首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Oxidative degradation study of nitrendipine using stability indicating, HPLC, HPTLC and spectrophotometric method.
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Oxidative degradation study of nitrendipine using stability indicating, HPLC, HPTLC and spectrophotometric method.

机译:使用稳定性指示剂,HPLC,HPTLC和分光光度法对尼群地平进行氧化降解研究。

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摘要

The objective of this study is to develop validated stability indicating HPLC (A), HPTLC (B) and spectrophotometric (C) method for the estimation of nitrendipine. The stability indicating capability of the assays is proved using forced degradation, by exposing drug solution to sunlight, acidic and alkaline medium. The chromatogram and UV spectrum showed nitrendipine well resolved from the degradation product. Degradation of drug is found faster in acidic (0.1 N hydrochloric acid) medium as compared to alkaline (0.1 N sodium hydroxide) medium at 100 degrees C. Also, photodegradation is studied, with special emphasis on the effect of solvents like methanol (1), chloroform (2), dichloromethane (3), acetone (4) and ethyl acetate (5), on the rate of photodegradation. The degradation of title compound followed first order kinetics in all cases. Estimation of the drug is carried out by the stability indicating methods mentioned, using one point standardization within the linearity range of interest. The methods are compared in respect of performance precision and accuracy. Major route of degradation in all cases is found to be oxidation and degradation product is confirmed as dehydronitrendipine by the use of relevant UV, IR and 1H NMR spectrometry.
机译:这项研究的目的是开发经验证的稳定性,以HPLC(A),HPTLC(B)和分光光度法(C)的方法评估尼群地平的含量。通过将药物溶液暴露于日光,酸性和碱性介质中,通过强制降解证明了测定的稳定性指示能力。色谱图和紫外光谱图表明,尼群地平可以很好地从降解产物中分离出来。在100摄氏度下,发现在酸性(0.1 N盐酸)介质中比在碱性(0.1 N氢氧化钠)介质中药物降解更快。此外,还对光降解进行了研究,并特别强调了溶剂如甲醇的作用(1) ,氯仿(2),二氯甲烷(3),丙酮(4)和乙酸乙酯(5)的光降解速率。在所有情况下,标题化合物的降解均遵循一级动力学。使用感兴趣的线性范围内的一点标准化,通过上述稳定性指示方法进行药物评估。比较了这些方法的性能精度和准确性。在所有情况下,降解的主要途径都是氧化,并且通过使用相关的UV,IR和1H NMR光谱确定降解产物为脱氢尼地平。

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