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通过机械化学法生成 N,N-双甘氨酰甘氨酸及其异构体组成的 MS/MS 特征分析。

Mechanochemical generation of N,N-diglycated glycine and MS/MS characterization of its isomeric composition.

机构信息

Department of Food Science & Agricultural Chemistry, McGill University, 21111 Lakeshore, Ste Anne de Bellevue, Quebec H9X 3V9, Canada.

Department of Biochemistry, University of Missouri, Columbia, MO 65211, USA.

出版信息

Food Chem. 2022 Dec 15;397:133757. doi: 10.1016/j.foodchem.2022.133757. Epub 2022 Jul 22.

Abstract

The formation of Schiff bases and Amadori rearrangement products (ARP) during the Maillard reaction in solutions is well documented, but their studies in solid-state are limited. Here we report mass-spectrometric characterization of N,N-diglycated Schiff bases and Amadori products obtained during ball milling of amino acids and glucose. Signal intensities of the diglycated adducts in mass-spectra depended on type of the amino acid and the MS ionization mode. Glycine provided for the highest yields of N,N-diglycation, followed by lysine, when the reaction was analyzed under negative ionization mode. Using diagnostic MS/MS fragmentation, we were able to distinguish between Schiff-Schiff, Schiff-Amadori, or Amadori-Amadori isomers. Milling glucose/glycine model for 30 min at ambient temperature produced diglycated glycine as a mixture of the three possible isomers in approximately equal molar proportions. Milling of synthetic Schiff base or ARP of glycine with [U-C]-glucose generated the same but partially labelled isomers, with respective predominance of N,N-diglucosyl-glycine or N,N-difructosyl-glycine.

摘要

在溶液中的美拉德反应中,席夫碱和阿玛多里重排产物(ARP)的形成已有大量文献记载,但它们在固态中的研究却很有限。在这里,我们报告了在氨基酸和葡萄糖的球磨过程中获得的 N,N-二糖基化席夫碱和阿玛多里产物的质谱特征。质谱中双糖加合物的信号强度取决于氨基酸的类型和 MS 电离模式。当在负离子模式下分析反应时,甘氨酸提供了最高的 N,N-二糖基化产率,其次是赖氨酸。使用诊断性 MS/MS 碎裂,我们能够区分席夫-席夫、席夫-阿玛多里或阿玛多里-阿玛多里异构体。在环境温度下研磨葡萄糖/甘氨酸模型 30 分钟,可得到三种可能的异构体以近似等摩尔比例混合的双糖基化甘氨酸。用 [U-C]-葡萄糖研磨合成的席夫碱或甘氨酸的 ARP 生成了相同但部分标记的异构体,其中 N,N-二葡萄糖基甘氨酸或 N,N-二果糖基甘氨酸分别占优势。

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