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首页> 外文期刊>Chromatographia >UPLC Method for Determination of Moxonidine and Its Degradation Products in Active Pharmaceutical Ingredient and Pharmaceutical Dosage Form
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UPLC Method for Determination of Moxonidine and Its Degradation Products in Active Pharmaceutical Ingredient and Pharmaceutical Dosage Form

机译:高效液相色谱法测定活性药物成分和剂型中莫索尼定及其降解产物

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摘要

A simple, rapid, isocratic, stability-indicating reverse phase ultra-performance liquid chromatographic (RP-UPLC) method was developed and validated for the routine analysis of moxonidine in the presence of its degradation products in active pharmaceutical ingredient and pharmaceutical dosage forms. Forced degradation studies were performed according to the guidance of International Conference for Harmonization and were used to evaluate moxonidine intrinsic stability. The drug was subjected to acid, neutral and base hydrolysis as well as to oxidative, thermal and photolytic decomposition in both solution and solid state. The drug appeared to be unstable towards acid and base hydrolysis. To achieve desirable conditions for UPLC analysis, the method development was done with the assistance of experimental design and multivariate optimization methodology by means of Derringer’s desirability function. Stress samples were analyzed according to the experimental plan for fractional factorial screening design and Box-Behnken optimization design. The chromatographic separation was achieved on a C_(18) Hypersil Gold aq. column (100 mm 9 2.1 mm, 1.9 lm) with the mobile phase consisting of methanol–ammonium acetate buffer (10 mM, pH 3.43) mixture (0.9:99.1, v/v) pumped at a flow rate of 870 μL min~(-1) and detection wavelength of 255 nm. The UPLC–MS and UPLC–MS/MS analyses were further used to characterize the found degradation products. The validation of the proposed method was also performed considering selectivity, linearity, accuracy, precision, limit of detection and limit of quantification, and the results indicated that the method fulfilled all required criteria. The method was successfully applied to the analysis of commercial tablets.
机译:开发了一种简单,快速,等度,表明稳定性的反相超高效液相色谱(RP-UPLC)方法,并验证了其在活​​性药物成分和药物剂型中存在降解产物的情况下用于莫索尼定的常规分析。根据国际协调会议的指导进行了强制降解研究,并用于评估莫索尼定的固有稳定性。该药物在溶液和固态下都经过酸,中性和碱性水解以及氧化,热和光解分解。该药物似乎对酸和碱水解不稳定。为了获得理想的UPLC分析条件,该方法的开发是借助Derringer的期望函数,借助实验设计和多元优化方法进行的。根据实验计划分析应力样本,进行分数阶数筛选设计和Box-Behnken优化设计。在C_(18)Hypersil Gold水溶液上完成色谱分离。柱(100 mm 9 2.1 mm,1.9 lm),流动相由甲醇-乙酸铵缓冲液(10 mM,pH 3.43)混合物(0.9:99.1,v / v)泵送,流速为870μLmin〜( -1),检测波长为255 nm。还使用UPLC-MS和UPLC-MS / MS分析来表征发现的降解产物。还考虑了选择性,线性,准确性,精密度,检测限和定量限对提出的方法进行了验证,结果表明该方法满足所有要求的标准。该方法已成功应用于商业片剂的分析。

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