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Using sheath-liquid reagents for capillary electrophoresis-mass spectrometry: Application to the analysis of phenolic plant extracts

机译:使用鞘液试剂进行毛细管电泳质谱法:在酚类植物提取物分析中的应用

摘要

The combination of CE and MS is now a widely used tool that can provide a combination of high resolution separations with detailed structural information. Recently, we highlighted the benefits of an approach to add further functionality to this well-established hyphenated technique, namely the possibility to perform chemical reactions within the sheath-liquid of the CE-MS interface . Apart from using hydrogen/deuterium exchange for online determination of numbers of exchangeable protons, the addition of DPPH• (2,2-diphenyl-1-picrylhydrazyl) to the sheath-liquid can be used as a fast screening tool for studying antioxidant characteristics of individual components. Such a CE-MS methodology allows rapid and information-rich analysis with minimal reagent and sample consumption to be performed. In the present work, we demonstrate the applicability of this approach for the characterization of phenolic plant extracts from the Labiatae family, namely Rosmarinus officinalis and Melissa officinalis. Using the described approach, a wide range of compounds (15 and 13 phenolic compounds, respectively) could be confidently identified using a combination of high resolution CE-MS separations with implementation of online deuterium exchange and DPPH• reactions. These compounds included polyphenols, phenolic acids, and triterpene acids. In conjunction with online MS/MS experiments, extensive structural information for aglyconic and glycosylated antioxidants present in the extracts could be obtained using simple experimental changes, which can be carried out prior to the purchasing of expensive chemical standards or the time-consuming preparative isolation of individual compounds.
机译:CE和MS的组合现已成为一种广泛使用的工具,可以提供高分辨率分离与详细结构信息的组合。最近,我们强调了一种为这种公认的连字技术添加更多功能的方法的好处,即在CE-MS界面的鞘液内进行化学反应的可能性。除了使用氢/氘交换在线确定可交换质子的数量外,在鞘液中添加DPPH•(2,2-二苯基-1-吡啶基肼基)还可以用作研究脂质抗氧化特性的快速筛选工具。单个组件。这种CE-MS方法论可实现快速且信息丰富的分析,并且只需最少的试剂和样品即可完成。在目前的工作中,我们证明了该方法对表征唇形科家族的酚类植物提取物(即迷迭香和蜜蜂花)的适用性。使用所描述的方法,结合使用高分辨率的CE-MS分离和在线氘交换和DPPH•反应的组合,可以确定各种化合物(分别为15和13种酚类化合物)。这些化合物包括多酚,酚酸和三萜酸。结合在线MS / MS实验,可以使用简单的实验更改获得提取物中存在的糖苷酸和糖基化抗氧化剂的广泛结构信息,这可以在购买昂贵的化学标准品或费时的制备性分离之前进行单个化合物。

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