Department of Chemistry, Medicinal Chemistry, University of Gothenburg, SE-412 96 Gothenburg, Sweden.
Rapid Commun Mass Spectrom. 2010 Nov 15;24(21):3127-38. doi: 10.1002/rcm.4753.
The identification of metabolites is almost exclusively done with liquid chromatography/tandem mass spectrometry (LC/MSMS) and despite the enormous progress in the development of these techniques and software for handling of data this is a time-consuming task. In this study the use of quadrupole time-of-flight (QTOF)-generated MS(E) and MS/MS data were compared with respect to rationalization of metabolites. In addition Mass-MetaSite, a semi-automated software for metabolite identification, was evaluated. The program combines the information from MS raw data, in the form of collision-induced dissociation spectra, with a prediction of the site of metabolism in order to assign the structure of a metabolite. The aim of the software is to mimic the rationalization of fragment ions performed by a biotransformation scientist in the process of structural elucidation. For this evaluation, metabolite identification in human liver microsomes was accomplished for 19 commercially available compounds and 15 in-house compounds. The results were very encouraging and for 96% of the metabolites the same structures were assigned using MS(E) compared with MSMS acquired data. The possibility of using MS(E) could considerably reduce the analysis time. Moreover, Mass-MetaSite performed well and the correct assigned structure, compared to manual inspection of the data, was picked in the first rank in ∼80% of the cases. In conclusion MS(E) could be successfully used for metabolite identification in order to reduce time of analysis and Mass-MetaSite could alleviate the work of a biotransformation scientist and decrease the workload by assigning the structure for a majority of the metabolites.
代谢物的鉴定几乎完全依赖于液相色谱/串联质谱(LC/MSMS),尽管在这些技术的开发和数据处理软件方面取得了巨大进展,但这仍然是一项耗时的任务。在本研究中,比较了四极杆飞行时间(QTOF)生成的 MS(E)和 MS/MS 数据,以合理化代谢物。此外,还评估了半自动代谢物鉴定软件 Mass-MetaSite。该程序将 MS 原始数据(以碰撞诱导解离谱的形式)的信息与代谢部位的预测相结合,以分配代谢物的结构。该软件的目的是模拟生物转化科学家在结构阐明过程中对碎片离子进行合理化的过程。为了进行该评估,对人肝微粒体中的 19 种市售化合物和 15 种内部化合物进行了代谢物鉴定。结果非常令人鼓舞,与使用 MSMS 获得的数据相比,使用 MS(E) 可以为 96%的代谢物分配相同的结构。使用 MS(E)的可能性可以大大缩短分析时间。此外,Mass-MetaSite 的性能良好,与手动检查数据相比,在大约 80%的情况下,在第一顺位中选择了正确分配的结构。总之,MS(E)可成功用于代谢物鉴定,以缩短分析时间,而 Mass-MetaSite 可以减轻生物转化科学家的工作负担,并通过为大多数代谢物分配结构来减少工作量。