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Effect of Gold Nanoparticle Size on Their Properties as Contrast Agents for Computed Tomography

机译:金纳米粒子尺寸对计算机断层扫描的造影剂的性质

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Computed tomography (CT) is one of the most commonly used clinical imaging modalities. There have recently been many reports of novel contrast agents for CT imaging. In particular, the development of gold nanoparticles (AuNP) as CT contrast agents is a topic of intense interest. AuNP have favorable characteristics for this application such as high payloads of contrast generating material, strong X-ray attenuation, excellent biocompatibility, tailorable surface chemistry, and tunable sizes and shapes. However, there have been conflicting reports on the role of AuNP size on their contrast generation for CT. We therefore sought to extensively investigate the AuNP size-CT contrast relationship. In order to do this, we synthesized AuNP with sizes ranging from 4 to 152?nm and capped them with 5 kDa m-PEG. The contrast generation of AuNP of different sizes was investigated with three clinical CT, a spectral photon counting CT (SPCCT) and two micro CT systems. X-ray attenuation was quantified as attenuation rate in Hounsfield units per unit concentration (HU/mM). No statistically significant difference in CT contrast generation was found among different AuNP sizes via phantom imaging with any of the systems tested. Furthermore, in vivo imaging was performed in mice to provide insight into the effect of AuNP size on animal biodistribution at CT dose levels, which has not previously been explored. Both in vivo imaging and ex vivo analysis with inductively coupled plasma optical emission spectroscopy (ICP-OES) indicated that AuNP that are 15?nm or smaller have long blood circulation times, while larger AuNP accumulated in the liver and spleen more rapidly. Therefore, while we observed no AuNP size effect on CT contrast generation, there is a significant effect of size on AuNP diagnostic utility.
机译:计算机断层扫描(CT)是最常用的临床成像方式之一。最近有许多关于CT成像的新型造影剂的报道。特别地,作为CT造影剂的金纳米颗粒(AUNP)的发展是一种强烈兴趣的主题。 AUNP具有良好的特性,适用于本申请,例如对比产生材料的高有效载荷,强X射线衰减,优异的生物相容性,可定制的表面化学和可调谐尺寸和形状。但是,关于AUNP规模对CT对比生成的作用存在矛盾的报告。因此,我们寻求广泛调查AUNP大小-CT对比关系。为此,我们合成了尺寸范围为4至152Ω·NM的AUNP,并用5 kda m-peg盖住它们。用三个临床CT,一种光谱光子计数CT(SPCCT)和两种微型CT系统研究了不同尺寸的αUNP的对比产生。 X射线衰减量被定量为每单位浓度(HU / MM)的Hounsfield单元中的衰减率。在不同的AUNP尺寸通过与测试的任何系统的幻影成像不同,在不同的AUNP尺寸中没有发现CT造影生成的统计学意义。此外,在小鼠中进行体内成像,以便在尚未探索的CT剂量水平上提供对AUNP大小对动物生物分布的影响的洞察力。具有电感耦合等离子体光发射光谱(ICP-OES)的体内成像和离体分析表明,AUNP为15?NM或更小的长血液循环时间,而较大的AUNP在肝脏中累积,脾脏更快。因此,虽然我们观察到没有对CT造影生成的AUNP大小的影响,但对AUNP诊断效用具有显着影响。

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