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Simultaneous determination of captopril and hydrochlorothiazide by time-resolved chemiluminescence with artificial neural network calibration

机译:时间分辨化学发光-人工神经网络校正同时测定卡托普利和氢氯噻嗪

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摘要

The combined use of chemometrics and chemiluminescence (CL) measurements, with the aid of the stopped-flow mixing technique, developed a simple time-resolved CL method for the simultaneous determination of captopril (CPL) and hydrochlorothiazide (HCT). The stopped-flow technique in a continuous-flow system was employed in this work in order to emphasize the kinetic differences between the two analytes in cerium (IV)-rhodamine 6G CL system. After the flow was stopped, an initial rise of CL signal was observed for HCT standards, while a direct decay of CL signal was obtained for CPL standards. The mixed CL signal was monitored and recorded on the whole process of continuousflow/stopped-flow, and the obtained data were processed by the chemometric approach of artificial neural network. The relative prediction error (RPE) of CPL and HCT was 5.9% and 8.7%, respectively. The recoveries of CPL and HCT in tablets were found to fall in the range between 95% and 106%. The proposed method was successfully applied to the simultaneous determination of CPL and HCT in a compound pharmaceutical formulation.
机译:化学计量学和化学发光法(CL)的结合使用,借助停止流混合技术,开发了一种简单的时间分辨CL方法,用于同时测定卡托普利(CPL)和氢氯噻嗪(HCT)。为了强调铈(IV)-若丹明6G CL系统中两种分析物之间的动力学差异,在这项工作中采用了连续流系统中的停止流技术。停止流动后,对于HCT标准液,观察到CL信号的初始上升,而对于CPL标准液,则得到CL信号的直接衰减。在连续流/停止流的全过程中监视和记录混合的CL信号,并通过人工神经网络的化学计量方法处理获得的数据。 CPL和HCT的相对预测误差(RPE)分别为5.9%和8.7%。发现片剂中CPL和HCT的回收率介于95%和106%之间。所提出的方法已成功地用于同时测定复合药物制剂中的CPL和HCT。

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