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Simultaneous analysis of first-line anti-tuberculosis drugs in tablets by UV spectrophotometry compared to capillary zone electrophoresis

机译:紫外分光光度法与毛细管区带电泳同时分析片剂中的一线抗结核药物

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The development and optimization of a novel UV spectrophotometric methodology was proposed for simultaneous analysis of ethambutol (ETB), isoniazid (ISO), rifampicin (RIF) and pyrazinamide (PYR), using multivariate calibration based on the partial least squares method (PLS). The methodology was successfully applied for analysis of four-drug fixed dose combination (4-FDC) tablets used for tuberculosis treatment. A 34 Box-Behnken design, with triplicate in central point, was used for sample preparation in the calibration step. In the present case, nine latent variables were chosen for the model development that presented the smallest RMSECV and explain 98.76% of data variance in Y block (concentrations of ETB ISO, RIF and PYR) and 99.93% of data variance in X block (spectral data). PLS models for ETB, ISO, RIF and PYR presented RMSEP and R2 values of 0.23 mg L?1 and 0.971; 0.14 mg L?1 and 0.731; 0.11 mg L?1 and 0.990 and 0.57 mg L?1 and 0.972, respectively. A validation step was performed based on the comparison between the UV spectrophotometric proposed methodology and capillary zone electrophoresis (CZE) in 4-FDC real samples and no significant difference was found between two methodologies at 95% of confidence level.
机译:提出了一种新型紫外分光光度法的开发和优化方法,用于基于偏最小二乘方法(PLS)的多元校准,同时分析乙胺丁醇(ETB),异烟肼(ISO),利福平(RIF)和吡嗪酰胺(PYR)。该方法已成功地用于分析用于结核病治疗的四药固定剂量组合(4-FDC)片剂。在校准步骤中,使用一个三重中心的34 Box-Behnken设计进行样品制备。在当前情况下,为模型开发选择了9个潜在变量,这些变量呈现出最小的RMSECV并解释了Y块中98.76%的数据方差(ETB ISO,RIF和PYR的浓度)和X块中99.93%的数据方差(光谱数据)。 ETB,ISO,RIF和PYR的PLS模型的RMSEP和R2值分别为0.23 mg L?1和0.971; 0.14mg L 2和0.731;分别为0.11mgLδ1和0.990和0.57mgLδ1和0.972。基于4-FDC真实样品中建议的紫外分光光度法和毛细管区带电泳(CZE)之间的比较,执行了验证步骤,并且在95%的置信度水平下,两种方法之间均未发现明显差异。

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