoparticle-embedded encapsulated microbubbles as dual contrast agents of magnetic resonance and ultrasound imaging.

机译:嵌入超顺磁性氧化铁纳米粒子的封装微泡,作为磁共振和超声成像的双重造影剂。

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摘要

An encapsulated microbubble (EMB) of a novel construct is proposed to enhance the magnetic resonance imaging contrast by introducing superparamagnetic iron oxide (SPIO) nanoparticles (mean diameter is 12 nm) into the polymer shell of the microbubble. Such microbubble vesicle has nitrogen gas in the core and its mean diameter is 3.98 microm. An in vitro MR susceptibility experiment using a phantom consisting EMBs has shown that the relationship between the transverse relaxation rate R(2) and the Fe(3)O(4) nanoparticle concentration in the shell (the volume fraction of EMBs is kept constant) can be fitted to a linear function and an exponentially growth function is observed between R(2) and the SPIO-inclusion microbubble concentration. The in vivo MRI experiments also show that the SPIO-inclusion microbubbles have longer contrast-enhancement duration time in rat liver than non-SPIO-inclusion microbubbles. An in vitro ultrasound imaging experiment of SPIO-inclusion microbubbles also shows that they can enhance the ultrasound contrast significantly. Additionally, the interaction between the SPIO-inclusion microbubbles and cells indicates that such microbubble construct can retain the acoustic property under the ultrasound exposure by controlling the SPIO concentration in the shell. Therefore, the proposed SPIO nanoparticle-embedded EMBs potentially can become effective MR susceptibility contrast agents while also can be good US contrast agents.
机译:通过将超顺磁性氧化铁(SPIO)纳米粒子(平均直径为12 nm)引入微泡的聚合物壳中,提出了一种新型结构的微泡(EMB),以增强磁共振成像的对比度。这种微泡囊在核心中具有氮气,并且其平均直径为3.98微米。使用幻像组成的EMB进行的体外MR敏感性实验表明,壳中的横向弛豫速率R(2)和Fe(3)O(4)纳米颗粒浓度之间的关系(EMB的体积分数保持恒定)可以拟合为线性函数,并且在R(2)和SPIO包含微泡浓度之间观察到指数增长函数。体内MRI实验还显示,与不含SPIO的微泡相比,包含SPIO的微泡在大鼠肝脏中的造影剂增强持续时间更长。包含SPIO的微泡的体外超声成像实验还表明,它们可以显着增强超声对比度。另外,包含SPIO的微泡与细胞之间的相互作用表明,通过控制壳中的SPIO浓度,这种微泡构造体可以在超声暴露下保持声学特性。因此,建议的SPIO纳米粒子嵌入的EMBs可能会成为有效的MR敏感性对比剂,同时也可能是好的US对比剂。

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