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Dextran coated bismuth-iron oxide nanohybrid contrast agents for computed tomography and magnetic resonance imaging

机译:右旋糖酐涂覆的氧化铁铋纳米混合造影剂用于计算机断层扫描和磁共振成像

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摘要

Bismuth nanoparticles have been proposed as a novel CT contrast agent, however few syntheses of biocompatible bismuth nanoparticles have been achieved. We herein report the synthesis of composite bismuth-iron oxide nanoparticles (BION) that are based on a clinically approved, dextran-coated iron oxide formulation; the particles have the advantage of acting as contrast agents for both CT and MRI. BION were synthesized and characterized using various analytical methods. BION CT phantom images revealed that the X-ray attenuation of the different formulations was dependent upon the amount of bismuth present in the nanoparticle, while T2-weighted MRI contrast decreased with increasing bismuth content. No cytotoxicity was observed in Hep G2 and BJ5ta cells after 24 hours incubation with BION. The above properties, as well as the yield of synthesis and bismuth inclusion efficiency, led us to select the Bi-30 formulation for in vivo experiments, performed in mice using a micro-CT and a 9.4 T MRI system. X-ray contrast was observed in the heart and blood vessels over a 2 hour period, indicating that Bi-30 has a prolonged circulation half-life. Considerable signal loss in T2-weighted MR images was observed in the liver compared to pre-injection scans. Evaluation of the biodistribution of Bi-30 revealed that bismuth is excreted via the urine, with significant concentrations found in the kidneys and urine. In vitro experiments confirmed the degradability of Bi-30. In summary, dextran coated BION are biocompatible, biodegradable, possess strong X-ray attenuation properties and also can be used as T2-weighted MR contrast agents.
机译:铋纳米颗粒已经被提出作为新型的CT造影剂,但是几乎没有生物相容性铋纳米颗粒的合成。我们在此报告了基于临床批准的葡聚糖包被的氧化铁制剂的复合铋-氧化铁纳米颗粒(BION)的合成;颗粒具有充当CT和MRI造影剂的优势。使用各种分析方法合成并表征了BION。 BION CT体模图像显示,不同制剂的X射线衰减取决于纳米粒子中铋的含量,而T2加权MRI对比度随铋含量的增加而降低。与BION孵育24小时后,在Hep G2和BJ5ta细胞中未观察到细胞毒性。上述特性以及合成的收率和铋的包容效率,使我们选择了Bi-30制剂进行体内实验,该实验是使用micro-CT和9.4 T MRI系统在小鼠中进行的。在2小时的时间内在心脏和血管中观察到X射线对比,表明Bi-30具有延长的循环半衰期。与注射前扫描相比,在肝脏的T2加权MR图像中观察到了相当大的信号损失。对Bi-30的生物分布的评估表明,铋是通过尿液排出的,在肾脏和尿液中的浓度很高。体外实验证实了Bi-30的可降解性。总之,右旋糖酐涂覆的BION具有生物相容性,可生物降解性,具有强大的X射线衰减特性,也可用作T2加权MR造影剂。

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