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采用超强碱性质子海绵作为去质子化基质的负离子 MALDI 质谱法对中性糖进行结构表征。

Structural Characterization of Neutral Saccharides by Negative Ion MALDI Mass Spectrometry Using a Superbasic Proton Sponge as Deprotonating Matrix.

机构信息

Dipartimento di Chimica, Università degli Studi di Bari Aldo Moro, via Orabona 4, 70126, Bari, Italy.

Centro di Ricerca Interdipartimentale SMART, Università degli Studi di Bari Aldo Moro, via Orabona 4, 70126, Bari, Italy.

出版信息

J Am Soc Mass Spectrom. 2017 Aug;28(8):1666-1675. doi: 10.1007/s13361-017-1679-y. Epub 2017 May 2.

Abstract

The superbasic proton sponge 1,8-bis(tripyrrolidinylphosphazenyl)naphthalene (TPPN) has been successfully employed for the structural characterization of neutral saccharides, cyclodextrins, and saccharide alditols by matrix assisted laser desorption/ionization tandem mass spectrometry (MALDI-MS/MS). Owing to its inherently high basicity, TPPN is capable of deprotonating neutral carbohydrates (M) providing an efficient and simple way to produce gas-phase [M - H] ions. Highly informative negative ions MS/MS spectra showing several diagnostic fragment ions were obtained, mainly A-type cross-ring and C-type glycosidic cleavages. Indeed, cross-ring cleavages of monosaccharides with formation of A, A, A, A, A, and X product ions dominate the MS/MS spectra. A significant difference between reducing (e.g., lactose, maltose) and non-reducing disaccharides (e.g., sucrose, trehalose) was observed. Though disaccharides with the anomeric positions blocked give rise to deprotonated molecules, [M - H], at m/z 341.1, reducing ones exhibited a peak at m/z 340.1, most likely as radical anion, [M - H- H]. The superiority of TPPN was clearly demonstrated by comparison with well recognized matrices, such as 2,5-dihydroxybenzoic acid and 2',4',6'-trihydroxyacetophenone (positive ion mode) and nor-harman (negative ion mode). MALDI MS/MS experiments on isotopically labeled sugars have greatly supported the interpretation of plausible fragmentation pathways. Graphical Abstract ᅟ.

摘要

超碱性质子海绵 1,8-双(三吡咯烷基膦嗪基)萘(TPPN)已成功用于通过基质辅助激光解吸/电离串联质谱(MALDI-MS/MS)对中性糖、环糊精和糖醛醇进行结构表征。由于其固有的高碱性,TPPN 能够使中性碳水化合物(M)去质子化,提供一种有效且简单的方法来产生气相[M-H]-离子。获得了具有几个诊断碎片离子的非常有信息量的负离子 MS/MS 光谱,主要是 A 型跨环和 C 型糖苷裂解。事实上,单糖的跨环裂解形成 A、A、A、A、A 和 X 产物离子主导 MS/MS 光谱。观察到还原(例如乳糖、麦芽糖)和非还原二糖(例如蔗糖、海藻糖)之间的显著差异。尽管具有糖端基位被封锁的二糖会产生去质子化分子,[M-H],在 m/z 341.1 处,但还原二糖表现出 m/z 340.1 处的峰,很可能是自由基阴离子,[M-H-H]。与公认的基质(例如 2,5-二羟基苯甲酸和 2',4',6'-三羟基苯乙酮(正离子模式)和 nor-harman(负离子模式))相比,TPPN 的优越性显然得到了证明。对同位素标记糖的 MALDI MS/MS 实验极大地支持了可能的裂解途径的解释。图摘要。

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