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利用契伦科夫辐射发光成像技术实现放射化学纯度的可视化和定量分析。

Visualization and Quantification of Radiochemical Purity by Cerenkov Luminescence Imaging.

机构信息

Department of Molecular Medicine, BK21 Plus KNU Biomedical Convergence Program, School of Medicine , Kyungpook National University , Daegu , North Gyeongsang 41944 , Korea.

Molecular Imaging Research Center , Korea Institute of Radiological and Medical Sciences , Seoul 01812 , Korea.

出版信息

Anal Chem. 2018 Aug 7;90(15):8927-8935. doi: 10.1021/acs.analchem.8b01098. Epub 2018 Jul 24.

Abstract

Determination of radiochemical purity is essential for characterization of all radioactive compounds, including clinical radiopharmaceuticals. Radio-thin layer chromatography (radio-TLC) has been used as the gold standard for measurement of radiochemical purity; however, this method has several limitations in terms of sensitivity, spatial resolution, two-dimensional scanning, and quantification accuracy. Here, we report a new analytical technique for determination of radiochemical purity based on Cerenkov luminescence imaging (CLI), whereby entire TLC plates are visualized by detection of Cerenkov radiation. Sixteen routinely used TLC plates were tested in combination with three different radioisotopes (I, I, and P). All TLC plates doped with a fluorescent indicator showed excellent detection sensitivity with scanning times of less than 1 min. The new CLI method was superior to the traditional radio-TLC scanning method in terms of sensitivity, scanning time, spatial resolution, and two-dimensional scanning. The CLI method also showed better quantification features across a wider range of radioactivity values compared with radio-TLC and classical zonal analysis, especially for β-emitters such as I and P.

摘要

放射性化学纯度的测定对于所有放射性化合物的特性描述都是至关重要的,包括临床放射性药物。放射薄层色谱(radio-TLC)已被用作放射性化学纯度测量的金标准;然而,该方法在灵敏度、空间分辨率、二维扫描和定量准确性方面存在一些局限性。在这里,我们报告了一种新的分析技术,用于基于切伦科夫发光成像(CLI)测定放射性化学纯度,通过检测切伦科夫辐射来可视化整个 TLC 板。我们测试了 16 个常用的 TLC 板,并结合了三种不同的放射性同位素(I、I 和 P)。所有掺杂荧光指示剂的 TLC 板在扫描时间小于 1 分钟的情况下显示出优异的检测灵敏度。新的 CLI 方法在灵敏度、扫描时间、空间分辨率和二维扫描方面均优于传统的放射性 TLC 扫描方法。与放射性 TLC 和经典区域分析相比,CLI 方法在更广泛的放射性值范围内具有更好的定量特征,尤其是对于β发射器如 I 和 P。

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