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Development and Optimization of an UPLC-QTOF-MS/MS Method Based on an In-Source Collision Induced Dissociation Approach for Comprehensive Discrimination of Chlorogenic Acids Isomers fromMomordicaPlant Species
[摘要] Chlorogenic acids (CGA) have been profiled in the leaves ofMomordica balsamina,Momordica charantia, andMomordica foetida.All three species were found to contain thetransandcisisomers of 4-acylpara-coumaroylquinic acid (pCoQA), caffeoylquinic acid (CQA), and feruloylquinic acid (FQA). To the best of our knowledge, this is the first report ofpCoQA and FQA and theircisisomers in theseMomordicaspecies.These profiles were obtained by a newly developed UPLC-qTOF-MS method based on the in-source collision induced dissociation (ISCID) method optimized to mimic the MS2and MS3fragmentation of an ion trap-based MS. The presence of thecisisomers is believed to be due to high UV exposure of these plants. Furthermore, the absence of the 3-acyl and 5-acyl CGA molecules points to a metabolic mark that is unusual and represents a very interesting biochemical phenotype of these species. Our optimized ISCID method was also shown to be able to distinguish between the geometrical isomers of all three forms of CGA, a phenomenon previously deemed impossible with other common mass spectrometry systems used for CGA analyses.
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[效力级别]  [学科分类] 分析化学
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