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混合三重四极杆-线性离子阱质谱在裂解机理研究中的应用:用于丁螺环酮及其一种代谢物的结构解析

Hybrid triple quadrupole-linear ion trap mass spectrometry in fragmentation mechanism studies: application to structure elucidation of buspirone and one of its metabolites.

作者信息

Zhang Mei-Yi, Pace Nadia, Kerns Edward H, Kleintop Teresa, Kagan Natasha, Sakuma Takeo

机构信息

Chemical and Screening Sciences, Wyeth Research, Princeton, NJ 08543, USA.

出版信息

J Mass Spectrom. 2005 Aug;40(8):1017-29. doi: 10.1002/jms.876.

Abstract

The use of a hybrid triple quadrupole-linear ion trap (QqQ(LIT)) mass spectrometer system for a comprehensive study of fragmentation mechanisms is described. The anxiolytic drug, buspirone, was chosen as a model compound for this study. With the advent of a QqQ(LIT) instrument, both the traditional quadrupole and the new linear ion trap scans (LIT) could be performed in a single LC run. In the past, a sample had to be run on two different instruments, namely, a triple quadrupole instrument (QqQ) and a 3D ion trap (3D IT) to obtain similar information. With the new QqQ(LIT) technology, collision-induced dissociation (CID) occur in a quadrupole collision cell, q2, and fragment ions are trapped and analyzed in Q3 operated in LIT mode. In this work, high-sensitivity product ion spectra of buspirone were obtained from the one-stage 'Enhanced Product Ion' scan (EPI) with rich product ions and no low mass cut-off. Furthermore, detailed fragmentation pathways were elucidated by further dissociation of each of the fragment ions in the EPI spectrum using MS(3) mode in the same run. The MS(3) scan was performed by incorporating CID in q2, and trapping, cooling, isolation, and resonance-excitation in Q3 when operating in LIT mode. This approach allowed unambiguous assignment of all fragment ions quickly with fewer experiments and easier interpretation than the previous approach. The overall sensitivity for obtaining complete fragment ion data was significantly improved for QqQ(LIT) as compared with that of QqQ and 3D IT mass spectrometers. This is beneficial for structure determination of unknown trace components. The method allowed structure determination of metabolites of buspirone in rat microsomes at 1 microM concentration, which was a 10-fold lower concentration than was needed for QqQ or 3D IT instruments. The QqQ(LIT) instrument provided a simple, rapid, sensitive and powerful approach for structure elucidation of trace components.

摘要

描述了使用混合三重四极杆 - 线性离子阱(QqQ(LIT))质谱仪系统对裂解机制进行全面研究的情况。选择抗焦虑药物丁螺环酮作为本研究的模型化合物。随着QqQ(LIT)仪器的出现,传统四极杆扫描和新的线性离子阱扫描(LIT)都可以在一次液相色谱运行中完成。过去,一个样品必须在两种不同的仪器上运行,即三重四极杆仪器(QqQ)和三维离子阱(3D IT)才能获得类似的信息。利用新的QqQ(LIT)技术,碰撞诱导解离(CID)在四极杆碰撞室q2中发生,碎片离子在以LIT模式运行的Q3中被捕获并分析。在这项工作中,通过一级“增强产物离子”扫描(EPI)获得了丁螺环酮的高灵敏度产物离子谱,其具有丰富的产物离子且无低质量截止。此外,通过在同一次运行中使用MS(3)模式对EPI谱中的每个碎片离子进行进一步解离,阐明了详细的裂解途径。MS(3)扫描是通过在q2中引入CID,并在以LIT模式运行时在Q3中进行捕获、冷却、隔离和共振激发来进行的。与之前的方法相比,这种方法能够通过更少的实验快速明确地确定所有碎片离子,并且解释起来更容易。与QqQ和3D IT质谱仪相比,QqQ(LIT)获得完整碎片离子数据的整体灵敏度显著提高。这有利于未知痕量成分的结构测定。该方法能够在1 microM浓度下测定大鼠微粒体中丁螺环酮的代谢产物结构,该浓度比QqQ或3D IT仪器所需浓度低10倍。QqQ(LIT)仪器为痕量成分的结构解析提供了一种简单、快速、灵敏且强大的方法。

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