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用于检测99Tc(m)-替曲膦放射化学纯度的快速质量控制

Rapid quality control for testing the radiochemical purity of 99Tc(m)-tetrofosmin.

作者信息

Métayé T, Desmarquet M, Rosenberg T, Guilhot J, Bouin-Pineau M H

机构信息

Department of Nuclear Medicine, Hôpital Jean Bernard, Poitiers Cedex, France.

出版信息

Nucl Med Commun. 2001 Oct;22(10):1139-44. doi: 10.1097/00006231-200110000-00014.

Abstract

We describe a new thin-layer chromatography (TLC) method to evaluate the radiochemical purity of 99Tc(m)-tetrofosmin without the drawbacks of toxicity, solvent ratios and time requirement associated with the standard TLC method. The new method uses miniaturized instant TLC plates impregnated with silica gel (ITLCTM/SG, 2.5 x 10 cm) for the stationary phase and 2-butanone for the mobile phase. The standard TLC method was performed with ITLCTM/SG plates (5 x 20 cm) and dichloromethane/acetone (65:35, v/v). Thirty five preparations were analysed by both methods with a storage phosphor imaging system to determine the percentages of hydrolyzed-reduced 99Tc(m) compound (99Tc(m)O2), 99Tc(m)-tetrofosmin and free 99Tc(m)-pertechnetate (99Tc(m)O4(-)). Using the miniaturized TLC method, 99Tc(m)-tetrofosmin had a mean Rf value of 0.55 (standard deviation, 0.05), while 99Tc(m)O4(-) migrated with the solvent front (Rf=1) and 99Tc(m)O2 remained at the origin of the strips (Rf=0). No significant difference was found between miniaturized and standard TLC methods for the radiochemical purity of 99Tc(m)-tetrofosmin using the Wilcoxon matched-pair signed-rank test (P=0.82). Furthermore, the two methods showed a good correlation as measured by the Spearman rank coefficient (r=0.89) and were in perfect agreement, with a kappa index of +1, for a cut-point between positive and negative set at 90%. In conclusion, the results indicate that the miniaturized TLC method is effective for the routine evaluation of the radiochemical purity of 99Tc(m)-tetrofosmin, without some of the drawbacks of the standard method.

摘要

我们描述了一种新的薄层色谱(TLC)方法,用于评估99Tc(m)-替曲膦的放射化学纯度,该方法没有与标准TLC方法相关的毒性、溶剂比例和时间要求等缺点。新方法使用浸渍硅胶的微型即时TLC板(ITLCTM/SG,2.5×10 cm)作为固定相,以2-丁酮作为流动相。标准TLC方法使用ITLCTM/SG板(5×20 cm)和二氯甲烷/丙酮(65:35,v/v)。两种方法均采用存储磷光成像系统对35份制剂进行分析,以确定水解还原的99Tc(m)化合物(99Tc(m)O2)、99Tc(m)-替曲膦和游离99Tc(m)-高锝酸盐(99Tc(m)O4(-))的百分比。使用微型TLC方法时,99Tc(m)-替曲膦的平均比移值(Rf)为0.55(标准差为0.05),而99Tc(m)O4(-)随溶剂前沿移动(Rf = 1),99Tc(m)O2留在条带原点(Rf = 0)。使用Wilcoxon配对符号秩检验,在99Tc(m)-替曲膦的放射化学纯度方面,微型TLC方法与标准TLC方法之间未发现显著差异(P = 0.82)。此外,两种方法经Spearman秩系数测量显示出良好的相关性(r = 0.89),并且在将阳性和阴性的分界点设定为90%时,两者完全一致,kappa指数为+1。总之,结果表明微型TLC方法对于99Tc(m)-替曲膦放射化学纯度的常规评估是有效的,且没有标准方法的一些缺点。

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