Suppr超能文献

CID、PQD和HCD激发模式的激活时间效应和内能分布比较。

Comparison of the activation time effects and the internal energy distributions for the CID, PQD and HCD excitation modes.

作者信息

Ichou Farid, Schwarzenberg Adrian, Lesage Denis, Alves Sandra, Junot Christophe, Machuron-Mandard Xavier, Tabet Jean-Claude

机构信息

Institut Parisien de Chimie Moléculaire, UMR 8232, UPMC, Paris CEDEX 05, 75252, France.

出版信息

J Mass Spectrom. 2014 Jun;49(6):498-508. doi: 10.1002/jms.3365.

Abstract

Reproducibility among different types of excitation modes is a major bottleneck in the field of tandem mass spectrometry library development in metabolomics. In this study, we specifically evaluated the influence of collision voltage and activation time parameters on tandem mass spectrometry spectra for various excitation modes [collision-induced dissociation (CID), pulsed Q dissociation (PQD) and higher-energy collision dissociation (HCD)] of Orbitrap-based instruments. For this purpose, internal energy deposition was probed using an approach based on Rice-Rampserger-Kassel-Marcus modeling with three thermometer compounds of different degree of freedom (69, 228 and 420) and a thermal model. This model treats consecutively the activation and decomposition steps, and the survival precursor ion populations are characterized by truncated Maxwell-Boltzmann internal energy distributions. This study demonstrates that the activation time has a significant impact on MS/MS spectra using the CID and PQD modes. The proposed model seems suitable to describe the multiple collision regime in the PQD and HCD modes. Linear relationships between mean internal energy and collision voltage are shown for the latter modes and the three thermometer molecules. These results suggest that a calibration based on the collision voltage should provide reproducible for PQD, HCD to be compared with CID in tandem in space instruments. However, an important signal loss is observed in PQD excitation mode whatever the mass of the studied compounds, which may affect not only parent ions but also fragment ions depending on the fragmentation parameters. A calibration approach for the CID mode based on the variation of activation time parameter is more appropriate than one based on collision voltage. In fact, the activation time parameter in CID induces a modification of the collisional regime and thus helps control the orientation of the fragmentation pathways (competitive or consecutive dissociations).

摘要

不同类型激发模式之间的重现性是代谢组学串联质谱库开发领域的一个主要瓶颈。在本研究中,我们专门评估了碰撞电压和激活时间参数对基于Orbitrap仪器的各种激发模式[碰撞诱导解离(CID)、脉冲Q解离(PQD)和高能碰撞解离(HCD)]的串联质谱谱图的影响。为此,采用基于Rice-Rampserger-Kassel-Marcus建模的方法,使用三种不同自由度(69、228和420)的温度计化合物和一个热模型来探测内能沉积。该模型连续处理激活和分解步骤,存活的前体离子群体以截断的麦克斯韦-玻尔兹曼内能分布为特征。本研究表明,激活时间对使用CID和PQD模式的MS/MS谱图有显著影响。所提出的模型似乎适合描述PQD和HCD模式下的多次碰撞机制。对于后两种模式和三种温度计分子,显示了平均内能与碰撞电压之间的线性关系。这些结果表明,基于碰撞电压的校准应该为PQD、HCD提供可重现性,以便在空间串联仪器中与CID进行比较。然而,无论所研究化合物的质量如何,在PQD激发模式下都观察到重要的信号损失,这可能不仅影响母离子,还可能根据碎裂参数影响碎片离子。基于激活时间参数变化的CID模式校准方法比基于碰撞电压的方法更合适。事实上,CID中的激活时间参数会引起碰撞机制的改变,从而有助于控制碎裂途径的方向(竞争性或连续解离)。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验