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一种具有增强灵敏度的大气压基质辅助激光解吸/电离离子阱。

An atmospheric pressure matrix-assisted laser desorption/ionization ion trap with enhanced sensitivity.

作者信息

Miller Christine A, Yi Donghui, Perkins Patrick D

机构信息

Agilent Technologies, 5301 Stevens Creek Blvd, Santa Clara, CA 95051, USA.

出版信息

Rapid Commun Mass Spectrom. 2003;17(8):860-8. doi: 10.1002/rcm.994.

Abstract

When atmospheric pressure matrix-assisted laser desorption/ionization (AP-MALDI) became commercially available, the technique generated a great deal of interest because ion production was decoupled from mass analysis. Mass accuracy and resolution were therefore dependent on parameters governing the mass analyzer rather than the matrix and sample preparation. Researchers have successfully used AP-MALDI sources with both orthogonal acceleration time-of-flight (oaTOFMS) and ion trap mass spectrometers. However, one limitation of the technique has been sensitivity, especially for mixtures of peptides generated from tryptic digests. In this work, data are presented documenting an increase in sensitivity of approximately two orders of magnitude as compared with results previously reported in the literature. The improvement in sensitivity is thought to derive primarily from the novel use of a countercurrent heated gas stream directed at the sample, although the target plate position and ion sampling configuration have also been optimized to reduce chemical noise from low molecular weight ions. A tryptic digest of BSA containing 125 attomoles on the plate was successfully identified in MS-only mode, while MS/MS analysis of 250 attomoles of the same digest provided product ion spectra with sufficient information to identify the protein. More complicated mixtures of standard proteins were used to model proteomics experiments, and preliminary data suggest a minimum working dynamic range of 20-fold for the analysis of mixtures of protein digests.

摘要

当大气压基质辅助激光解吸/电离(AP-MALDI)技术实现商业化应用时,因其离子产生过程与质量分析相分离,该技术引发了广泛关注。因此,质量准确度和分辨率取决于质量分析器的参数,而非基质和样品制备。研究人员已成功将AP-MALDI源与正交加速飞行时间质谱仪(oaTOFMS)和离子阱质谱仪联用。然而,该技术的一个局限性在于灵敏度,尤其是对于胰蛋白酶消化产生的肽混合物。在这项工作中,所呈现的数据表明,与先前文献报道的结果相比,灵敏度提高了约两个数量级。灵敏度的提高主要被认为源于对指向样品的逆流加热气流的创新性应用,尽管靶板位置和离子采样配置也已进行了优化,以减少来自低分子量离子的化学噪声。在仅进行质谱分析的模式下,成功鉴定出了平板上含有125阿托摩尔的牛血清白蛋白胰蛋白酶消化产物,而对250阿托摩尔相同消化产物进行的串联质谱分析提供了具有足够信息以鉴定该蛋白质的产物离子谱。使用更复杂的标准蛋白质混合物来模拟蛋白质组学实验,初步数据表明,在分析蛋白质消化产物混合物时,最小工作动态范围为20倍。

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