Bhatia Nisha, Vatsa Rakhee, Dhingra Vandana K, Dhawan Devinder Kumar, Chadha Vijayta Dani
Department of Nuclear Medicine, Cancer Research Institute, Swami Rama Himalayan University, Dehradun, Uttarakhand, India.
Centre of Nuclear Medicine, Panjab University, Chandigarh, India.
World J Nucl Med. 2022 Sep 14;21(4):314-319. doi: 10.1055/s-0042-1757381. eCollection 2022 Dec.
The aim of this study is to establish a method for the fractionation of tetrofosmin cold kit under different storage conditions and to optimize an alternate chromatography method from the reference method to test radiochemical purity (RCP). Tetrofosmin cold kit vial was fractionated aseptically in six equal fractions and stored in vials and syringes. To test the stability of the reconstituted solution for a longer duration, the mother vials and syringes were stored at two different temperatures, that is, at 4°C and at -20°C till further used. Radiolabeling of fractionated tetrofosmin was performed as per the standard labeling protocol. Radionuclide purity, radioassay, and pH were tested. Radiolabeling efficiency and RCP were determined by paper chromatography. Radionuclide purity of eluate was greater than 99.9%. The pH of technetium-99m (Tc-99m) eluate and Tc-99m tetrofosmin was between 4.5-7.5 and 7.5-9.5, respectively. The deviation in the radioactivity during all measurements was less than 1%. The kits fractioned in glass vials resulted in higher radiolabeling yield and RCP as compared with kits fractionated in syringes. The RCP of glass vial versus syringe was observed to be greater than 95 versus 90% and 95 versus 80% at -20°C and 4°C, respectively. Tetrofosmin kit can be used in a cost-effective manner by fractionation. One tetrofosmin vial can be used in six fractions for up to 15 days when stored at -20°C and 4°C freezer temperature. The alternative method to check the RCP of Tc-99m tetrofosmin is safer and less time consuming as compared with the reference method.
本研究的目的是建立一种在不同储存条件下对替曲膦冷试剂盒进行分馏的方法,并从参考方法中优化一种替代色谱方法来检测放射化学纯度(RCP)。 将替曲膦冷试剂盒小瓶无菌分馏成六个等份,并储存在小瓶和注射器中。为了测试重构溶液在更长时间内的稳定性,母瓶和注射器在两个不同温度下储存,即4°C和-20°C,直至进一步使用。按照标准标记方案对分馏后的替曲膦进行放射性标记。测试了放射性核素纯度、放射性测定和pH值。通过纸色谱法测定放射性标记效率和RCP。 洗脱液的放射性核素纯度大于99.9%。99m锝(Tc-99m)洗脱液和Tc-99m替曲膦的pH值分别在4.5-7.5和7.5-9.5之间。所有测量过程中的放射性偏差小于1%。与在注射器中分馏的试剂盒相比,在玻璃瓶中分馏的试剂盒产生了更高的放射性标记产率和RCP。在-20°C和4°C下,观察到玻璃瓶与注射器的RCP分别大于95%对90%和95%对80%。 通过分馏,替曲膦试剂盒可以以经济高效的方式使用。当储存在-20°C和4°C冷冻温度下时,一个替曲膦小瓶可以分成六个部分使用长达15天。与参考方法相比,检查Tc-99m替曲膦RCP的替代方法更安全且耗时更少。