低氨浓度在薄层色谱法测定[153Sm]Sm-EDTMP放射化学纯度中的应用

Amal Rezka Putra, Khoirunnisa Fauziah Asyikin, Robertus Dwi Hendarto, A. Ariyanto, E. Lestari, S. Juliyanto, Ahsanal Fikri
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摘要

[153Sm]Sm-EDTMP的放射化学纯度检测通常采用薄层色谱法。所用的流动相是25%氨和水的混合物。然而,在流动相中最低比例为25%的氨是未知的。因此,对[153Sm]Sm-EDTMP放射化学纯度检测中使用最低浓度的相关研究是必要的。本研究方法包括使用Samarium-153标记EDTMP,制备流动相,以25%氨水的浓度变化,放射化学纯度测试和使用t检验统计数据分析。本研究结果表明,25%氨:水(1:9)~(1:20 0)浓度下,[153Sm]SmCl3和[153Sm]Sm-EDTMP的Rf分别为0.0、1.0时仍能较好地分离[153Sm]SmCl3,而当氨浓度较薄时,Rf [153Sm]SmCl3在0.35 ~ 1.0时分离效果较差。1:9的浓氨浓度与1:200的稀氨浓度比较采用统计学t检验。数据分析结果显示,两种方法差异不显著,t值为0.82 < 2.78。本研究的结论是:[153Sm]Sm-EDTMP放射化学纯度试验中25%氨和水的最低浓度为1:20 00。
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The Use of Low Ammonia Concentration in the Radiochemical Purity Test of [153Sm]Sm-EDTMP by Using the Thin Layer Chromatography Method
Radiochemical purity testing of [153Sm]Sm-EDTMP usually uses the Thin Layer Chromatography method. The mobile phase used is a mixture of 25% ammonia and water. However, the lowest ratio of 25% ammonia in the mobile phase is unknown. Therefore, research related to the use of the lowest concentration in the radiochemical purity test of [153Sm]Sm-EDTMP is necessary. This research method includes labelling of EDTMP using Samarium-153, preparation of the mobile phase with variations in the concentration of 25% ammonia: water, radiochemical purity test and data analysis using t-test statistics. The results of this study are the concentration of 25% ammonia: water (1: 9) to (1: 200) still shows good separation with Rf of [153Sm]SmCl3 and [153Sm]Sm-EDTMP at 0.0, 1.0 respectively, whereas with a thinner concentration of ammonia indicates less optimal separation with Rf [153Sm]SmCl3 at 0.35 to 1.0. Comparison of concentrated ammonia concentrations of 1: 9 and dilute 1: 200 was performed using a statistical t-test. The results of the data analysis showed that the two methods were not significantly different, indicated by the t-value of 0.82 less than 2.78. The conclusion of this study is that the lowest concentration of 25% ammonia and water in the radiochemical purity test of [153Sm]Sm-EDTMP is 1: 200.
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