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高效液相色谱法在混合模式离子交换反相和反相柱上分离红酒花色苷的比较。

Comparison of high-performance liquid chromatography separation of red wine anthocyanins on a mixed-mode ion-exchange reversed-phase and on a reversed-phase column.

机构信息

Universidad de Concepción, Departamento de Análisis Instrumental, Chile.

出版信息

J Chromatogr A. 2010 Sep 3;1217(36):5710-7. doi: 10.1016/j.chroma.2010.07.014. Epub 2010 Jul 15.

Abstract

Anthocyanins, which confer the characteristic color to red wine, can be used as markers to classify wines according to the grape variety. It is a complex separation that requires very high chromatographic efficiency, especially in the case of aged red wines, due to the formation of pyranoanthocyanins. A coelution between these kinds of compounds can affect the R(ac/coum) ratio of aged wines, and might lead to false results when classifying the wine variety. In 2007, the use of a novel mixed-mode ion-exchange reversed-phase column was reported to separate anthocyanins extracted from grapes of Vitis labrusca with different selectivity than C-18 columns. In the present work, the separation of anthocyanins including pyranoanthocyanins in young and aged Cabernet Sauvignon wines and other varieties is evaluated. The most interesting contributions of this research are the different elution order and selectivity obtained for anthocyanins and pyranoanthocyanins (only formed in wine), compared with those observed in C-18 stationary phases. Also interesting is the separation of the polymeric fraction, which elutes as a clearly separated peak at the chromatogram's end. However, a comparison with a high efficiency C-18 column with the same dimensions and particle size demonstrated that the tested mixed-mode column shows broader peaks with a theoretical plate number below 8000, for malvidin-3-glucoside peak, while it can be up to 10 times higher for a high efficiency C-18 column, depending on the column manufacturer. Under the tested conditions, in mixed-mode phase, the analysis time is almost twice that of a C-18 column with the same dimensions and particle size. A mixed-mode phase with increased efficiency should provide an interesting perspective for separation of anthocyanins in wine, due to its improved selectivity, combined with a useful role in a second-dimension separation in preparative anthocyanin chromatography.

摘要

花色苷使红酒呈现出特有的颜色,可以作为根据葡萄品种对葡萄酒进行分类的标志物。这是一种复杂的分离,需要非常高的色谱效率,特别是在陈年红酒的情况下,由于吡喃花色苷的形成。这些化合物的共洗脱会影响陈年葡萄酒的 R(ac/coum)比值,并可能导致在对葡萄酒品种进行分类时产生错误结果。2007 年,有人报道了使用新型混合模式离子交换反相柱来分离不同品种的葡萄中提取的花色苷,其选择性与 C-18 柱不同。在本工作中,评估了年轻和陈年赤霞珠葡萄酒以及其他品种的花色苷和吡喃花色苷(仅在葡萄酒中形成)的分离。这项研究最有趣的贡献是,与在 C-18 固定相上观察到的相比,花色苷和吡喃花色苷(仅在葡萄酒中形成)获得了不同的洗脱顺序和选择性。聚合物部分的分离也很有趣,它在色谱图的末端作为一个明显分离的峰洗脱。然而,与具有相同尺寸和粒径的高效 C-18 柱进行比较表明,测试的混合模式柱显示出更宽的峰,理论板数低于 8000,对于矢车菊素-3-葡萄糖苷峰,而对于高效 C-18 柱,其理论板数可以高达 10 倍,这取决于柱制造商。在测试条件下,在混合模式下,分析时间几乎是具有相同尺寸和粒径的 C-18 柱的两倍。由于其选择性提高,并且在制备花色苷色谱中的二维分离中具有有用的作用,因此,增加效率的混合模式相为葡萄酒中花色苷的分离提供了一个有趣的前景。

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