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Hybrid multidimensional data acquisition and data processing strategy for comprehensive characterization of known, unknown and isomeric compounds from the compound Dan Zhi Tablet by UPLC-TWIMS-QTOFMS. | LitMetric

AI Article Synopsis

  • The study focuses on the Dan Zhi Tablet (DZT), a traditional Chinese medicine used for treating ischemic stroke, which lacks detailed understanding of its chemical composition.
  • Researchers employed a sophisticated method combining different data acquisition techniques (UPLC-TWIMS-QTOFMS) to identify the chemical constituents of DZT, revealing a total of 202 compounds.
  • The findings included 29 identified compounds, 29 new unknown compounds, and 10 pairs of coeluting isomers, providing valuable insights for quality control and further research on DZT's pharmacological mechanisms.

Article Abstract

The compound Dan Zhi Tablet (DZT), a reputable traditional Chinese medicine prescription, is widely used for the treatment of ischemic stroke in clinic. However, its systematic chemical constituents have rarely been elucidated, which hampers its quality evaluation, the study of bioactive constituents and the mechanism of action interpretation. In this study, we developed a combination of multidimensional data acquisition and data processing strategy with the aim to globally and comprehensively identify the chemical constituents in DZT based on UPLC-TWIMS-QTOFMS. First, multidimensional acquisition modes (MS, Fast DDA and HDMS) were performed on UPLC-TWIMS-QTOFMS. Second, targeted characterizations of the known compounds and their analogues present in DZT were carried out on the basis of the corresponding commercial standards or Mass2Motifs. Third, untargeted identification of unknown compounds in DZT was performed by extracting shared Mass2Motifs from the raw fragmentation spectra. Finally, the coeluting isomers were characterized using a precursor and/or product ion mobility. Consequently, 202 compounds were detected from DZT: 29 of them were unambiguously identified by comparison with reference compounds, 29 unknown compounds were discovered in specific medicinal materials, and ten pairs of coeluting isomers, which could not be distinguished using conventional MS or Fast-DDA, were resolved using HDMS only. This strategy was successfully used for the rapid and global identification of complex compounds including known, unknown and coeluting isomeric compounds in DZT and provided helpful chemical information for further quality control, pharmacology and active mechanism research on DZT.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9062044PMC
http://dx.doi.org/10.1039/c8ra10100kDOI Listing

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