Department of Analytical Chemistry, University of Córdoba, Córdoba, Spain.
Department of Chemistry, Institute of Analytical Chemistry, University of Natural Resources and Life Sciences, Vienna, Austria.
Electrophoresis. 2021 Feb;42(4):473-481. doi: 10.1002/elps.202000274. Epub 2020 Dec 8.
Rugged analytical methods for the screening and identity confirmation of anthocyanins require a dedicated sample preparation, chromatographic setup, and the reliable generation of multiple identification points to confirm identity against the wide range of phenolic compounds typically present in food, beverage, and plant material samples. To this end, combinations of spectroscopic and mass spectrometric detection are frequently employed for this application to provide higher confidence in the absence of authentic standards. In the present work, low-field drift tube ion mobility (DTIM) separation is evaluated for this task using a LC-DAD-DTIM-QTOFMS method. DTIM-MS allows accurate determination of collision cross sections ( CCS) for all analysed compounds as well as a precise alignment tool for reconciling fragment and precursor ions in data independent acquisition mode. The presented approach thereby allows for an anthocyanin screening method taking true advantage of all dimensions of the analytical platform: relative retention (RPLC), UV/VIS absorption spectrum, accurate mass, CCS , and confirmed high-resolution fragment ions. From the analysis of authentic standards and several berry samples primarily from the Vaccinium genus, Level 1 confirmation data for six anthocyanins from the cyanidin family, and Level 2 confirmation for a further 29 anthocyanins confirmed in berry samples is provided. The method and accompanying dataset provided as part of this work provides a means to develop anthocyanin screening methods using the ion mobility dimension as an additional alignment and filtering parameter in data independent analysis acquisition across any LC-IM-MS platform.
用于筛选和鉴定花色苷的稳健分析方法需要专门的样品制备、色谱设置,以及可靠地生成多个鉴定点,以针对食品、饮料和植物材料样品中通常存在的广泛酚类化合物来确认其身份。为此,通常采用光谱和质谱检测的组合来应用于此,以在没有真实标准的情况下提供更高的可信度。在本工作中,使用 LC-DAD-DTIM-QTOFMS 方法评估了低场漂移管离子淌度 (DTIM) 分离在该任务中的应用。DTIM-MS 允许准确确定所有分析化合物的碰撞截面 (CCS),并且是在数据非依赖性采集模式下协调碎片离子和前体离子的精确对齐工具。通过该方法,可以建立花色苷筛选方法,充分利用分析平台的所有维度:相对保留时间 (RPLC)、紫外/可见吸收光谱、精确质量、CCS 和确认的高分辨率碎片离子。通过对真实标准品和主要来自 Vaccinium 属的几种浆果样品的分析,提供了来自矢车菊家族的六种花色苷的一级鉴定数据,以及在浆果样品中鉴定出的另外 29 种花色苷的二级鉴定数据。本工作中提供的方法和伴随的数据集提供了一种手段,可在任何 LC-IM-MS 平台上,将离子淌度维度作为额外的对齐和过滤参数,用于数据非依赖性分析采集,从而开发花色苷筛选方法。