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用于高精度测定药物中主要成分的微芯片等速电泳的定量方面。

Quantitative aspects of microchip isotachophoresis for high precision determination of main components in pharmaceuticals.

作者信息

Hradski Jasna, Chorváthová Mária Drusková, Bodor Róbert, Sabo Martin, Matejčík Štefan, Masár Marián

机构信息

Department of Analytical Chemistry, Faculty of Natural Sciences, Comenius University in Bratislava, Mlynská dolina CH2, Ilkovičova 6, 84215, Bratislava, Slovak Republic.

Department of Experimental Physics, Faculty of Mathematics, Physics and Informatics, Comenius University in Bratislava, Mlynská dolina F2, 84248, Bratislava, Slovak Republic.

出版信息

Anal Bioanal Chem. 2016 Dec;408(30):8669-8679. doi: 10.1007/s00216-016-9815-2. Epub 2016 Aug 6.

Abstract

Although microchip electrophoresis (MCE) is intended to provide reliable quantitative data, so far there is only limited attention paid to these important aspects. This study gives a general overview of key aspects to be followed to reach high-precise determination using isotachophoresis (ITP) on the microchip with conductivity detection. From the application point of view, the procedure for the determination of acetate, a main component in the pharmaceutical preparation buserelin acetate, was developed. Our results document that run-to-run fluctuations in the sample injection volume limit the reproducibility of quantitation based on the external calibration. The use of a suitable internal standard (succinate in this study) improved the repeatability of the precision of acetate determination from six to eight times. The robustness of the procedure was studied in terms of impact of fluctuations in various experimental parameters (driving current, concentration of the leading ions, pH of the leading electrolyte and buffer impurities) on the precision of the ITP determination. The use of computer simulation programs provided means to assess the ITP experiments using well-defined theoretical models. A long-term validity of the calibration curves on two microchips and two MCE equipments was verified. This favors ITP over other microchip electrophoresis techniques, when chip-to-chip or equipment-to-equipment transfer of the analytical method is required. The recovery values in the range of 98-101 % indicate very accurate determination of acetate in buserelin acetate, which is used in the treatment of hormone-dependent tumors. This study showed that microchip ITP is suitable for reliable determination of main components in pharmaceutical preparations.

摘要

尽管微芯片电泳(MCE)旨在提供可靠的定量数据,但迄今为止,这些重要方面仅受到有限的关注。本研究概述了在微芯片上使用等速电泳(ITP)和电导检测实现高精度测定所需遵循的关键方面。从应用角度出发,开发了测定醋酸布舍瑞林(一种药物制剂)中主要成分醋酸盐的方法。我们的结果表明,进样体积的批间波动限制了基于外标法的定量重现性。使用合适的内标(本研究中为琥珀酸盐)将醋酸盐测定精度的重复性提高了六至八倍。从各种实验参数(驱动电流、前导离子浓度、前导电解质的pH值和缓冲液杂质)的波动对ITP测定精度的影响方面研究了该方法的稳健性。使用计算机模拟程序提供了用明确的理论模型评估ITP实验的手段。验证了在两个微芯片和两台MCE设备上校准曲线的长期有效性。当需要在芯片间或设备间转移分析方法时,这使得ITP比其他微芯片电泳技术更具优势。98 - 101%的回收率表明对用于治疗激素依赖性肿瘤的醋酸布舍瑞林中醋酸盐的测定非常准确。本研究表明,微芯片ITP适用于可靠地测定药物制剂中的主要成分。

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