Navalón A, Blanc R, Del Olmo M, Vilchez J L
Department of Analytical Chemistry, University of Granada, E-18071, Granada, Spain.
Talanta. 1999 Feb;48(2):469-75.
Determination of naproxen, salicylic acid and acetylsalicylic acid has been carried out in mixtures of up to three components by recording emission fluorescence spectra between 300 and 520 nm with an excitation wavelength of 290 nm. The excitation-emission spectra of these compounds are strongly overlapped, which does not permit their direct determination without previous separation by conventional methodologies. Here, a method is proposed for the determination of these chemicals by the use of a full-spectrum multivariate calibration method, partial least-squares (PLS). The experimental calibration matrix was designed with 18 samples. The concentrations were varied between 0.1 and 1.0 mug ml(-1) for naproxen, 0.5 and 5.0 mug ml(-1) for salicylic acid and from 2.0 to 12.0 mug ml(-1) for acetylsalicylic acid. The cross-validation method was used to select the number of factors. To check the accuracy of the proposed method, the optimized model, obtained using PLS-1, was applied to the determination of these compounds in pharmaceuticals and human serum samples previously spiked with different amounts of each chemical.
通过在290 nm激发波长下记录300至520 nm之间的发射荧光光谱,对含有多达三种成分的混合物中的萘普生、水杨酸和乙酰水杨酸进行了测定。这些化合物的激发-发射光谱强烈重叠,这使得在没有通过传统方法预先分离的情况下无法直接对其进行测定。在此,提出了一种使用全光谱多元校准方法——偏最小二乘法(PLS)来测定这些化学物质的方法。实验校准矩阵由18个样品设计而成。萘普生的浓度在0.1至1.0 μg ml⁻¹之间变化,水杨酸的浓度在0.5至5.0 μg ml⁻¹之间变化,乙酰水杨酸的浓度在2.0至12.0 μg ml⁻¹之间变化。使用交叉验证方法来选择因子数量。为检验所提方法的准确性,将使用PLS-1获得的优化模型应用于测定预先添加了不同量每种化学物质的药物和人血清样品中的这些化合物。