Walash M I, El-Enany N, Eid M I, Fathy M E
Department of Analytical Chemistry, Faculty of Pharmacy, University of Mansoura, 35516, Mansoura, Egypt.
J Fluoresc. 2014 Mar;24(2):363-76. doi: 10.1007/s10895-013-1301-z. Epub 2013 Oct 4.
A highly sensitive, simple and rapid stability-indicating spectrofluorimetric method was developed for the determination of metolazone (MET) and xipamide (XPM) in their tablets. The proposed method is based on the measurement of the native fluorescence of MET in methanol at 437 nm after excitation at 238 nm and XPM in alkaline methanolic solution at 400 nm after excitation at 255 nm. The fluorescence-concentration plots were rectilinear over the range of 2.0- 20.0 ng/mL for MET and 0.2- 2.0 μg/mL for XPM, with lower detection limits (LOD) of 0.35 ng/mL and 0.02 μg/mL and a lower quantification limit (LOQ) of 1.05 ng/mL and 0.07 μg/mL for MET and XPM, respectively. The method was successfully applied to the analysis of MET and XPM in their commercial tablets and the results were in good agreement with those obtained using the official and comparison methods, respectively. Furthermore, content uniformity testing of the studied pharmaceutical tablets was also conducted. The application of the proposed method was extended to stability studies of MET and XPM after exposure to different forced degradation conditions, such as acidic, alkaline, oxidative and photolytic degradation conditions, according to ICH Guidelines. Moreover, the method was utilized to investigate the kinetics of the alkaline, acidic and photolytic degradation of MET. The apparent first-order rate constants and half-life times were calculated. Proposals for the degradation pathways for both MET and XPM were postulated.
建立了一种高灵敏度、简单快速的稳定性指示荧光分光光度法,用于测定甲氯噻嗪(MET)和氯磺水杨胺(XPM)片剂中的含量。该方法基于在238nm激发后,于437nm处测量甲醇中甲氯噻嗪的天然荧光,以及在255nm激发后,于400nm处测量碱性甲醇溶液中氯磺水杨胺的荧光。荧光-浓度曲线在甲氯噻嗪2.0 - 20.0 ng/mL和氯磺水杨胺0.2 - 2.0 μg/mL范围内呈线性,甲氯噻嗪和氯磺水杨胺的检测限(LOD)分别为0.35 ng/mL和0.02 μg/mL,定量限(LOQ)分别为1.05 ng/mL和0.07 μg/mL。该方法成功应用于市售片剂中甲氯噻嗪和氯磺水杨胺的分析,结果分别与采用法定方法和对照方法获得的结果良好吻合。此外,还对所研究的药物片剂进行了含量均匀度检测。根据ICH指南,将该方法的应用扩展至甲氯噻嗪和氯磺水杨胺在不同强制降解条件(如酸性、碱性、氧化和光解降解条件)下的稳定性研究。此外,该方法还用于研究甲氯噻嗪的碱性、酸性和光解降解动力学。计算了表观一级速率常数和半衰期。推测了甲氯噻嗪和氯磺水杨胺的降解途径。