Zaghary Wafaa A, Mowaka Shereen, Hassan Mostafa A, Ayoub Bassam M
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.
Sci Rep. 2017 Dec 8;7(1):17255. doi: 10.1038/s41598-017-17642-1.
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.
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。