利用超高效液相色谱-四极杆飞行时间质谱对太白参成分进行分析和表征

Xin Gao, Wenjun Sun, Yaxuan Wang, Xiaohui Li, Xia Liu, Yunzhe Li, Xiaofeng Niu
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引用次数: 0

摘要

据报道,太白参(Pedicularis decora Franch.的根)具有抗老年痴呆症(anti-Alzheimer's disease,AD)的活性,可用于治疗老年痴呆症。然而,由于相关研究较少,太白参的化学成分尚未阐明,这阻碍了对太白参药理机制和利用的进一步研究。本研究首次建立了一种快速、高效、全面分析太白参化学成分的方法。我们利用超高效液相色谱-四极杆飞行时间质谱结合 UNIFI 数据处理平台自动表征和鉴定了太白人参的化学成分。结果检测到超过 76 种化合物,并对其结构进行了表征。这些化合物包括 24 种鸢尾甙、24 种苯乙醇甙、15 种萜类化合物和 13 种其他成分。其中有 50 多种化合物是首次从太白人参中检出。我们的研究结果为太白参的质量控制提供了参考,并为药效学研究建立了更高的质量标准。对本文所报道的方法进行适当的修改,可用于太白参和其他刺五加属化合物的筛选和表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Profiling and characterization of the constituents of taibai ginseng using ultra‐high performance liquid chromatography‐quadrupole time of flight mass spectrometry
Taibai ginseng (roots of Pedicularis decora Franch.) has been reported to possess anti‐Alzheimer's disease (anti‐AD) activity and can be potentially used for treating AD. However, the chemical constituents of taibai ginseng have not yet been elucidated because of the paucity of relevant studies, which hinders further research on the pharmacological mechanism and utilization of taibai ginseng. In this study, a rapid and efficient method for comprehensively analyzing the chemical constituents of taibai ginseng was established for the first time. We used ultra‐high performance liquid chromatography‐quadrupole time of flight mass spectrometry in combination with the UNIFI data‐processing platform to automatically characterize and identify the chemical profile of taibai ginseng. As a result, more than 76 compounds were detected, and their structures were characterized. These compounds include 24 iridoid glycosides, 24 phenylethanol glycosides, 15 terpenoids, and 13 other components. More than fifty of these compounds from taibai ginseng were reported for the first time. Our results provide a reference for the quality control of taibai ginseng and establish a higher quality standard for pharmacodynamic research. Appropriate modification of the method reported herein can enable its use for the screening and characterization of taibai ginseng and other compounds from the Pedicularis genus.
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