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质谱法区分糖的位置异构体:稀有糖的直接分析方法。

Mass Spectrometry Approach for Differentiation of Positional Isomers of Saccharides: Toward Direct Analysis of Rare Sugars.

机构信息

Department of Chemistry and Biochemistry, The Ohio State University, Columbus, Ohio 43210, United States.

出版信息

Anal Chem. 2023 Apr 4;95(13):5635-5642. doi: 10.1021/acs.analchem.2c05375. Epub 2023 Mar 22.

Abstract

Rare sugars have gained popularity in recent years due to their use in antiaging treatments, their ability to sweeten with few calories, and their ability to heal infections. Rare sugars are found in small quantities in nature, and they exist typically as isomeric forms of traditional sugars, rendering some challenges in their isolation, synthesis, and characterization. In this work, we present the first direct mass spectrometric approach for differentiating structural isomers of sucrose that differ only by their glycosidic linkages. The method employed a noncontact nanoelectrospray (nESI) platform capable of analyzing minuscule volumes (5 μL) of saccharides via the formation of halide adducts ([M+X]; X = Cl and Br). Tandem mass spectrometry analysis of the five structural isomers of sucrose afforded diagnostic fragment ions that can be used to distinguish each isomer. Detailed mechanisms showcasing the distinct fragmentation pattern for each isomer are discussed. The method was applied to characterize and confirm the presence of all five selected rare sugars in raw honey complex samples. Aside from the five natural α isomers of sucrose, the method was also suitable for differentiating some β isomers of the same glycosidic linkages, provided the monomeric sugar units are different. The halide adduct formation via the noncontact nESI source was also proven to be effective for oligosaccharides such as raffinose, β-cyclodextrin, and maltoheptaose. The results from this study encourage the future development of methods that function with simple operation to enable straightforward characterization of small quantities of rare sugars.

摘要

稀有糖近年来因其在抗衰老治疗中的应用、低热量的甜味以及治疗感染的能力而受到关注。稀有糖在自然界中的含量很少,通常以传统糖的异构形式存在,这给它们的分离、合成和表征带来了一些挑战。在这项工作中,我们提出了一种用于区分蔗糖结构异构体的直接质谱方法,这些异构体仅在糖苷键上有所不同。该方法采用了非接触式纳喷雾(nESI)平台,能够通过形成卤化物加合物 ([M+X];X = Cl 和 Br) 分析微小体积(5 μL)的糖。对蔗糖的五种结构异构体进行串联质谱分析得到了可用于区分每种异构体的诊断碎片离子。讨论了展示每种异构体独特碎裂模式的详细机制。该方法应用于表征和确认复杂的天然蜂蜜样品中所有五种选定的稀有糖的存在。除了五种天然α型蔗糖异构体外,该方法还适用于区分相同糖苷键的一些β型异构体,只要单体糖单元不同即可。非接触式 nESI 源的卤化物加合物形成也被证明对棉子糖、β-环糊精和麦芽七糖等低聚糖有效。这项研究的结果鼓励未来开发具有简单操作功能的方法,以实现对少量稀有糖的直接表征。

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