Diehl Katharine L, Ivy Michelle Adams, Rabidoux Scott, Petry Stefan Matthias, Müller Günter, Anslyn Eric V
Department of Chemistry, University of Texas at Austin, Austin, TX 78712;
Institute for Computational Engineering and Science, University of Texas at Austin, Austin, TX 78712;
Proc Natl Acad Sci U S A. 2015 Jul 28;112(30):E3977-86. doi: 10.1073/pnas.1508848112. Epub 2015 Jul 14.
Glycerides are of interest to the areas of food science and medicine because they are the main component of fat. From a chemical sensing perspective, glycerides are challenging analytes because they are structurally similar to one another and lack diversity in terms of functional groups. Furthermore, because animal and plant fat consists of a number of stereo- and regioisomeric acylglycerols, their components remain challenging analytes for chromatographic and mass spectrometric determination, particularly the quantitation of species in mixtures. In this study, we demonstrated the use of an array of cross-reactive serum albumins and fluorescent indicators with chemometric analysis to differentiate a panel of mono-, di-, and triglycerides. Due to the difficulties in identifying the regio- and stereochemistry of the unsaturated glycerides, a sample pretreatment consisting of olefin cross-metathesis with an allyl fluorescein species was used before array analysis. Using this simple assay, we successfully discriminated 20 glycerides via principal component analysis and linear discriminant analysis (PCA and LDA, respectively), including stereo- and regioisomeric pairs. The resulting chemometric patterns were used as a training space for which the structural characteristics of unknown glycerides were identified. In addition, by using our array to perform a standard addition analysis on a mixture of triglycerides and using a method introduced herein, we demonstrated the ability to quantitate glyceride components in a mixture.
甘油酯在食品科学和医学领域备受关注,因为它们是脂肪的主要成分。从化学传感的角度来看,甘油酯是具有挑战性的分析物,因为它们在结构上彼此相似,并且在官能团方面缺乏多样性。此外,由于动植物脂肪由多种立体和区域异构的酰基甘油组成,其成分对于色谱和质谱测定而言仍然是具有挑战性的分析物,尤其是混合物中各物种的定量分析。在本研究中,我们展示了使用一组交叉反应血清白蛋白和荧光指示剂,并结合化学计量分析来区分一组单甘油酯、二甘油酯和三甘油酯。由于难以确定不饱和甘油酯的区域和立体化学结构,在阵列分析之前使用了一种样品预处理方法,即与烯丙基荧光素进行烯烃交叉复分解反应。通过这种简单的分析方法,我们分别通过主成分分析和线性判别分析(PCA和LDA)成功区分了20种甘油酯,包括立体和区域异构体对。所得的化学计量模式被用作一个训练空间,用于识别未知甘油酯的结构特征。此外,通过使用我们的阵列对甘油三酯混合物进行标准加入分析,并使用本文介绍的方法,我们展示了定量混合物中甘油酯成分的能力。