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Stability-Indicating UPLC Method for Determining Related Substances and Degradants in Dronedarone

机译:稳定性指示UPLC方法测定决奈达隆中的相关物质和降解物

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A simple, sensitive and reproducible method was developed on ultraperformance liquid chromatography coupled with photodiode array detection for the quantitative determination of dronedarone hydrochloride (DRO) in drug substance and pharmaceutical dosage forms. The method is applicable for the quantification of related substances and assays of drug substances. Chromatographic separation was achieved on Acquity UPLC BEH C8 1000mm, 2.1 mm and 1.7 μm columns, using gradient elution within a short run time of 10.0 min. The eluted compounds were monitored at 288 nm, the flow rate was 0.5 mL/min and the column oven temperature was maintained at 40°C. The resolution of DRO and 11 impurities (potentials and by-products) was greater than 2.0 for all pairs of components. The high correlation coefficient value (>0.9995) indicates the clear correlations between the concentrations of investigated compound and their peak areas within the test ranges. The repeatability and intermediate precision, expressed by the relative standard deviation, were less than 2.5%. The accuracy and validity of the method were further ascertained by performing recovery studies via a spike method. The accuracy of the method, expressed as relative error, was satisfactory. No interference was observed from concomitant substances normally added to the tablets. DRO was subjected to the stress conditions of oxidative, acid, base, hydrolytic, thermal and photolytic degradation. DRO was found to degrade significantly in acid and base stress conditions and to remain stable in thermal, photolytic degradation, oxidative and hydrolytic conditions. The degradation products were well resolved from primary peak and its impurities, proving that the method is stability indicating. The developed method was validated as per International Conference on Harmonization guidelines with respect to specificity, limit of detection, limit of quantification, linearity, accuracy, precision, solution stability and robustness. This method is also suitable for the determination of DRO drug substance and pharmaceutical dosage forms.
机译:建立了一种简单,灵敏,可重现的超高效液相色谱-光电二极管阵列检测方法,用于定量测定原料药和剂型中的决奈达隆盐酸盐(DRO)。该方法适用于相关物质的定量和原料药的测定。在10.0分钟的短时间内使用梯度洗脱在Acquity UPLC BEH C8 1000mm,2.1 mm和1.7μm色谱柱上进行色谱分离。在288 nm处监测洗脱的化合物,流速为0.5 mL / min,柱温箱温度保持在40°C。对于所有成对的组分,DRO和11种杂质(电位和副产物)的分离度均大于2.0。高相关系数值(> 0.9995)表明所研究化合物的浓度与其在测试范围内的峰面积之间存在明显的相关性。用相对标准偏差表示的重复性和中间精度均小于2.5%。该方法的准确性和有效性进一步通过采用加标方法进行回收率研究来确定。用相对误差表示的方法准确性令人满意。没有观察到正常添加到片剂中的伴随物质的干扰。 DRO经受了氧化,酸,碱,水解,热和光解降解的应力条件。发现DRO在酸性和碱性应力条件下会显着降解,并在热,光解降解,氧化和水解条件下保持稳定。降解产物从主峰及其杂质中得到很好的分离,证明了该方法的稳定性。所开发的方法已根据国际协调大会指南在特异性,检测限,定量限,线性,准确性,精密度,溶液稳定性和鲁棒性方面得到验证。该方法也适用于测定DRO药物和药物剂型。

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