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利用环境电离质谱增强烯烃检测:生物相关烯烃的 Ag+加合物。

Enhanced detection of olefins using ambient ionization mass spectrometry: Ag+ adducts of biologically relevant alkenes.

机构信息

Department of Chemistry, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Anal Bioanal Chem. 2011 Jan;399(1):367-76. doi: 10.1007/s00216-010-4349-5. Epub 2010 Nov 11.

Abstract

Spray solvent doped with silver ions increases the ease of olefin detection by desorption electrospray ionization (DESI). Characteristic silver adducts were generated in up to 50 times greater abundance when compared to conventional DESI spray solvents for the biologically significant olefin, arachidonic acid, in the positive ion mode. In the analysis of 26 lipids, silver adduct formation was highly favorable for fatty acids, fatty acid esters and prostaglandins but not applicable to some other classes (e.g., polar lipids such as ceramide and its derivative cerebroside sulfate). An investigation exploring competitive Ag(+) cationization with a mixture of components demonstrated that polyunsaturated compounds form Ag(+) adducts most readily. Silver cationization allowed the distinction between three sets of isomers in the course of multiple-stage collision-induced dissociation, so providing insight into the location of the olefin bonds. A silver ion-doped solvent was used in DESI imaging of normal and tumor canine bladder tissue sections. The Ag(+) fatty acid adducts permitted post facto differentiation between the normal and tumor regions. In addition, silver adduct formation in the course of DESI imaging of tissue sections revealed the presence of triacylglycerides, a class of compounds not previously identified through DESI imaging. A simple silver nitrate spray solvent has the potential to further improve DESI analysis of unsaturated biomolecules and other molecules containing π-bonds through selective silver cationization.

摘要

喷雾溶剂掺杂银离子可增加解吸电喷雾电离(DESI)检测烯烃的容易程度。与传统的 DESI 喷雾溶剂相比,在正离子模式下,生物意义重大的烯烃花生四烯酸的特征银加合物的丰度增加了多达 50 倍。在对 26 种脂质的分析中,银加合物的形成对脂肪酸、脂肪酸酯和前列腺素非常有利,但不适用于其他一些类别(例如,极性脂质如神经酰胺及其衍生物脑苷脂硫酸酯)。一项探索竞争 Ag(+) 阳离子化与混合成分的研究表明,多不饱和化合物最容易形成 Ag(+) 加合物。银阳离子化允许在多级碰撞诱导解离过程中区分三组异构体,从而深入了解烯烃键的位置。在正常和肿瘤犬膀胱组织切片的 DESI 成像中使用了银离子掺杂溶剂。Ag(+) 脂肪酸加合物允许在事后对正常和肿瘤区域进行区分。此外,在组织切片的 DESI 成像过程中形成银加合物揭示了三酰甘油的存在,这是一类以前通过 DESI 成像未识别的化合物。简单的硝酸银喷雾溶剂有可能通过选择性银阳离子化进一步改善不饱和生物分子和其他含有π键的分子的 DESI 分析。

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