Identification of urinary metabolites of imperatorin with a single run on an LC/Triple TOF system based on multiple mass defect filter data acquisition and multiple data mining techniques

被引:0
作者
Shi Qiao
Xiaowei Shi
Rui Shi
Man Liu
Ting Liu
Kerong Zhang
Qiao Wang
Meicun Yao
Lantong Zhang
机构
[1] Hebei Medical University,School of Pharmacy
[2] Civil Aviation Medicine Center,School of Pharmaceutical Sciences
[3] Civil Aviation Administration of China,undefined
[4] Application Support Center,undefined
[5] AB SCIEX,undefined
[6] Sun Yat-sen University,undefined
来源
Analytical and Bioanalytical Chemistry | 2013年 / 405卷
关键词
Imperatorin; Metabolites; LC-Triple TOF-MS identification; Linear-type furocoumarins;
D O I
暂无
中图分类号
学科分类号
摘要
The detection of drug metabolites, especially for minor metabolites, continues to be a challenge because of the complexity of biological samples. Imperatorin (IMP) is an active natural furocoumarin component originating from many traditional Chinese herbal medicines and is expected to be pursued as a new vasorelaxant agent. In the present study, a generic and efficient approach was developed for the in vivo screening and identification of IMP metabolites using liquid chromatography-Triple TOF mass spectrometry. In this approach, a novel on-line data acquisition method mutiple mass defect filter (MMDF) combined with dynamic background subtraction was developed to trace all probable urinary metabolites of IMP. Comparing with the traditionally intensity-dependent data acquisition method, MMDF method could give the information of low-level metabolites masked by background noise and endogenous components. Thus, the minor metabolites in complex biological matrices could be detected. Then, the sensitive and specific multiple data-mining techniques extracted ion chromatography, mass defect filter, product ion filter, and neutral loss filter were used for the discovery of IMP metabolites. Based on the proposed strategy, 44 phase I and 7 phase II metabolites were identified in rat urine after oral administration of IMP. The results indicated that oxidization was the main metabolic pathway and that different oxidized substituent positions had a significant influence on the fragmentation of the metabolites. Two types of characteristic ions at m/z 203 and 219 can be observed in the MS/MS spectra. This is the first study of IMP metabolism in vivo. The interpretation of the MS/MS spectra of these metabolites and the proposed metabolite pathway provide essential data for further pharmacological studies of other linear-type furocoumarins.
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页码:6721 / 6738
页数:17
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