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采用全面二维亲水性相互作用×反相液相色谱法与二极管阵列检测和串联质谱法对葡萄籽原花青素进行表征。

Characterization of grape seed procyanidins by comprehensive two-dimensional hydrophilic interaction × reversed phase liquid chromatography coupled to diode array detection and tandem mass spectrometry.

机构信息

Laboratory of Foodomics, Institute of Food Science Research (CIAL, CSIC-UAM), Campus Cantoblanco, Madrid, Spain.

出版信息

Anal Bioanal Chem. 2013 May;405(13):4627-38. doi: 10.1007/s00216-012-6567-5. Epub 2012 Dec 8.

Abstract

In this work, the development and optimization of a new methodology to analyze grape seed procyanidins based on the application of two-dimensional comprehensive LC is presented. This two-dimensional method involves the use of a microbore column containing a diol stationary phase in the first dimension coupled to either a C18 partially porous short column or a C18 monolithic column in the second dimension. The orthogonal hydrophilic interaction × reversed phase liquid chromatography (HILIC×RP-LC) system is interfaced through a ten-port two-position switching valve. The optimized HILIC×RP-LC separation followed by diode array and tandem mass spectrometry detection (HILIC×RP-LC-DAD-MS/MS) made possible the direct analysis of a complex grape seed extract and allowed the tentative identification of 43 flavan-3-ols, including monomers and procyanidin oligomers till a polymerization degree of 7 units with different galloylation degrees. To the best of our knowledge, this is the first time that this powerful analytical technique is employed to characterize complex procyanidin samples. This work successfully demonstrates the great capabilities of the HILIC×RP-LC-DAD-MS/MS coupling for the direct analysis of very complex natural samples like grape seeds.

摘要

本工作提出了一种基于二维全面液相色谱应用的新方法,用于分析葡萄籽原花青素。这种二维方法涉及在第一维中使用含有二醇固定相的微径柱,与第二维中的 C18 部分多孔短柱或 C18 整体柱相连接。亲水相互作用×反相液相色谱(HILIC×RP-LC)系统通过十通二位切换阀连接。优化的 HILIC×RP-LC 分离,随后二极管阵列和串联质谱检测(HILIC×RP-LC-DAD-MS/MS)使得直接分析复杂的葡萄籽提取物成为可能,并允许对 43 种黄烷-3-醇进行推测鉴定,包括单体和原花青素低聚物,聚合度高达 7 个单位,不同的酯化度。据我们所知,这是首次将这种强大的分析技术应用于复杂原花青素样品的表征。这项工作成功地证明了 HILIC×RP-LC-DAD-MS/MS 联用对于直接分析复杂天然样品(如葡萄籽)的巨大能力。

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