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绿胶束增稳型高效液相色谱法测定富马酸卢帕他定及其主要杂质地氯雷他定:氧化降解动力学研究。

Green micellar stability-indicating high-performance liquid chromatography method for determination of rupatadine fumarate in the presence of its main impurity desloratadine: Oxidative degradation kinetics study.

机构信息

Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, Tanta University, Tanta, Egypt.

出版信息

J Sep Sci. 2023 Jul;46(14):e2300135. doi: 10.1002/jssc.202300135. Epub 2023 May 26.

Abstract

A green micellar stability-indicating high-performance liquid chromatography method was developed for rupatadine fumarate determination in existence with its main impurity desloratadine. Separation was attained using Hypersil ODS column (150 × 4.6 mm, 5 μm), the micellar mobile phase consisted of 0.13 M sodium dodecyl sulfate, 0.1 M disodium hydrogen phosphate adjusted by phosphoric acid to pH 2.8 and 10% n-butanol. The column was maintained at 45 C and detection was carried out at 267 nm. A linear response was achieved over the range of 2-160 μg/ml for rupatadine and 0.4-8 μg/ml for desloratadine. The method was applied for rupatadine determination in alergoliber tablets and alergoliber syrup without the interference of methyl paraben and propyl paraben present as main excipients. Rupatadine fumarate revealed pronounced susceptibility to oxidation; further study of oxidative degradation kinetics was carried out. Rupatadine was found to follow pseudo-first-order kinetics when exposed to 10% H O at 60 and 80°C and the activation energy was found to be 15.69 Kcal/mol. At a lower temperature (40°C), degradation kinetics regression was best fitted as a polynomial quadratic relationship, thus rupatadine oxidation at a lower temperature tends to adopt a second-order kinetics rate. Oxidative degradation product structure was revealed using infrared and found to be rupatadine N-oxide at all temperature values.

摘要

建立了一种用于测定富马酸卢帕他定及其主要杂质地氯雷他定的绿色胶束稳定指示高效液相色谱法。分离采用 Hypersil ODS 柱(150×4.6mm,5μm),胶束流动相由 0.13M 十二烷基硫酸钠、0.1M 磷酸氢二钠用磷酸调至 pH2.8 和 10%正丁醇组成。柱温为 45℃,检测波长为 267nm。卢帕他定在 2-160μg/ml 范围内、地氯雷他定在 0.4-8μg/ml 范围内呈线性响应。该方法应用于 alergoliber 片剂和 alergoliber 糖浆中卢帕他定的测定,不存在作为主要赋形剂的对羟基苯甲酸甲酯和对羟基苯甲酸丙酯的干扰。富马酸卢帕他定对氧化表现出明显的敏感性;进一步研究了其氧化降解动力学。当 10%H2O2 在 60 和 80°C 下暴露于富马酸卢帕他定时,发现其遵循准一级动力学,活化能为 15.69Kcal/mol。在较低温度(40°C)下,降解动力学回归最适合作为二次多项式关系,因此富马酸卢帕他定在较低温度下的氧化倾向于采用二级动力学速率。使用红外光谱揭示了氧化降解产物的结构,在所有温度下均发现为卢帕他定 N-氧化物。

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