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首页> 外文期刊>Analytical chemistry >Stability indicating spectrophotometric and chromatographic methods for the determination of azelastine hydrochloride in presence of its alkaline degradant
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Stability indicating spectrophotometric and chromatographic methods for the determination of azelastine hydrochloride in presence of its alkaline degradant

机译:稳定性表明分光光度法和色谱法在碱性降解剂存在下测定盐酸氮卓斯汀

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摘要

Five simple, rapid and sensitive methods have been developed for the determination of azelastine hydrochloride in presence of its alkaline degradant. The first method utilizes first (D1) derivative spectrophotometry at 260 and 321 nm for the determination of azelastine hydrochloride without interference from its degradation product. The second method depends on the use of the first derivative of the ratio spectra (DD ) with measurement at 321 nm for determination of azelastine hydrochloride using the spectrum of 20 ug ml~(-1) (degradation) as a divisor. The third method is mean centering of ratio spectra with measurement at 306.4 nm.The fourth method depends on TLC-densitometry using acetonitrile: water: acetic acid (8:2:1, by volume) as a developing solvent, followed by measurement at 254 nm. The last method is a reversed-phase liquid chromatography using 5mM ammonium acetate (pH 3.2): acetonitrile (40:60, v/v) as the mobile phase with UV detection at 253 nm. The suggested procedures were checked using laboratory prepared mixtures and were successfully applied for the analysis of its pharmaceutical preparations. The validity of the proposed methods was further assessed by applying the standard addition technique. The results obtained by applying the proposed methods were statistically analyzed and compared with the manufacturer's method.
机译:已经开发了五种简单,快速和灵敏的方法,用于在碱性降解剂存在下测定盐酸氮卓斯汀。第一种方法在260和321 nm下利用一阶(D1)导数分光光度法测定盐酸氮卓斯汀,而不受其降解产物的干扰。第二种方法取决于使用比率光谱(DD)的一阶导数在321 nm处的测定,以20ug ml〜(-1)的光谱(降解)作为除数来测定盐酸氮卓斯汀。第三种方法是在306.4 nm处进行测量的比率光谱的平均居中。第四种方法取决于使用乙腈:水:乙酸(体积比为8:2:1)作为展开剂的TLC密度计,然后在254进行测量纳米最后一种方法是反相液相色谱,使用5mM醋酸铵(pH 3.2):乙腈(40:60,v / v)作为流动相,并在253 nm处进行UV检测。使用实验室制备的混合物检查了建议的程序,并将其成功地用于分析其药物制剂。通过应用标准添加技术进一步评估了所提出方法的有效性。对通过应用所提出的方法获得的结果进行了统计分析,并与制造商的方法进行了比较。

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