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各种色谱和光谱技术用于曲格列汀分析及动力学降解研究的适用性

Suitability of various chromatographic and spectroscopic techniques for analysis and kinetic degradation study of trelagliptin.

作者信息

Zaghary Wafaa A, Mowaka Shereen, Hassan Mostafa A, Ayoub Bassam M

机构信息

Pharmaceutical Chemistry Department, Faculty of Pharmacy, Helwan University, Ein Helwan, Cairo, 11795, Egypt.

Analytical Chemistry Department, Faculty of Pharmacy, Helwan University, Ein Helwan, Cairo, 11795, Egypt.

出版信息

Sci Rep. 2017 Dec 8;7(1):17255. doi: 10.1038/s41598-017-17642-1.

Abstract

Multifaceted comparative analytical methods for trelagliptin (TRL) were investigated, applied to ZAFATEK tablets and HPLC-UV was selected for a degradation kinetic study. UPLC-MS/MS (Method I), UPLC-UV (Method II), HPLC-UV (Method III), UHPLC-UV (Method IV) and direct UV (Method V) methods were developed. Methods (I-V) showed satisfactory results using TRL concentration ranges of 50-800 ng/mL, 2.5-80 μg/mL, 5-100 μg/mL, 5-100 μg/mL and 5-50 μg/mL, respectively. Multiple Reaction Monitoring (MRM) of the transition pairs of m/z 358.176 to 134.127 for TRL and m/z 340.18 to 116.08 for alogliptin (IS) were employed utilizing positive mode Electrospray Ionization (ESI). The degradation kinetic study (Method VI) was carried out using 1 N HCl based on three different temperatures (70 °C, 80 °C and 90 °C). Through the optimized method-3, a good chromatographic separation of TRL from its major degradation product was achieved. Arrhenius plot was used in the kinetic study and the apparent 1 order degradation rate constant (K), t, t, and the activation energies were calculated for each temperature and at 25 °C. The optimized UPLC-MS/MS method is suitable for further TRL assay either in biological fluids or in the presence of impurities.

摘要

研究了曲格列汀(TRL)的多方面比较分析方法,并将其应用于ZAFATEK片剂,同时选择高效液相色谱-紫外检测法(HPLC-UV)进行降解动力学研究。开发了超高效液相色谱-串联质谱法(方法I)、超高效液相色谱-紫外检测法(方法II)、高效液相色谱-紫外检测法(方法III)、超高效液相色谱-紫外检测法(方法IV)和直接紫外检测法(方法V)。方法(I-V)在TRL浓度范围分别为50-800 ng/mL、2.5-80 μg/mL、5-100 μg/mL、5-100 μg/mL和5-50 μg/mL时显示出满意的结果。采用正模式电喷雾电离(ESI),对TRL的m/z 358.176至134.127以及阿格列汀(内标,IS)的m/z 340.18至116.08的跃迁对进行多反应监测(MRM)。基于三种不同温度(70°C、80°C和90°C),使用1 N盐酸进行降解动力学研究(方法VI)。通过优化的方法3,实现了TRL与其主要降解产物之间良好的色谱分离。在动力学研究中使用了阿累尼乌斯图,并计算了每个温度以及25°C时的表观一级降解速率常数(K)、半衰期(t1/2)和活化能。优化后的超高效液相色谱-串联质谱法适用于生物流体中或存在杂质情况下的进一步TRL测定。

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