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通过设计一种用于测定放射性药物碘化钠I口服溶液放射化学纯度的薄层色谱扫描仪方法提高分析质量。

Increasing Analytical Quality by Designing a Thin-Layer Chromatography Scanner Method for the Determination of the Radiochemical Purity of Radiopharmaceutical Sodium Iodide I Oral Solution.

作者信息

Vasquez-Huaman Miguel, Castro-Luna Américo, Ramos-Cevallos Norma Julia, Ramos-Perfecto Donald, Alcarraz-Curi Mario, Segura-Vasquez Jacqueline, Cáceres-Antaurco Danny

机构信息

Research Institute for Pharmaceutical Sciences and Natural Resources, Faculty of Pharmacy and Biochemistry, Universidad Nacional Mayor de San Marcos, Jr. Puno 1002, Lima 15001, Peru.

Faculty of Odontology, Universidad Nacional Mayor de San Marcos, Av Germán Amézaga 375, Lima 15081, Peru.

出版信息

Molecules. 2024 Apr 20;29(8):1883. doi: 10.3390/molecules29081883.

Abstract

The goal of this study was to apply the principles of analytical quality by design (AQbD) to the analytical method for determining the radiochemical purity (PQR) of the radiopharmaceutical sodium iodide I oral solution, utilizing thin-layer chromatography (TLC) with a radio-TLC scanner, which also enables the evaluation of product quality. For AQbD, the analytical target profile (ATP), critical quality attributes (CQA), risk management, and the method operable design region (MODR) were defined through response surface methodology to optimize the method using MINITAB 19 software. This study encompassed the establishment of a control strategy and the validation of the method, including the assessment of selectivity, linearity, precision, robustness, detection limit, quantification limit, range, and the stability of the sample solution. Under the experimental conditions, the method parameters of the TLC scanner were experimentally demonstrated and optimized with an injection volume of 3 µL, a radioactive concentration of 10 mCi/mL, and a carrier volume of 40 µL. Statistical analysis confirmed the method's selectivity for the I iodide band Rf of 0.8, a radiochemical impurity IO Rf of 0.6, a linearity from 6.0 to 22.0 mCi/mL, and an intermediate precision with a global relative standard deviation (RSD) of 0.624%. The method also exhibited robustness, with a global RSD of 0.101%, a detection limit of 0.09 mCi/mL, and a quantification limit of 0.53 Ci/mL, meeting the prescribed range and displaying stability over time (at 0, 2, and 20 h) with a global RSD of 0.362%, resulting in consistent outcomes. The development of a method based on AQbD facilitated the creation of a design space and an operational space, with comprehensive knowledge of the method's characteristics and limitations. Additionally, throughout all operations, compliance with the acceptance criteria was verified. The method's validity was confirmed under the established conditions, making it suitable for use in the manufacturing process of sodium iodide I and application in nuclear medicine services.

摘要

本研究的目的是将分析质量设计(AQbD)原则应用于放射性药物碘化钠I口服溶液放射化学纯度(PQR)的分析方法,采用带放射性薄层扫描仪的薄层色谱法(TLC),该方法还能评估产品质量。对于AQbD,通过响应面法定义分析目标轮廓(ATP)、关键质量属性(CQA)、风险管理和方法可操作设计区域(MODR),以使用MINITAB 19软件优化该方法。本研究包括建立控制策略和方法验证,包括评估选择性、线性、精密度、稳健性、检测限、定量限、范围以及样品溶液的稳定性。在实验条件下,对薄层扫描仪的方法参数进行了实验验证和优化,进样体积为3 μL,放射性浓度为10 mCi/mL,载体体积为40 μL。统计分析证实该方法对碘化物带Rf为0.8、放射化学杂质IO Rf为0.6具有选择性,线性范围为6.0至22.0 mCi/mL,中间精密度的全局相对标准偏差(RSD)为0.624%。该方法还具有稳健性,全局RSD为0.101%,检测限为0.09 mCi/mL,定量限为0.53 Ci/mL,符合规定范围,并且在0、2和20小时内随时间显示出稳定性,全局RSD为0.362%,结果一致。基于AQbD的方法开发有助于创建设计空间和操作空间,全面了解方法的特性和局限性。此外,在所有操作过程中,均验证了是否符合验收标准。该方法在既定条件下的有效性得到证实,适用于碘化钠I的制造过程以及核医学服务中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc04/11054450/7791d7c595aa/molecules-29-01883-g011.jpg

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