Huang Yuting, Dodds Eric D
Department of Chemistry, University of Nebraska-Lincoln, Lincoln, Nebraska 68588-0304, United States.
Anal Chem. 2015 Jun 2;87(11):5664-8. doi: 10.1021/acs.analchem.5b00759. Epub 2015 May 20.
The rapid and unambiguous distinction of isomeric carbohydrate structures persists as a tremendous analytical challenge. This paper reports the first exploitation of carbohydrate/metal ion interactions in concert with gas-phase ion chemistry to improve discrimination of oligosaccharide isomers by both ion mobility spectrometry and tandem mass spectrometry. This is demonstrated for two isomeric pentasaccharides and two isomeric hexasaccharides, each studied in an underivatized form as their calcium ion adducts, barium ion adducts, and gas-phase electron transfer products thereof. With appropriate selection of the charge carrier, transfer of a single electron to the carbohydrate metal ion adducts resulted in isomer-distinguishing shifts in their ion/neutral collision cross sections and the appearance of unique features in their vibrational activation/dissociation spectra. These findings suggest novel and elegant gas-phase strategies for rapid differentiation of isomeric oligosaccharides.
快速且明确地区分异构碳水化合物结构仍然是一项巨大的分析挑战。本文报道了首次利用碳水化合物/金属离子相互作用并结合气相离子化学,以通过离子迁移谱和串联质谱提高寡糖异构体的区分能力。这在两种异构五糖和两种异构六糖中得到了证明,每种糖均以未衍生化形式作为其钙离子加合物、钡离子加合物及其气相电子转移产物进行研究。通过适当选择电荷载体,将单个电子转移到碳水化合物金属离子加合物上会导致其离子/中性碰撞截面出现异构体区分性变化,并在其振动激活/解离光谱中出现独特特征。这些发现为快速区分异构寡糖提出了新颖且巧妙的气相策略。