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首页> 外文期刊>Acta biomaterialia >Chitosan microparticles incorporating gold as an enhanced contrast flow tracer in dynamic X-ray imaging.
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Chitosan microparticles incorporating gold as an enhanced contrast flow tracer in dynamic X-ray imaging.

机译:壳聚糖微粒在动态X射线成像中结合了金作为增强的对比流示踪剂。

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In situ monitoring of a biofluid can provide important information on circulatory disorders and a basic understanding on the metabolic mechanisms of living organisms. X-ray imaging has significant advantages as one of the most popular diagnostic tools to seethrough various biological systems. Particle traced velocity field measurement is one of the most popular methods for quantitative analysis of dynamic flow motion. In this study we have developed chitosan microparticles incorporating gold nanoparticles (AuNP) as a new enhanced contrast flow tracer for dynamic X-ray imaging. Gold is a useful material possessing high X-ray absorption ability and also biocompatibility. We chose chitosan as an AuNP delivery system because it can effectively trap AuNPs at high yield. In particular, the unique gold ion reduction ability of and compatibility with surface-modified chitosans are effectively utilized. The physical properties of the Au-chitosan microparticles can be controlled by varying the molecular weight of the chitosan employed and the AuNP incorporation methodology. The environment of the particles and the type of applied X-ray essentially determine the imaging efficiency. The designed chitosan microparticles incorporating Au have been successfully applied to track the digestive mechanisms occurring in delicate insects such as live mosquitoes.
机译:对生物流体的原位监测可以提供有关循环系统疾病的重要信息,以及对生物体代谢机制的基本了解。 X射线成像作为可透视各种生物系统的最受欢迎的诊断工具之一,具有显着的优势。颗粒追踪速度场测量是对动态流运动进行定量分析的最受欢迎的方法之一。在这项研究中,我们已经开发了壳聚糖微粒,其中掺入了金纳米颗粒(AuNP)作为动态X射线成像的新型增强对比流示踪剂。金是具有高的X射线吸收能力和生物相容性的有用材料。我们选择壳聚糖作为AuNP递送系统,因为它可以有效地捕获高产量的AuNP。特别地,有效利用了表面改性的壳聚糖的独特的金离子还​​原能力和与之的相容性。可通过改变所用壳聚糖的分子量和AuNP掺入方法来控制Au-壳聚糖微粒的物理性质。粒子的环境和所施加的X射线类型实质上决定了成像效率。设计的掺有金的壳聚糖微粒已成功应用于跟踪在细小的昆虫(例如活蚊子)中发生的消化机制。

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