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首页> 外文期刊>Chromatographia >Kinetics and Characterization of Degradation Products of Dihydralazine and Hydrochlorothiazide in Binary Mixture by HPLC-UV, LC-DAD and LC-MS Methods
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Kinetics and Characterization of Degradation Products of Dihydralazine and Hydrochlorothiazide in Binary Mixture by HPLC-UV, LC-DAD and LC-MS Methods

机译:HPLC-UV,LC-DAD和LC-MS方法的二元混合物中二羟丙嗪和氢氯噻嗪降解产物的动力学与表征

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Dihydralazine and hydrochlorothiazide were stored at high temperature and humidity, under UV/Vis light and different pH, as individual drugs and the mixture. Then, a sensitive and selective HPLC-UV method was developed for simultaneous determination of dihydralazine and hydrochlorothiazide in presence of their degradation products. Finally, the degradation products were characterized through LC-DAD and LC-MS methods. Dihydralazine was sensitive to high temperature and humidity, UV/Vis light and pH aeyen 7. At the same time, it was resistant to acidic conditions. Hydrochlorothiazide was sensitive to high temperature and humidity, UV/Vis light and changes in pH. Its highest level of degradation was observed in 1 M HCl. Degradation of the drugs was higher when they were stressed in the mixture. In the case of dihydralazine, the percentage degradation was 5-15 times higher. What is more, dihydralazine became sensitive to acidic conditions. Hydrochlorothiazide was shown to be more sensitive to UV/Vis light and pH 4. Degradation of dihydralazine and hydrochlorothiazide followed first-order kinetics. The quickest degradation of dihydralazine was found to be in 1 M NaOH while of hydrochlorothiazide was in 1 M HCl (individual hydrochlorothiazide) or at pH 7-10 (hydrochlorothiazide in the mixture). A number of new degradation products were detected and some of them were identified by our LC-DAD and LC-MS methods. In the stressed individual samples, (phenylmethyl)hydrazine and 1,2,4-benzothiadiazine-7-sulfonamide 1,1-dioxide were observed for the first time. Interactions between dihydralazine and hydrochlorothiazide in the mixture were confirmed by additional degradation products, e.g., 2H-1,2,4-benzothiadiazine-7-sulfonamide 1,1,4-trioxide.
机译:二氢丙嗪和氢氯噻嗪在高温和湿度下储存在UV / Vis光和不同的pH下,作为个体药物和混合物。然后,开发了一种敏感和选择性HPLC-UV方法,用于在其降解产物存在下同时测定二氢丙嗪和氢氯噻嗪。最后,通过LC-DAD和LC-MS方法表征降解产物。二氢丙嗪对高温和湿度敏感,UV / Vis光和pHαe& yen& 7.与此同时,它是耐酸性条件。氢氯噻嗪对高温和湿度,UV / Vis光和pH的变化敏感。在1M HCl中观察到其最高水平的降解。当它们在混合物中胁迫时,药物的降解更高。在二氢甲嗪的情况下,百分比降解率高为5-15倍。更重要的是,二氢丙嗪对酸性条件敏感。显示氢氯噻嗪对UV / Vis光和pH值更敏感。 4.二氢丙嗪和氢氯噻嗪的降解遵循一阶动力学。发现二氢丙嗪的最快降解是在1M NaOH中,氢氯噻嗪在1M HCl(个体氢氯噻嗪)中或在pH 7-10(混合物中的氢氯噻嗪)中。检测到许多新的降解产物,其中一些由我们的LC-DAD和LC-MS方法鉴定。在压力的单独样品中,第一次观察到肼和1,2,4-苯并噻嗪-7-二氧化氮氧化物1,1-二氧化氮。通过另外的降解产物,例如,2H-1,2,4-苯并噻嗪-7-磺酰胺1,1,4-三氧化物,证实了二羟丙胺和氢氯噻嗪之间的相互作用。

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