Rezenom Yohannes H, Dong Jianan, Murray Kermit K
Department of Chemistry, Louisiana State University, Baton Rouge, LA 70803, USA.
Analyst. 2008 Feb;133(2):226-32. doi: 10.1039/b715146b. Epub 2007 Nov 29.
We have used an infrared laser for desorption of material and ionization by interaction with electrosprayed solvent. Infrared laser-assisted desorption electrospray ionization (IR LADESI) mass spectrometry was used for the direct analysis of water-containing samples under ambient conditions. An ion trap mass spectrometer was modified to include a pulsed Er:YAG laser at 2.94 microm wavelength coupled into a germanium oxide optical fiber for desorption at atmospheric pressure and a nanoelectrospray source for ionization. Analytes in aqueous solution were placed on a stainless steel target and irradiated with the pulsed IR laser. Material desorbed and ablated from the target was ionized by a continuous stream of charged droplets from the electrosprayed solvent. Peptide and protein samples analyzed using this method yield mass spectra similar to those obtained by conventional electrospray. Blood and urine were analyzed without sample pretreatment to demonstrate the capability of IR LADESI for direct analysis of biological fluids. Pharmaceutical products were also directly analyzed. Finally, the role of water as a matrix in the IR LADESI process is discussed.
我们使用红外激光通过与电喷雾溶剂相互作用来解吸材料并使其离子化。红外激光辅助解吸电喷雾电离(IR LADESI)质谱用于在环境条件下对含水样品进行直接分析。对离子阱质谱仪进行了改进,使其包括一个波长为2.94微米的脉冲式铒:钇铝石榴石激光,该激光耦合到一根氧化锗光纤中,用于在大气压下进行解吸,以及一个纳米电喷雾源用于离子化。将水溶液中的分析物置于不锈钢靶上,并用脉冲红外激光照射。从靶上解吸和烧蚀的材料被来自电喷雾溶剂的连续带电液滴流离子化。使用该方法分析的肽和蛋白质样品产生的质谱与通过传统电喷雾获得的质谱相似。在不进行样品预处理的情况下对血液和尿液进行了分析,以证明IR LADESI直接分析生物流体的能力。还对药品进行了直接分析。最后,讨论了水在IR LADESI过程中作为基质的作用。