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Development and Validation of Stability-Indicating Method for Estimation of Chlorthalidone in Bulk and Tablets with the Use of Experimental Design in Forced Degradation Experiments

机译:强迫降解实验中实验设计的大包装片剂中氯噻酮稳定性指示方法的开发与验证

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摘要

Chlorthalidone was subjected to various forced degradation conditions. Substantial degradation of chlorthalidone was obtained in acid, alkali, and oxidative conditions. Further full factorial experimental design was applied for acid and alkali forced degradation conditions, in which strength of acid/alkali, temperature, and time of heating were considered as independent variables (factors) and % degradation was considered as dependent variable (response). Factors responsible for acid and alkali degradation were statistically evaluated using Yates analysis and Pareto chart. Furthermore, using surface response curve, optimized 10% degradation was obtained. All chromatographic separation was carried out on Phenomenex HyperClone C 18 column (250 × 4.6 mm, 5 μ), using mobile phase comprising methanol : acetonitrile : phosphate buffer (20 mM) (pH 3.0 adjusted with o-phosphoric acid): 30 : 10 : 60% v/v. The flow rate was kept constant at 1 mL/min and eluent was detected at 241 nm. In calibration curve experiments, linearity was found to be in the range of 2–12 μg/mL. Validation experiments proved good accuracy and precision of the method. Also there was no interference of excipients and degradation products at the retention time of chlorthalidone, indicating specificity of the method.
机译:使氯噻酮经受各种强制降解条件。在酸性,碱性和氧化条件下,氯噻酮可大量降解。进一步的全因子实验设计适用于酸和碱强制降解条件,其中酸/碱的强度,温度和加热时间被视为自变量(因子),降解百分数被视为因变量(响应)。使用耶茨(Yates)分析和帕累托图(Pareto chart)对造成酸和碱降解的因素进行统计学评估。此外,使用表面响应曲线,可获得最佳的10%降解。所有色谱分离均在Phenomenex HyperClone C 18色谱柱(250×4.6 mm,5μ)上进行,使用的流动相包括甲醇:乙腈:磷酸盐缓冲液(20 mM)(pH 3.0用邻磷酸调节):30:10 :60%v / v。流速保持恒定在1 mL / min,洗脱液检测到241 nm。在校准曲线实验中,发现线性在2–12μg / mL的范围内。验证实验证明了该方法的准确性和准确性。氯噻酮的保留时间也没有赋形剂和降解产物的干扰,表明该方法的特异性。

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