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在混合型三重四极杆 - 线性离子阱质谱仪上,使用基于多离子监测的MS/MS采集方法对药物代谢物进行快速筛选和表征。

Rapid screening and characterization of drug metabolites using a multiple ion monitoring-dependent MS/MS acquisition method on a hybrid triple quadrupole-linear ion trap mass spectrometer.

作者信息

Yao Ming, Ma Li, Humphreys W Griffith, Zhu Mingshe

机构信息

Department of Biotransformation, Bristol-Myers Squibb Pharmaceutical Research and Development, PO Box 4000, Princeton, NJ 08543, USA.

出版信息

J Mass Spectrom. 2008 Oct;43(10):1364-75. doi: 10.1002/jms.1412.

Abstract

A novel LC/MS/MS method that uses multiple ion monitoring (MIM) as a survey scan to trigger the acquisition of enhanced product ions (EPI) on a hybrid quadrupole-linear ion trap mass spectrometer (Q TRAP) was developed for drug metabolite identification. In the MIM experiment, multiple predicted metabolite ions were monitored in both Q1 and Q3. The collision energy in Q2 was set to a low value to minimize fragmentation. Results from analyzing ritonavir metabolites in rat hepatocytes demonstrate that MIM-EPI was capable of targeting a larger number of metabolites regardless of their fragmentation and retained sensitivity and duty cycle similar to multiple reaction monitoring (MRM)-EPI. MIM-based scanning methods were shown to be particularly useful in several applications. First, MIM-EPI enabled the sensitive detection and MS/MS acquisition of up to 100 predicted metabolites. Second, MIM-MRM-EPI was better than MRM-EPI in the analysis of metabolites that undergo either predictable or unpredictable fragmentation pathways. Finally, a combination of MIM-EPI and full-scan MS (EMS), as an alternative to EMS-EPI, was well suited for routine in vitro metabolite profiling. Overall, MIM-EPI significantly enhanced the metabolite identification capability of the hybrid triple quadrupole-linear ion trap LC/MS.

摘要

开发了一种新型液相色谱-串联质谱(LC/MS/MS)方法,该方法在混合四极杆-线性离子阱质谱仪(Q TRAP)上使用多离子监测(MIM)作为全扫描来触发增强产物离子(EPI)的采集,用于药物代谢物鉴定。在MIM实验中,在Q1和Q3中监测多个预测的代谢物离子。Q2中的碰撞能量设置为低值以最小化碎片化。对大鼠肝细胞中利托那韦代谢物的分析结果表明,MIM-EPI能够靶向更多数量的代谢物,无论其碎片化情况如何,并且保留了与多反应监测(MRM)-EPI相似的灵敏度和占空比。基于MIM的扫描方法在几个应用中显示出特别有用。首先,MIM-EPI能够灵敏地检测和进行多达100种预测代谢物的MS/MS采集。其次,在分析经历可预测或不可预测碎片化途径的代谢物时,MIM-MRM-EPI比MRM-EPI更好。最后,MIM-EPI和全扫描质谱(EMS)的组合,作为EMS-EPI的替代方法,非常适合常规体外代谢物谱分析。总体而言,MIM-EPI显著增强了混合三重四极杆-线性离子阱LC/MS的代谢物鉴定能力。

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