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基质辅助激光解吸/电离-反射电子飞行时间质谱中的源后衰变和延迟提取。存在权衡取舍吗?

Post-source decay and delayed extraction in matrix-assisted laser desorption/ionization-reflectron time-of-flight mass spectrometry. Are there trade-offs?

作者信息

Kaufmann R, Chaurand P, Kirsch D, Spengler B

机构信息

Institute of Laser Medicine, University of Düsseldorf, Germany.

出版信息

Rapid Commun Mass Spectrom. 1996;10(10):1199-208. doi: 10.1002/(SICI)1097-0231(19960731)10:10<1199::AID-RCM643>3.0.CO;2-F.

DOI:10.1002/(SICI)1097-0231(19960731)10:10<1199::AID-RCM643>3.0.CO;2-F
PMID:8759328
Abstract

By the incorporation of delayed extraction (DE) into matrix-assisted laser desorption/ionization time-of-flight mass spectrometry a dramatic improvement of performance with respect to sensitivity, mass resolution and mass accuracy of precursor ions up to approximately 10 kDa has been achieved. Since DE reduces collisional in-source activation to a large extent, the rate of subsequent metastable decay is considerably reduced. Results are presented which demonstrate that under DE the loss of total post-source decay (PSD) fragment ion yield can be as large as one order of magnitude but that, in terms of sensitivity, part of this loss is balanced by a better S/N ratio which results from a significantly improved mass resolution of the PSD fragment ions (M/delta M up to 1800 compared with M/delta M = 200-500 under prompt extraction). While this compensatory effect is true for the middle to high mass range of PSD fragment ions, it gradually vanishes towards the low mass end of the PSD mass scale where, in the case of linear peptides some important information (immonium ions) is lost. It appears, however, that in the majority of practical PSD work, DE improves the qualty of the PSD spectra and that high energy collisional post-source activation can compensate for the occasional loss of analytical information.

摘要

通过将延迟提取(DE)技术应用于基质辅助激光解吸/电离飞行时间质谱,在灵敏度、质量分辨率以及前体离子(分子量高达约10 kDa)的质量准确度方面,仪器性能得到了显著提升。由于DE在很大程度上减少了源内碰撞活化,后续亚稳衰变的速率大幅降低。本文给出的结果表明,在DE条件下,源后衰变(PSD)总碎片离子产率的损失可能高达一个数量级,但就灵敏度而言,部分损失可通过更好的信噪比得到平衡,这源于PSD碎片离子的质量分辨率显著提高(M/ΔM高达1800,相比之下,即时提取条件下M/ΔM = 200 - 500)。虽然这种补偿效应适用于PSD碎片离子的中高质量范围,但在PSD质量范围的低质量端逐渐消失,对于线性肽而言,在此处一些重要信息(亚铵离子)会丢失。然而,在大多数实际的PSD工作中,DE似乎提高了PSD谱图的质量,并且高能碰撞源后活化可以弥补偶尔出现的分析信息损失。

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