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首页> 外文期刊>Journal of Analytical Methods in Chemistry >Reusing Reverse-Phase Chromatographic Behavior for Efficient Differentiation of Both Positional and Geometrical Isomers of Dicaffeoylquinic Acids
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Reusing Reverse-Phase Chromatographic Behavior for Efficient Differentiation of Both Positional and Geometrical Isomers of Dicaffeoylquinic Acids

机译:重用反相色谱行为,以便有效地分化二酰亚二酸的位置和几何异构体

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摘要

Dicaffeoylquinic acids (diCQAs) are plant metabolites and undergo trans-o's-isomerization when exposed to UV irradiation. As such, diCQAs exist in both trans-and cts-configuralions and amplify the already complex plant metabolome. However, analytical differentiation of these geometrical isomers using mass spectrometry (MS) approaches has proven to be extremely challenging. Exploring the chromatographic space to develop possible conditions that would aid in differentially separating and determining the elution order of these isomers is therefore imperative. In this study, simple chromatographic parameters, such as column chemistry (phenyl versus alkyl), mobile phase composition (methanol or acetonitrile), and column temperature, were investigated to aid in the separation of diCQA geometrical isomers. The high-performance liquid chromatography photodiode array (HPLC-PDA) chromatograms revealed four isomers post UV irradiation of diCQA authentic standards. The elution profile/order was seen to vary on different reverse-phase column chemistries (phenyl versus alkyl) using different mobile phase composition. Here, the elution profile/order on the phenyl-derived column matrices (with methanol as the mobile phase composition) was observed to be relatively reproducible as compared to the alkyl (C-18) columns. Chromatographic resolution of diCQA geometrical isomers can be enhanced with an increase in column temperature. Lastly, the study highlights that chromatographic elution order/profile cannot be relied upon to fathom the complexity of isomeric plant metabolites.
机译:双结酰喹酸(DICQAs)是植物代谢物,当暴露于紫外线照射时经历Trans-O'somerization。因此,DICQAS存在于跨和CTS-Configwuritions中,并扩增已经复杂的植物代谢物。然而,使用质谱(MS)方法的这些几何异构体的分析分化已被证明是非常具有挑战性的。因此,探索色谱空间以开发有助于差异分离和确定这些异构体的洗脱顺序的可能条件。在该研究中,研究了简单的色谱参数,例如柱化学(苯基与烷基),流动相组合物(甲醇或乙腈)和柱温,以帮助DICQA几何异构体的分离。高性能液相色谱光电二极管阵列(HPLC-PDA)色谱图揭示了DICQA真实标准的UV照射后四个异构体。使用不同的流动相组合物看出洗脱曲线/顺序在不同的反相柱化学物质(苯基与烷基)上变化。这里,与烷基(C-18)柱相比,观察到苯基衍生的柱基质上的洗脱曲线/顺序(用甲醇作为流动相组合物)相对可再现。可以增强DICQA几何异构体的色谱分辨率,随着柱温的增加,可以增强。最后,研究突出显示色谱洗脱秩序/型材不能依赖于异构植物代谢物的复杂性。

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