Analytical Chemistry Department, Faculty of Pharmacy, Cairo University, Egypt; Pharmaceutical Chemistry Department, Faculty of Pharmaceutical Sciences & Pharmaceutical industries, Future University in Egypt, Cairo, Egypt.
Analytical Chemistry Department, Faculty of Pharmacy, Cairo University, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2017 Sep 5;184:61-70. doi: 10.1016/j.saa.2017.04.058. Epub 2017 Apr 20.
Simultaneous determination of miconazole (MIC), mometasone furaoate (MF), and gentamicin (GEN) in their pharmaceutical combination. Gentamicin determination is based on derivatization with of o-phthalaldehyde reagent (OPA) without any interference of other cited drugs, while the spectra of MIC and MF are resolved using both successive and progressive resolution techniques. The first derivative spectrum of MF is measured using constant multiplication or spectrum subtraction, while its recovered zero order spectrum is obtained using derivative transformation. Beside the application of constant value method. Zero order spectrum of MIC is obtained by derivative transformation after getting its first derivative spectrum by derivative subtraction method. The novel method namely, differential amplitude modulation is used to get the concentration of MF and MIC, while the novel graphical method namely, concentration value is used to get the concentration of MIC, MF, and GEN. Accuracy and precision testing of the developed methods show good results. Specificity of the methods is ensured and is successfully applied for the analysis of pharmaceutical formulation of the three drugs in combination. ICH guidelines are used for validation of the proposed methods. Statistical data are calculated, and the results are satisfactory revealing no significant difference regarding accuracy and precision.
咪康唑(MIC)、莫米松糠酸酯(MF)和庆大霉素(GEN)在复方制剂中的同时测定。庆大霉素的测定基于与邻苯二醛试剂(OPA)的衍生化,没有其他引用药物的任何干扰,而 MIC 和 MF 的光谱则使用连续和逐步分辨率技术进行解析。MF 的一阶导数光谱使用常数乘法或光谱减法进行测量,而其恢复的零阶光谱则使用导数变换获得。除了使用常数值方法外,通过导数减法方法获得 MIC 的一阶导数光谱后,通过导数变换获得 MIC 的零阶光谱。使用新的差分幅度调制方法来获得 MF 和 MIC 的浓度,而使用新的图形方法即浓度值来获得 MIC、MF 和 GEN 的浓度。所开发方法的准确性和精密度测试显示出良好的结果。方法的特异性得到保证,并成功应用于三种药物联合的药物制剂分析。ICH 指南用于验证所提出的方法。计算统计数据,结果令人满意,表明准确性和精密度没有显著差异。