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Study of the mass spectrometric behaviors of anthocyanins in negative ionization mode and its applications for characterization of anthocyanins and non-anthocyanin polyphenols

机译:花色素苷在负电离模式下的质谱行为研究及其在花色素苷和非花色素苷多酚表征中的应用

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摘要

Traditionally, anthocyanin analysis in mass spectrometry is carried out in the positive ionization mode only. A study of the mass spectrometric behaviors of anthocyanins in the negative ionization mode revealed interesting characteristics that was not previously reported. It can be used to differentiate anthocyanins from other non-anthocyanin polyphenols. METHODS An ultra-high-performance liquid chromatography with high-resolution mass spectrometry (U-HPLC/HRMS) method was developed. The method used multiple-stage mass fragmentation in both the negative and positive ion modes. The whole cycle time of the new method is 1.8 s for two full scans and six data-dependent scans. RESULTS The new strategy found, in the negative ionization mode, a series of characteristic ions, e.g. [M-2H] ~-, [M-2H + H _2O] -, formic acid adducts, and doubly charged ions were observed for the MS analysis of anthocyanins. The characteristic ions can be used for identification and differentiation of anthocyanins and non-anthocyanin phenolic compounds. Comprehensive studies were performed on the differentiation of anthocyanins and non-anthocyanin polyphenols in blueberry (Vaccinium cyanococcus), Hongcaitai (Brassica compestris L. var. purpurea Bailey), and red radish (Raphanus sativus var. longipinnatus 'Shinrimei'). CONCLUSIONS The data generated from a single LC run enables rapid and reliable differentiation and identification of anthocyanins and non-anthocyanins in botanicals and foods. Published 2012. This article is a US Government work and is in the public domain in the USA.
机译:传统上,质谱中的花色苷分析仅在正电离模式下进行。对花色素苷在负电离模式下的质谱行为的研究揭示了有趣的特征,以前没有报道过。它可用于区分花色苷和其他非花色苷多酚。方法建立了超高效液相色谱-高分辨率质谱法(U-HPLC / HRMS)。该方法在负离子和正离子模式下均使用了多级质量裂解。对于两次完整扫描和六个与数据相关的扫描,新方法的整个循环时间为1.8 s。结果该新策略在负电离模式下发现了一系列特征离子,例如观察到[M-2H]〜-,[M-2H + H _2O]-,甲酸加合物和双电荷离子用于花色苷的MS分析。特征离子可用于花青素和非花青素酚类化合物的鉴定和区分。对蓝莓(Vaccinium cyanococcus),红菜(Brassica compestris L. var。purpurea Bailey)和红萝卜(Raphanus sativus var。longipinnatus'Shinrimei')中花色苷和非花色素多酚的分化进行了综合研究。结论从单次LC运行中获得的数据可以快速,可靠地区分和鉴定植物药和食品中的花色苷和非花色苷。 2012年出版。本文是美国政府的工作,在美国属于公共领域。

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