Mostafa Nadia M, Elsayed Ghada M, Hassan Nagiba Y, El Mously Dina A
Cairo University, Faculty of Pharmacy, Analytical Chemistry Department, Kasr El Aini, 11562 Cairo, Egypt.
J AOAC Int. 2017 Nov 1;100(6):1761-1770. doi: 10.5740/jaoacint.17-0001. Epub 2017 Jul 24.
Five simple, sensitive, and eco-friendly LC and UV spectrophotometric methods have been developed for the simultaneous determination of phenylephrine hydrochloride (PHE) and prednisolone acetate (PRD) in their combined dosage form. The first method was reversed-phase (RP) LC using methanol-water-heptane-1-sulfonic acid sodium salt (75 + 25 + 0.1, v/v/w) as a mobile phase. Separation was achieved using an XSelect HSS reversed-phase C18 analytical column (250 × 4.6 mm, 5µm). The flow rate was 1.0 mL/min and UV detection was done at 230 nm. Quantification was achieved over the concentration ranges of 5-50 µg/mL for PHE and 2-90 µg/mL for PRD. Four spectrophotometric methods were proposed, namely dual wavelength, first derivative of ratio spectra, ratio difference, and mean-centering of ratio spectra. Linearity was observed in the concentration ranges of 10-120 and 5-35 µg/mL for PHE and PRD, respectively, for the spectrophotometric methods. Green solvents were used in the proposed methods because they play a vital role in the analytical methods' influence on the environment. The suggested methods were validated regarding linearity, accuracy, and precision according to the International Conference on Harmonization guidelines, with satisfactory results. These methods could be used as harmless substitutes for routine analysis of the mentioned drugs, with no interference from excipients.
已开发出五种简单、灵敏且环保的液相色谱(LC)和紫外分光光度法,用于同时测定复方制剂中盐酸去氧肾上腺素(PHE)和醋酸泼尼松龙(PRD)的含量。第一种方法是反相(RP)液相色谱法,使用甲醇 - 水 - 庚烷 - 1 - 磺酸钠盐(75 + 25 + 0.1,v/v/w)作为流动相。采用XSelect HSS反相C18分析柱(250×4.6 mm,5μm)实现分离。流速为1.0 mL/min,在230 nm处进行紫外检测。PHE的定量浓度范围为5 - 50 μg/mL,PRD的定量浓度范围为2 - 90 μg/mL。提出了四种分光光度法,即双波长法、比率光谱一阶导数法、比率差法和比率光谱均值中心化法。对于分光光度法,PHE和PRD的线性浓度范围分别为10 - 120 μg/mL和5 - 35 μg/mL。所提出的方法使用了绿色溶剂,因为它们在分析方法对环境的影响中起着至关重要的作用。根据国际协调会议指南,对所建议的方法进行了线性、准确度和精密度验证,结果令人满意。这些方法可作为上述药物常规分析的无害替代方法,不受辅料干扰。