Mowaka Shereen, Ayoub Bassam M, Hassan Mostafa A, Zaghary Wafaa A
Analytical Chemistry Department, Faculty of Pharmacy, Helwan University, Ein Helwan, Cairo 11795, Egypt.
Pharmaceutical Chemistry Department, Faculty of Pharmacy, The British University in Egypt, El-Shorouk City, Cairo 11837, Egypt.
J Anal Methods Chem. 2018 Jan 30;2018:7370651. doi: 10.1155/2018/7370651. eCollection 2018.
New spectrophotometric and chemometric methods were carried out for the simultaneous assay of trelagliptin (TRG) and its acid degradation product (TAD) and applied successfully as a stability indicating assay to recently approved Zafatek® tablets. TAD was monitored using TLC to ensure complete degradation. Furthermore, HPLC was used to confirm dealing with one major acid degradation product. The proposed methods were developed by manipulating zero-order, first-derivative, and ratio spectra of TRG and TAD using simultaneous equation, first-derivative, and mean-centering methods, respectively. Using Spectra Manager II and Minitab v.14 software, the absorbance at 274 nm-260.4 nm, amplitudes at 260.4 nm-274.0 nm, and mean-centered values at 287.6 nm-257.2 nm were measured against methanol as a blank for TRG and TAD, respectively. Linearity and the other validation parameters were acceptable at concentration ranges of 5-50 g/mL and 2.5-25 g/mL for TRG and TAD, respectively. Using one-way analysis of variance (ANOVA), the optimized methods were compared and proved to be accurate for the simultaneous assay of TRG and TAD.
采用新的分光光度法和化学计量学方法同时测定曲格列汀(TRG)及其酸降解产物(TAD),并成功应用于最近获批的Zafatek®片剂的稳定性指示分析。采用薄层色谱法监测TAD以确保完全降解。此外,采用高效液相色谱法确认处理的是一种主要的酸降解产物。所提出的方法分别通过使用联立方程法、一阶导数法和均值中心化法处理TRG和TAD的零阶、一阶导数和比率光谱来开发。使用Spectra Manager II和Minitab v.14软件,分别以甲醇为空白,测定TRG和TAD在274 nm - 260.4 nm处的吸光度、在260.4 nm - 274.0 nm处的振幅以及在287.6 nm - 257.2 nm处的均值中心化值。TRG和TAD在浓度范围分别为5 - 50 μg/mL和2.5 - 25 μg/mL时,线性和其他验证参数均可接受。使用单因素方差分析(ANOVA)对优化后的方法进行比较,结果证明该方法对于同时测定TRG和TAD是准确的。