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微芯片等速电泳法在绿色和可持续药物质量控制中的应用:方法验证及在复杂药物制剂中的应用。

Microchip isotachophoresis for green and sustainable pharmaceutical quality control: Method validation and application to complex pharmaceutical formulations.

机构信息

Department of Analytical Chemistry, Faculty of Natural Sciences, Comenius University Bratislava, Ilkovičova 6, Bratislava SK-84215, Slovakia.

Department of Analytical Chemistry, Faculty of Natural Sciences, Comenius University Bratislava, Ilkovičova 6, Bratislava SK-84215, Slovakia.

出版信息

J Chromatogr A. 2024 Aug 16;1729:465055. doi: 10.1016/j.chroma.2024.465055. Epub 2024 Jun 5.

Abstract

Universal microchip isotachophoresis (μITP) methods were developed for the determination of cationic and anionic macrocomponents (active pharmaceutical ingredients and counterions) in cardiovascular drugs marketed in salt form, amlodipine besylate and perindopril erbumine. The developed methods are characterized by low reagent and sample consumption, waste production and energy consumption, require only minimal sample preparation and provide fast analysis. The greenness of the proposed methods was assessed using AGREE. An internal standard addition was used to improve the quantitative parameters of μITP. The proposed methods were validated according to the ICH guideline. Linearity, precision, accuracy and specificity were evaluated for each of the studied analytes and all set validation criteria were met. Good linearity was observed in the presence of matrix and in the absence of matrix, with a correlation coefficient of at least 0.9993. The developed methods allowed precise and accurate determination of the studied analytes, the RSD of the quantitative and qualitative parameters were less than 1.5% and the recoveries ranged from 98 to 102%. The developed μITP methods were successfully applied to the determination of cationic and anionic macrocomponents in six commercially available pharmaceutical formulations.

摘要

通用微芯片等速电泳 (μITP) 方法被开发用于测定以盐形式销售的心血管药物中的阳离子和阴离子大分子成分(活性药物成分和抗衡离子),氨氯地平贝那普利和培哚普利厄贝沙坦。所开发的方法具有试剂和样品消耗低、废物产生和能源消耗低、仅需要最小的样品制备和提供快速分析的特点。使用 AGREE 评估了所提出方法的绿色性。采用内标加标法提高了 μITP 的定量参数。根据 ICH 指南对所提出的方法进行了验证。对每个研究的分析物均评估了线性、精密度、准确度和特异性,并且满足了所有设定的验证标准。在存在基质和不存在基质的情况下均观察到良好的线性,相关系数至少为 0.9993。所开发的方法允许对研究的分析物进行精确和准确的测定,定量和定性参数的 RSD 小于 1.5%,回收率范围为 98%至 102%。所开发的 μITP 方法成功应用于六种市售药物制剂中阳离子和阴离子大分子成分的测定。

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