首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Improvement of multivariate calibration techniques applied to 1-to-N component mixtures through an optimized experimental design
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Improvement of multivariate calibration techniques applied to 1-to-N component mixtures through an optimized experimental design

机译:通过优化的实验设计改进了应用于1-to-N组分混合物的多元校准技术

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This work describes a novel experimental design aimed at building a calibration set constituted by samples containing a different number of components. The algorithm performs a reiteration process to maintain the number of samples at the lower value as possible and to ensure an homogeneous presence of all the concentration levels. The mixture design was applied to a drug system composed by one-to-four components in different combination. The resolution of the system was performed by three multivariate UV spectrophotometric, methods utilizing principal component regression (PCR) and partial last squares (PLS1 and PLS2) algorithms. The calibration set was composed by 61 references on four concentration levels, including 15 samples for each quaternary, ternary and binary composition and 16 one-component samples. The calibration models were optimized through a careful selection of number of factors and wavelength zones, in such a way as to remove interferences from instrumental noise and excipients present in the pharmaceutical formulations. The prediction power of the regression models were verified and compared by analysis of an external prediction set. The models were finally used to assay pharmaceutical specialities containing the studied drugs in one-to-four formulations. (c) 2006 Elsevier B.V. All rights reserved.
机译:这项工作描述了一种新颖的实验设计,旨在建立由包含不同数量组分的样品构成的校准集。该算法执行重复过程,以将样本数量保持在尽可能低的值,并确保所有浓度水平的均一存在。将混合物设计应用于由1-4种不同组合组成的药物系统。该系统的分辨率是通过三种多元紫外分光光度法,利用主成分回归(PCR)和部分最后平方(PLS1和PLS2)算法进行的。校准集由61个参考值组成,涉及四个浓度水平,包括每个四元,三元和二元组成的15个样品和16个单组分样品。通过仔细选择因素和波长区域的数量来优化校准模型,以消除来自药物制剂中仪器噪声和赋形剂的干扰。通过对外部预测集的分析,验证并比较了回归模型的预测能力。该模型最终用于分析以1-4种配方包含所研究药物的药物专业。 (c)2006 Elsevier B.V.保留所有权利。

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