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A Library of Potential Nanoparticle Contrast Agents for X-Ray Fluorescence Tomography Bioimaging

机译:用于X射线荧光层析成像生物成像的潜在纳米粒子造影剂库

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摘要

Nanoparticles (NPs) have been used as contrast agents for several bioimaging modalities. X-ray fluorescence (XRF) tomography can provide sensitive and quantitative 3D detection of NPs. With spectrally matched NPs as contrast agents, we demonstrated earlier in a laboratory system that XRF tomography could achieve high-spatial-resolution tumor imaging in mice. Here, we present the synthesis, characterization, and evaluation of a library of NPs containing Y, Zr, Nb, Rh, and Ru that have spectrally matched K-shell absorption for the laboratory scale X-ray source. The K-shell emissions of these NPs are spectrally well separated from the X-ray probe and the Compton background, making them suitable for the lab-scale XRF tomography system. Their potential as XRF contrast agents is demonstrated successfully in a small-animal equivalent phantom, confirming the simulation results. The diversity in the NP composition provides a flexible platform for a better design and biological optimization of XRF tomography nanoprobes.
机译:纳米颗粒(NPs)已被用作几种生物成像方式的造影剂。 X射线荧光(XRF)断层扫描可以提供NPs的灵敏和定量3D检测。使用光谱匹配的NP作为造影剂,我们在实验室系统中更早地证明XRF断层扫描可以在小鼠中实现高空间分辨率的肿瘤成像。在这里,我们介绍了包含Y,Zr,Nb,Rh和Ru的NPs的合成,表征和评估,这些NPs在实验室规模的X射线源上具有与K壳吸收光谱匹配的特征。这些NP的K壳发射光谱与X射线探头和Compton背景在光谱上很好地分开,使其适合于实验室规模的XRF层析成像系统。在小动物等效体模中成功证明了它们作为XRF造影剂的潜力,从而证实了模拟结果。 NP组成的多样性为XRF层析成像纳米探针的更好设计和生物学优化提供了灵活的平台。

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