Department of Chemistry, Faculty of Mathematical, Physical and Natural Sciences, University of Rome "La Sapienza", P.le Aldo Moro 5, 00185, Rome, Italy.
Ph.D. School in Natural Science and Engineering, University of Verona, Strada Le Grazie, 15, 37129, Verona, Italy.
J Pharm Biomed Anal. 2019 Feb 5;164:759-767. doi: 10.1016/j.jpba.2018.11.042. Epub 2018 Nov 19.
Analysis of carotenoids is very complex and demanding in terms of both separation and detection. In this article, an analytical strategy relying on high-performance liquid chromatography-photodiode array detection-tandem mass spectrometry (HPLC-PAD-MS/MS) is presented for the large-scale screening of these phytochemicals. Separation was realized by means of Non-Aqueous Reversed Phase (NARP) chromatography on a triacontyl stationary phase kept at subambient temperature, using a mobile phase compatible with atmospheric pressure chemical ionization (APCI). The standards of 14 analytes were used to optimize the method and to predict the chromatographic behaviour of untargeted carotenoids. MS and MS/MS data, obtained during Information Dependent Acquisition (IDA) experiments, were utilized to set up a sensitive HPLC- selected reaction monitoring (SRM) method. Relative abundance between SRM ion currents (ion ratio) allowed the MS distinction of structural isomers (for example, bicyclic, monocyclic and acyclic isomers), while the identification of geometrical isomers was based on Q and fine structure, as calculated from UV-vis spectra. The comparison of LC-PAD- SRM chromatograms, acquired after applying two different extraction procedures (matrix solid-phase dispersion and overnight cold saponification), allowed verifying that sweet peppers are a good source of xanthophylls, prevalently occurring as esterified forms. The overall strategy could identify more than 40 carotenoids in some sweet pepper varieties (Jolly, horn and sweet chili pepper) available on the Italian and European food market.
类胡萝卜素的分析在分离和检测方面非常复杂和苛刻。本文介绍了一种基于高效液相色谱-光电二极管阵列检测-串联质谱(HPLC-PAD-MS/MS)的分析策略,用于大规模筛选这些植物化学物质。分离是通过在亚环境温度下使用三癸基固定相进行非水反相(NARP)色谱实现的,使用与大气压化学电离(APCI)兼容的流动相。使用 14 种分析物的标准品对方法进行了优化,并预测了未靶向类胡萝卜素的色谱行为。在信息依赖采集(IDA)实验中获得的 MS 和 MS/MS 数据用于建立灵敏的高效液相色谱-选择反应监测(SRM)方法。在 SRM 离子电流(离子比)之间的相对丰度允许通过 MS 区分结构异构体(例如,双环、单环和无环异构体),而几何异构体的鉴定则基于 Q 和精细结构,从紫外-可见光谱计算得出。比较应用两种不同提取方法(基质固相分散和隔夜冷皂化)后获得的 LC-PAD-SRM 色谱图,验证了甜椒是叶黄素的良好来源,主要以酯化形式存在。总体策略可以在一些意大利和欧洲食品市场上的甜椒品种(Jolly、horn 和甜辣椒)中鉴定出 40 多种类胡萝卜素。