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Application of central composite design and structural analysis to the optimization of HPLC method for simultaneous analysis of hydrochlorothiazide, amlodipine besylate and valsartan

机译:中央复合设计及结构分析在盐酸盐噻嗪同时分析HPLC方法的优化中的应用

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摘要

Central composite experimental design was used for fast, simple, and accurate high-performance liquid chromatography (HPLC) determination of hydrochlorothiazide, amlodipine and valsartan in combined dosage forms. This method avoids the disadvantages of the traditional analytical approach, which is time-consuming, involves a large number of runs, and does not allow establishing the multiple interacting parameters. On the basis of preliminary experiments and physicochemical characteristic of analyzed substances, three independent variables (methanol content, pH of the mobile phase, and column temperature) were selected as input, while as dependent variables, six responses (retention time of hydrochlorothiazide, retention time of amlodipine, retention time of valsartan, asymmetry of hydrochlorothiazide peak, asymmetry of amlodipine peak, and asymmetry of valsartan peak) were chosen. Face centered central composite design enables an estimation of factors which have the most importance. After optimizing experimental conditions, a separation was conducted on a Zorbax C-8 (150 mm x 4.6 mm, 5 mu m) column with a mobile phase consisting of methanol-acetonitrile-acetate buffer 40: 20: 40 (v/v/v), pH adjusted to 3.5 with acetic acid, flow rate of 1 mL/min and column temperature of 40 C-deg. The method was successfully applied to the simultaneous separations of these active drug compounds in their commercial dosage forms.
机译:中央复合实验设计用于快速,简单,精确的高效液相色谱(HPLC)氢氯噻嗪,氨氯茶单和缬沙坦的组合形式。该方法避免了传统分析方法的缺点,这是耗时的,涉及大量运行,并且不允许建立多个相互作用参数。在分析物质的初步实验和物理化学特征的基础上,选择三个独立变量(移动相,流动相的pH和柱温)作为输入,同时作为依赖变量,六种反应(盐酸氢噻嗪的保留时间,保留时间选择氨基氯堇,缬沙坦的保留时间,盐酸盐的不对称性,氨氯莨菪碱峰的不对称性,缬沙坦峰的不对称性。面向中心的中央复合设计使估算具有最重要的因素。优化实验条件后,在氧化硼酸C-8(150mM×4.6mm,5μmM)柱上,具有由甲醇 - 乙腈 - 乙酸酯缓冲液40:20:40组成的流动相进行分离(v / v / v ),pH调节至3.5,用乙酸,流速为1ml / min,塔温40 c-deg。该方法成功地应用于以其商业剂型的这些活性药物化合物的同时分离。

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