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Strategy to Improve the Quantitative LC-MS Analysis of Molecular Ions Resistant to Gas-Phase Collision Induced Dissociation: Application to Disulfide-Rich Cyclic Peptides

机译:改进抗气相碰撞诱导离解的分子离子定量LC-MS分析的策略:在富含二硫键的环肽中的应用

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摘要

Due to observed collision induced dissociation (CID) fragmentation inefficiency, developing sensitive liquid chromatography tandem mass spectrometry (LC-MS/MS) assays for CID resistant compounds is especially challenging. As an alternative to traditional LC-MS/MS, we present here a methodology that preserves the intact analyte ion for quantification by selectively filtering ions while reducing chemical noise. Utilizing a quadrupole-Orbitrap MS, the target ion is selectively isolated while interfering matrix components undergo MS/MS fragmentation by CID, allowing noise-free detection of the analyte's surviving molecular ion. In this manner, CID affords additional selectivity during high resolution accurate mass analysis by elimination of isobaric interferences, a fundamentally different concept than the traditional approach of monitoring a target analyte's unique fragment following CID. This survivor-selected ion monitoring (survivor-SIM) approach has allowed sensitive and specific detection of disulfide-rich cyclic peptides extracted from plasma.
机译:由于观察到的碰撞诱导解离(CID)片段效率低下,开发针对CID抗性化合物的灵敏液相色谱串联质谱(LC-MS / MS)分析尤其具有挑战性。作为传统LC-MS / MS的替代方法,我们在这里介绍一种方法,该方法可通过选择性过滤离子同时降低化学噪声来保留完整的分析物离子以进行定量。利用四极杆Orbitrap MS,目标离子被选择性分离,同时干扰基质成分通过CID进行MS / MS裂解,从而可以无噪声地检测分析物的残留分子离子。通过这种方式,CID消除了同量异位干扰,从而在高分辨率精确质量分析中提供了额外的选择性,这与在CID之后监测目标分析物独特片段的传统方法有着根本的不同。这种幸存者选择的离子监测(survivor-SIM)方法允许灵敏而特异地检测从血浆中提取的富含二硫键的环肽。

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