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Applications of 1.06-μm IR Laser Desorption on a Fourier Transform Mass Spectrometer

机译:1.06-μm红外激光解吸在傅里叶变换质谱仪上的应用

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摘要

Various sugars, peptides, and lipids were analyzed on a Fourier transform mass spectrometer using laser desorption and ionization with and without the assistance of matrixes. A compact Nd:YAG laser with an output at 1.06μm corresponding to fundamental frequency was employed. Gram-negative and Gram-positive bacteria were also subjected to laser desorption mass spectrometry. Characteristic ions of conjugated lipid, formed by attachment of alkali metal cations, endogenous to the cells, were observed. Particle/liquid matrixes (e.g., cobalt in glycerol) proved to be useful with the 1.06-μm laser. The particles absorb efficiently laser radiation in a broad wavelength range. The liquid provides the same advantages as in fast atom bombardment: increased signal-to-noise ratios and enhanced sample lifetimes. The effect of laser power on total ion current was shown to differ for samples with and without the particle/liquid matrix. The Fourier transform analyzer provides MS/MS capability for both positive and negative ions from complex mixtures. Ions desorbed externally are introduced into the cell via a quadrupole ion guide with a lower mass cutoff. Such a setup allows matrix ions to be excluded and thus provides excellent signal-to-noise ratios for lower mass range fragment ions formed inside the cell.
机译:在傅立叶变换质谱仪上使用和不使用基质进行激光解吸和电离,在傅立叶变换质谱仪上分析了各种糖,肽和脂质。使用了紧凑的Nd:YAG激光器,其输出为1.06μm,对应于基频。革兰氏阴性菌和革兰氏阳性菌也进行了激光解吸质谱分析。观察到由细胞内源的碱金属阳离子附着形成的共轭脂质的特征离子。颗粒/液体基质(例如甘油中的钴)被证明可用于1.06-μm激光。颗粒有效吸收宽波长范围内的激光辐射。液体具有与快速原子轰击相同的优点:增加了信噪比并延长了样品寿命。对于有和没有颗粒/液体基质的样品,激光功率对总离子流的影响显示出不同。傅里叶变换分析仪为复杂混合物中的正离子和负离子提供MS / MS功能。外部解吸的离子通过具有较低质量截止值的四极离子导向器引入池中。这种设置可以排除基质离子,从而为形成在电池内部的较低质量范围的碎片离子提供出色的信噪比。

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