首页> 外文期刊>Analytica chimica acta >Multi-way partial least-squares and residual bi-linearization for the direct determination of monohydroxy-polycyclic aromatic hydrocarbons on octadecyl membranes via room-temperature fluorescence excitation emission matrices
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Multi-way partial least-squares and residual bi-linearization for the direct determination of monohydroxy-polycyclic aromatic hydrocarbons on octadecyl membranes via room-temperature fluorescence excitation emission matrices

机译:双向偏最小二乘和残差双线性化,通过室温荧光激发发射矩阵直接测定十八烷基膜上的单羟基多环芳烃

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摘要

Multi-way partial least-squares (N-PLS) is combined to the residual bi-linearization procedure (RBL) for the direct analysis of metabolites of polycyclic aromatic hydrocarbons in urine samples. Metabolite analysis is carried out via a two-step experimental procedure based on solid-phase extraction and room temperature fluorescence spectroscopy. Excitation-emission matrices are recorded from octadecyl (C18) membranes that serve as solid substrates for sample extraction and spectroscopic measurements. Excellent metabolite recoveries were obtained in all cases, which varied from 96.2 ±1.35% (9-hydroxyphenanthrene) to 99.7 ± 0.49% (3-hydroxybenzo[a]pyrene). Background correction of extraction membranes is carried out with a new alternating least-squares (ALS) procedure adapted to second order data. The performance of N-PLS/RBL is compared to the well-established multivariate curve resolution-alternating least-squares (MCR-ALS) algorithm. Both algorithms provided similar analytical figures of merit, including their ability to handle unknown interference in urine samples. With only 10 mL of sample, the limits of detection varied between 0.06-0.08 ng ml~(-1) (1-hydroxypyrene)and 0.016-0.018 ng mL~(-1) (2-hydroxyfluorene). When compared to previously reported univariate calibration data, the limits of detection via N-PLS/RBL and MCR-ALS are approximately one order of magnitude higher. This was somehow expected due to the effect of unexpected components in multivariate figures of merit, i.e. a more realistic approach to the analysis of metabolites in human urine samples.
机译:多方偏最小二乘(N-PLS)与残留双线性化程序(RBL)结合使用,可直接分析尿液样品中多环芳烃的代谢物。通过基于固相萃取和室温荧光光谱的两步实验程序进行代谢物分析。从十八烷基(C18)膜上记录激发-发射矩阵,该膜用作样品提取和光谱测量的固体底物。在所有情况下,均获得了优异的代谢物回收率,从96.2±1.35%(9-羟基菲)到99.7±0.49%(3-羟基苯并[a]])不等。提取膜的背景校正通过适用于二阶数据的新的交替最小二乘(ALS)程序进行。将N-PLS / RBL的性能与公认的多元曲线分辨率交替最小二乘(MCR-ALS)算法进行比较。两种算法都提供了相似的性能指标,包括它们处理尿液样本中未知干扰的能力。仅使用10 mL样品,检出限在0.06-0.08 ng mL〜(-1)(1-羟基py)和0.016-0.018 ng mL〜(-1)(2-羟基芴)之间变化。当与先前报告的单变量校准数据进行比较时,通过N-PLS / RBL和MCR-ALS的检测限大约高出一个数量级。由于多变量品质因数中意想不到的成分的影响,因此某种程度上是可以预期的,即,一种更现实的方法来分析人尿液样品中的代谢物。

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