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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

机译:混合多维数据采集和数据处理策略,用于通过UPLC-TWIMS-QTOFMS对化合物丹芝片中的已知,未知和异构化合物进行全面表征

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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 ~(E) , Fast DDA and HDMS ~(E) ) 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 ~(E) or Fast-DDA, were resolved using HDMS ~(E) 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.
机译:复方丹芝片(DZT)是一种著名的中药处方,在临床上被广泛用于治疗缺血性中风。但是,其系统化学成分很少被阐明,这妨碍了其质量评估,生物活性成分的研究和作用机理的解释。在这项研究中,我们开发了多维数据采集和数据处理策略的组合,旨在基于UPLC-TWIMS-QTOFMS全局和全面地识别DZT中的化学成分。首先,在UPLC-TWIMS-QTOFMS上执行多维采集模式(MS〜(E),Fast DDA和HDMS〜(E))。其次,在相应的商业标准或Mass2Motifs的基础上,对DZT中存在的已知化合物及其类似物进行了靶向表征。第三,通过从原始碎裂谱图中提取共享的Mass2Motifs,进行DZT中未知化合物的非目标鉴定。最后,使用前体和/或产物离子迁移率表征共洗脱异构体。因此,从DZT中检测到202种化合物:与参考化合物进行比较可明确鉴定出29种化合物,在特定药物中发现了29种未知化合物,以及十对共洗脱异构体,这是常规MS〜(E)无法分辨的或Fast-DDA,仅使用HDMS〜(E)解决。该策略已成功用于DZT中复杂化合物的快速,全局鉴定,包括已知,未知和共洗脱的异构体,并为DZT的进一步质量控制,药理和活性机理研究提供了有用的化学信息。

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