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Bismuth Nanoparticles as Medical X-ray Contrast Agents: Synthesis, Characterization and Applications

机译:铋纳米粒子作为医用X射线造影剂:合成,表征和应用

摘要

Bismuth based nanomaterials have recently attracted attention as heavy element X-ray contrast agents because of the high atomic number and predicted biological compatibility of bismuth. Nanoparticle X-ray contrast agents may enable a number of novel medical imaging applications, including blood pool and site-directed imaging. However these hypothetical applications are hindered by lack of suitable synthetic methods for production of imaging agents. This dissertation describes synthesis of a novel class of bismuth nanoparticles that are aqueously stabilized using poly and monosaccharides. These particles are synthesized using highly biologically compatible reagents and are oxidatively stable in water and in moderately basic buffered solutions. Bismuth nanoparticles stabilized by the polysaccharide dextran have a large hydrodynamic radius and a relatively small bismuth nanocrystal core (4% bismuth by volume.) Glucose-capped particles have a much higher ratio of bismuth by volume (u3e60%), and experimental CT scans of these particle solutions demonstrate higher X-ray contrast versus a current clinically used radiocontrast agent. Additional syntheses of hydrophobic organoamine-capped bismuth nanoparticles by reduction of an iodobismuth cluster, and development of other X-ray contrast materials, such as a radiopaque surgical sponge marker and ink, using bismuth micoparticles produced by a top-down ball milling method, are also described.
机译:铋基纳米材料作为重元素X射线造影剂最近因其高原子序数和铋的预期生物相容性而受到关注。纳米粒子X射线造影剂可以实现许多新颖的医学成像应用,包括血池和定点成像。然而,这些假设的应用由于缺乏合适的合成方法来生产显像剂而受到阻碍。本文介绍了一种新型的铋纳米粒子的合成,该纳米粒子可以使用多糖和单糖进行水稳定。这些颗粒是使用高度生物相容的试剂合成的,在水中和中等碱性的缓冲溶液中具有氧化稳定性。多糖葡聚糖稳定的铋纳米粒子具有较大的流体动力学半径,并且具有相对较小的铋纳米晶核(按体积计为4%的铋)。葡萄糖封端的粒子按体积计的铋比例要高得多( u3e60%),并且需要进行实验性CT扫描与目前临床上使用的造影剂相比,这些颗粒溶液中的5%具有更高的X射线对比度。通过还原碘铋团簇以及使用自顶向下球磨法生产的铋微颗粒,开发其他疏水性有机胺封端的铋纳米颗粒,以及开发其他X射线对比材料,例如不透射线的手术海绵标记和墨水。也有描述。

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    Brown Anna Laura;

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  • 年度 2013
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