College of Chinese Medicinal Material, Jilin Agricultural University, Changchun, China.
Institute of Special Animal and Plant Sciences of Chinese Academy of Agricultural Sciences, Changchun, China.
Rapid Commun Mass Spectrom. 2022 May 30;36(10):e9270. doi: 10.1002/rcm.9270.
Some studies have shown that Panax quinquefolium fruit (PQF) could also be used as a potential medicinal resource. However, little is known about the composition of ginsenosides and their dynamic changes at different development stages of PQF. Therefore, this study is of great significance for the metabolomics and rational utilization of PQF.
The samples were analyzed using ultra-high-performance liquid chromatography combined with an Orbitrap mass spectrometer (UHPLC-Orbitrap MS), and the method of metabonomics was applied to profile the dynamic changes of ginsenosides in PQF at different development stages.
A total of 109 ginsenosides were identified or tentatively characterized. Samples collected from different development stages were significantly discriminated according to ginsenoside contents. A total of 25 potential chemical markers enabling the differentiation were discovered.
For the first time, the study developed an UHPLC-Orbitrap MS-based approach to detect ginsenoside in PQF at different development stages using a non-targeted mode. This comprehensive phytochemical profile study revealed the structural diversity and discrimination of ginsenosides in PQF at different development stages, which could provide the basis for the metabolomics and rational application of PQF.
一些研究表明,西洋参果实(PQF)也可用作潜在的药用资源。然而,关于 PQF 不同发育阶段人参皂苷的组成及其动态变化知之甚少。因此,这项研究对于 PQF 的代谢组学和合理利用具有重要意义。
使用超高效液相色谱与轨道阱质谱联用(UHPLC-Orbitrap MS)对样品进行分析,并采用代谢组学方法对 PQF 不同发育阶段人参皂苷的动态变化进行分析。
共鉴定或初步表征了 109 个人参皂苷。根据人参皂苷含量,不同发育阶段采集的样品明显区分。发现了总共 25 个潜在的化学标志物可以进行区分。
本研究首次建立了一种基于 UHPLC-Orbitrap MS 的非靶向方法,用于检测不同发育阶段 PQF 中的人参皂苷。这项全面的植物化学特征研究揭示了不同发育阶段 PQF 中人参皂苷的结构多样性和差异,为 PQF 的代谢组学和合理应用提供了依据。