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Deep-ultraviolet laser ablation electrospray ionization mass spectrometry

机译:深紫外激光烧蚀电喷雾电离质谱

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摘要

A 193-nm wavelength deep ultraviolet laser was used for ambient laser ablation electrospray ionization mass spectrometry of biological samples. A pulsed ArF excimer laser was used to ablate solid samples, and the resulting plume of the desorbed material merged with charged electrospray droplets to form ions that were detected with a quadrupole time-of-flight mass spectrometer. Solutions containing peptide and protein standards up to 66-kDa molecular weight were deposited on a metal target, dried, and analyzed. No fragmentation was observed from peptides and proteins as well as from the more easily fragmented vitamin B-12 molecule. The mass spectra contained peaks from multiply charged ions that were identical to conventional electrospray. Deep UV laser ablation of tissue allowed detection of lipids from untreated tissue. The mechanism of ionization is postulated to involve absorption of laser energy by a fraction of the analyte molecules that act as a sacrificial matrix or by residual water in the sample.
机译:一种193nm波长深紫外激光器用于生物样品的环境激光烧蚀电镀电器电离质谱。脉冲ARF准分子激光器用于烧蚀固体样品,并将所得羽流的羽流与带电电喷雾液滴合并以形成用四极飞行时间质谱仪检测的离子。含有高达66-KDA分子量的肽和蛋白质标准的溶液沉积在金属靶标,干燥并分析。从肽和蛋白质以及更容易碎裂的维生素B-12分子中没有观察到碎片化。质谱含有与常规电喷雾相同的多电荷离子的峰。组织的深紫外激光消融允许检测来自未处理的组织的脂质。假设电离机制以涉及通过用作牺牲基质的分数或样品中的残余水的分数分子的分数吸收激光能量。

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