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ASSESSMENT OF DIFFERENT PARTIAL LEAST SQUARES VARIANTS FOR DETERMINATION OF BINARY-DRUG SYSTEM EXHIBITING INTENSE SPECTRAL OVERLAP

机译:评估不同部分最小二乘变体的测定,用于表现出强烈谱重叠的二元药物体系

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摘要

Amoxicillin (AMO) and clavulanic acid (CLA) are popular activate pharmaceutical ingredients that are widely used due to their efficient medical activity. However, this binary system suffers from intense spectral overlap (93.6%). Inspite of the intense spectral overlap and serious noniinearity in the current system, both drugs were accurately quantified by multivariate calibration. The performance of different partial least squares PLS variants (NIPALS, SIMPLS, Kernel and Bidiagonalization) for accurate quantification of AMO-CLA in commercial formulation was outlined. Partial response and partial residual plots confirmed a serious noniinearity in the binary system. Compared to other algorithms, PLS-Kernel exhibited a better performance for drugs quantification and seven latent variables were necessary for accurate quantification: 94.0(9.6%) and 95.6(5.2%) for AMO and CLA, respectively. The intense spectral overlap, noniinearity, and non-modelled excipients are effectively handled by PLS-Kernel calibration.
机译:Amoxicillin(AMO)和克拉维酸(CLA)是普遍的活化药物成分,其由于其有效的医学活性而被广泛使用。然而,这种二进制系统遭受强烈的光谱重叠(93.6%)。电流系统中强烈的光谱重叠和严重的非线性的影响,通过多变量校准准确地量化两种药物。概述了不同部分最小二乘PLS变体(NIPALS,SIMPLS,核和BIDIAGALICALALICALACIAL)的性能,用于精确定量商业制剂中的AMO-CLA。部分响应和部分残留地块证实了二元系统中的严重非线性。与其他算法相比,PLS-kernel表现出更好的药物量化,分别为七种潜在的变量进行准确定量:94.0(9.6%)和95.6(5.2%)的AMO和CLA。通过PLS-kernel校准有效处理强烈的频谱重叠,非线性和非建模赋形剂。

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