Department of Chemistry, M.V.Lomonosov Moscow State University, GSP-1, Leninskie Gory, 1-3, 119991 Moscow, Russia.
Laboratory of Multivariate Analysis and Global Modeling, Samara State Technical University, 244 Molodogvardeyskaya str., 443100 Samara, Russia.
Sensors (Basel). 2020 Sep 18;20(18):5351. doi: 10.3390/s20185351.
In this study we develop a variant of fluorescent sensor array technique based on addition of fluorophores to samples. A correct choice of fluorophores is critical for the successful application of the technique, which calls for the necessity of comparing different discrimination protocols. We used 36 honey samples from different sources to which various fluorophores were added (-(2,2'-bipyridyl) dichlororuthenium(II) (Ru(bpy)), zinc(II) 8-hydroxyquinoline-5-sulfonate (8-Ox-Zn), and thiazole orange in the presence of two types of deoxyribonucleic acid). The fluorescence spectra were obtained within 400-600 nm and treated by principal component analysis (PCA). No fluorophore allowed for the discrimination of all samples. To evaluate the discrimination performance of fluorophores, we introduced crossing number (CrN) calculated as the number of mutual intersections of confidence ellipses in the PCA scores plots, and relative position (RP) characterized by the pairwise mutual location of group centers and their most distant points. CrN and RP parameters correlated with each other, with total sensitivity (TS) calculated by Mahalanobis distances, and with the overall rating based on all metrics, with coefficients of correlation over 0.7. Most of the considered parameters gave the first place in the discrimination performance to Ru(bpy) fluorophore.
在这项研究中,我们开发了一种基于向样品中添加荧光团的荧光传感器阵列技术的变体。荧光团的正确选择对于该技术的成功应用至关重要,这就需要比较不同的判别方案。我们使用了来自不同来源的 36 个蜂蜜样本,向其中添加了各种荧光团((2,2'-联吡啶)二氯钌(II)(Ru(bpy))、锌(II)8-羟基喹啉-5-磺酸盐(8-Ox-Zn)和噻唑橙,同时存在两种类型的脱氧核糖核酸)。荧光光谱在 400-600nm 范围内获得,并通过主成分分析(PCA)进行处理。没有一种荧光团可以区分所有的样本。为了评估荧光团的判别性能,我们引入了交叉数(CrN),它被计算为 PCA 得分图中置信椭圆相互交叉的数量,以及相对位置(RP),它由群中心及其最远距离点的相互位置来描述。CrN 和 RP 参数相互关联,与 Mahalanobis 距离计算的总灵敏度(TS)以及基于所有指标的总体评分相关,相关系数超过 0.7。在判别性能方面,大多数考虑的参数都将 Ru(bpy)荧光团列为第一。