Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, Uttar Pradesh, India.
J Am Soc Mass Spectrom. 2021 May 5;32(5):1205-1214. doi: 10.1021/jasms.1c00017. Epub 2021 Apr 5.
Ultraperformance liquid chromatography coupled with electrospray ionization tandem mass spectrometry (UPLC-ESI-MS/MS) is an economical and indispensable tool in natural product research to investigate novel metabolites, biomarker discovery, chemical diversity exploration, and structure elucidation. In this study, the structural analysis of 38 naturally occurring cardiac glycosides (CGs) in various tissues of was achieved by the extensive use of mass spectrometry. The chemical diversity of CGs was described on the basis of characteristic MS/MS fragmentation patterns, accurate mass measurement, and published scientific information on CGs from . It was observed that only six genins, ., Δanhydrogitoxigenin, Δadynerigenin, gitoxigenin, oleandrigenin, digitoxigenin, and adynerigenine, produce 38 diverse chemical structures of CGs. Among them, 20 were identified as diastereomers having a difference in a sugar (l-oleandrose, β-d-diginose, and β-d-sarmentose) unit. However, the differentiation of diastereomeric CGs was not possible by only MS/MS fragments. Thus, the diastereomer's chromatographic elution order was assigned on the basis of the relative retention time (RRt) of two reference standards (odoroside A and oleandrin) among their diastereomers. Besides this, the in-source fragmentation of CGs and the MS/MS of / 325 and 323 disaccharide daughter ions also exposed the intrinsic structure information on the sugar units. The daughter ions / 162, 145, 113, 95, and 85 in MS/MS spectra indicated the abundance of l-oleandrose, β-d-diginose, and β-d-sarmentose sugars. At the same time, / 161, 143, 129, and 87 product ions confirmed the presence of a β-d-digitalose unit. As a result, the UPLC-ESI/TQD system was successfully utilized for the structure characterization of CGs in tissues.
超高效液相色谱-电喷雾串联质谱(UPLC-ESI-MS/MS)是天然产物研究中不可或缺的经济工具,可用于研究新型代谢物、生物标志物发现、化学多样性探索和结构阐明。在这项研究中,通过广泛使用质谱技术,实现了对 不同组织中 38 种天然存在的强心苷(CGs)的结构分析。基于 CGs 的特征 MS/MS 裂解模式、精确质量测量以及从 发表的 CGs 科学信息,描述了 CGs 的化学多样性。结果表明,只有六种配基,即 、、Δanhydrogitoxigenin、Δadynerigenin、gitoxigenin、oleandrigenin、digitoxigenin 和 adynerigenine,产生了 38 种不同化学结构的 CGs。其中,有 20 种被鉴定为差向异构体,其糖(l-oleandrose、β-d-diginose 和 β-d-sarmentose)单元存在差异。然而,仅通过 MS/MS 片段无法区分差向异构体 CGs。因此,根据其差向异构体中两个参比标准品(odoroside A 和 oleandrin)的相对保留时间(RRt),分配差向异构体的色谱洗脱顺序。除此之外,CGs 的源内碎裂和 325 和 323 二糖子离子的 MS/MS 也揭示了糖单元的内在结构信息。MS/MS 谱中的子离子 / 162、145、113、95 和 85 表明存在大量的 l-oleandrose、β-d-diginose 和 β-d-sarmentose 糖。同时,/ 161、143、129 和 87 产物离子证实存在 β-d-digitalose 单元。因此,UPLC-ESI/TQD 系统成功用于 组织中 CGs 的结构表征。