放射性药物中放射化学杂质测定方法的验证经验

A. Malysheva, G. Kodina, E. A. Lyamtseva, N. A. Taratonenkova, A. Lunev
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引用次数: 0

摘要

任何放射性药物(RPh)最重要的质量属性是其放射化学纯度(RCP)或放射化学杂质(rci)的含量,必须符合各自的规范和限制。然而,目前尚无统一的方法来验证高放射性样品的分析方法。本研究的目的是建立一种方法来验证rph中RCI含量的测定方法。材料和方法:用硅胶和甲乙基酮(用于高技术酸钠的测定)、硅胶和13.6%醋酸钠溶液(用于水解还原锝-99m的测定)薄层色谱分离主化合物杂质后,用放射法测定了含有锝-99m和亚二膦酸配合物的放射性药物制剂中rci的含量。放射性是用带有能量为0.05至1.5兆电子伏特的伽马射线探测器的色谱扫描仪记录的。结果:本文分析了现有的官方方法来验证分析程序,并将它们与现有出版物中描述的实验研究结果进行了比较。它评估验证参数是否符合现行法规中规定的验收标准,并证实在选定的测试条件下色谱测定杂质的选择性。在相对误差不超过10.5%的情况下,重复性、再现性和准确性的变异系数分别不超过4.5、2.8和8.9%。该研究证明了标准化高技术酸钠溶液稀释10倍时的信号线性,也证明了在0.5-5%杂质含量范围内进行测试时,应用和检测到的放射性之间的对应关系。验证程序与质量控制实验室人员的显著辐射负担相关。结论:作者提出了一种方法学方法来验证技术-99m基rph中RCI含量的测定方法。该方法可用于制定rph中RCP/RCI测定分析方法验证指南,或在现有文件中引入相关章节。
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Experience in Validation of Methods for Determination of Radiochemical Impurities in Radiopharmaceuticals
Most important quality attributes of any radiopharmaceutical (RPh) are its radiochemical purity (RCP) or content of radiochemical impurities (RCIs) that have to comply with respective norms and limits. However, at present, there is no unified approach to validation of analytical methods in the context of highly radioactive samples.The aim of the study was to develop an approach to validation of methods for determination of RCI content in RPhs.Materials and methods: the authors determined the content of RCIs in a radiopharmaceutical formulation containing a complex of technetium-99m and methylenediphosphonic acid by the radiometric method after isolation of impurities from the main compound by thin-layer chromatography using silica gel and methyl ethyl ketone (for sodium pertechnetate determination) and silica gel and 13.6% sodium acetate solution (for determination of hydrolysed reduced technetium-99m). The radioactivity was registered by a chromatogram scanner with a detector of gamma-rays with energies from 0.05 to 1.5 MeV.Results: the paper analyses existing official approaches to validation of analytical procedures and compares them with the results of experimental studies described in available publications. It assesses the validation parameters for compliance with the acceptance criteria set forth in the current regulations and substantiates selectivity of chromatographic determination of impurities under the selected test conditions. Coefficients of variation for repeatability, reproducibility, and accuracy did not exceed 4.5, 2.8, and 8.9%, respectively, given the relative error of not more than 10.5%. The study demonstrated signal linearity for the 10-fold dilution of the standardised sodium pertechnetate solution, it also demonstrated correspondence between the applied and detected radioactivity when performing the test in the impurity content range of 0.5–5%. The validation procedure was associated with significant radiation burden for the personnel of the quality control laboratory.Conclusions: the authors suggested a methodological approach to validation of methods for determination of RCI content in technetium-99m-based RPhs. This approach may be used in the development of a guideline on validation of analytical methods for RCP/RCI determination in RPhs, or for introduction of relevant sections into existing documents.
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