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Chemometrics-Assisted UV Spectrophotometric Method for Determination of Metformin Hydrochloride and Glyburide in Pharmaceutical Tablets

机译:化学计量辅助紫外分光光度法测定药物片中盐酸二甲双胍和亚溴呢

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This study aims to estimate simultaneously metformin hydrochloride (MET) and glyburide (GLY) in a multicomponent tablets dosage form by spectrophotometric method using chemometric approaches such as principal component regression (PCR) and partial least-squares regression (PLS). Because of highly overlapped in UV spectra and difference proportions of two active ingredients, the conventional univariate calibration methods was not allowed without previous separation. The linearity ranges used to construct the calibration matrix were selected in the ranges from 40.00 to 200.00 mg L~(-1) for MET and from 1.00 to 10.00 mg L~(-1) for GLY. The absorbances were measured in the wavelength range of 200-400 nm, using ethanol as solvent. The resulting UV spectra were subjected to PCR and PLS algorithms and the optimum numbers of principal components (PCs) were selected according to prediction residual error sum of squares (PRESS) values of leave-one out cross-validation. The number of PCs for MET and GLY were found to be 5, 3 by PCR and 5, 3 by PLS, respectively. A set of synthetic mixtures was employed to verify the models and the performance of the models were shown in the values of the root mean square error in prediction (RMSEP). RMSEP values of MET and GLY were 1.806, 0.256 for PCR and 1.802, 0.185 for PLS, respectively. The suitable calibration models were applied to the analysis of these compounds in pharmaceutical formulation.
机译:本研究旨在通过使用化学成分回归(PCR)和部分最小二乘回归(PLS)的分光光度法,在多组分片剂剂型中同时估计盐酸二甲双胍(MET)和糖苷(GLY)以多组分片剂剂量形式。由于UV光谱高度重叠和两种活性成分的差异比例,因此不允许常规的单变量校准方法而无需先前的分离。用于构建校准矩阵的线性范围在40.00至200.00mg L〜(-1)的范围内,适用于3.00至10.00mg L〜(-1)。使用乙醇作为溶剂,在200-400nm的波长范围内测量吸光度。对所得的UV光谱进行PCR,PCR和PLS算法,并根据休假的预测残余误差和休假交叉验证的预测残余误差和值选择最佳数量的主成分(PC)。发现符号和用过的PC的数量分别是PCR和5,3,PCR的5,3。采用一组合成混合物来验证模型,模型的性能显示在预测(RMSEP)中的根均线误差的值中。 Met和Gly的RMSEP值分别为1.806,0.256,PCR分别为1.802,0.185。合适的校准模型应用于药物制剂中这些化合物的分析。

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