Zhang Ke, Jia Jinru, Li Ting, Liu Wenjing, Tu Pengfei, Wan Jian-Bo, Li Jun, Song Yuelin
Modern Research Center for Traditional Chinese Medicine, Beijing Research Institute of Chinese Medicine, Beijing University of Chinese Medicine, Beijing 100029, China.
SCIEX China, Beijing 100015, China.
Acta Pharm Sin B. 2024 Sep;14(9):4045-4058. doi: 10.1016/j.apsb.2024.04.029. Epub 2024 May 3.
Although serving as the workhorse, MS/MS cannot fully satisfy the analytical requirements of quantitative sub-metabolome characterization. Because more information intrinsically correlates to more structural and concentration clues, here, efforts were devoted to comprehensively tracing and deciphering MS/MS behaviors through constructing triple three-dimensional (3×3D)-MS/MS spectrum. Ginsenosides-targeted metabolomics of notoginseng, one of the most famous edible medicinal plants, was employed as a proof-of-concept. Serial authentic ginsenosides were deployed to build the correlations between 3×3D-MS/MS spectra and structure/concentration features. Through assaying ginsenosides with progressive concentrations using QTOF-MS to configure 1 3D spectrum, the generations of MS spectral signals, particularly multi-charged multimer anions, , [2M-2H] and [2M+2HCOO] ions, relied on both concentration and the amount of sugar chains. By programming progressive collision energies to the front collision cell of Qtrap-MS device to gain 2 3D spectrum, optimal collision energy (OCE) corresponding to the glycosidic bond fission was primarily correlated with the masses of precursor and fragment ions and partially governed by the glycosidation site. The quantitative relationships between OCEs and masses of precursor and fragment ions were utilized to build large-scale quantitative program for ginsenosides. After applying progressive exciting energies to the back collision chamber to build 3 3D spectrum, the fragment ion and the decomposition product anion exhibited identical dissociation trajectories when they shared the same molecular geometry. After ginsenosides-focused quantitative metabolomics, significant differences occurred for sub-metabolome amongst different parts of notoginseng. The differential ginsenosides were confirmatively identified by applying the correlations between 3×3D-MS/MS spectra and structures. Together, 3×3D-MS/MS spectrum covers all MS/MS behaviors and dramatically facilitates sub-metabolome characterization from both quantitative program development and structural identification.
尽管串联质谱(MS/MS)是主力军,但它无法完全满足定量亚代谢组表征的分析要求。由于更多信息本质上与更多结构和浓度线索相关,因此,本文致力于通过构建三维三重(3×3D)-MS/MS 谱来全面追踪和解读 MS/MS 行为。以最著名的药食两用植物之一三七的人参皂苷靶向代谢组学作为概念验证。使用一系列标准人参皂苷来建立 3×3D-MS/MS 谱与结构/浓度特征之间的相关性。通过使用四极杆飞行时间质谱(QTOF-MS)测定不同浓度的人参皂苷来构建 1 个三维谱,质谱信号的产生,特别是多电荷多聚体阴离子、[2M - 2H]和[2M + 2HCOO]离子,依赖于浓度和糖链数量。通过对 Qtrap-MS 设备的前碰撞室设置递增的碰撞能量来获得 2 个三维谱,对应糖苷键断裂的最佳碰撞能量(OCE)主要与前体离子和碎片离子的质量相关,部分受糖基化位点的影响。利用 OCE 与前体离子和碎片离子质量之间的定量关系,建立了大规模的人参皂苷定量程序。在对后碰撞室施加递增的激发能量以构建 3 个三维谱后,当碎片离子和分解产物阴离子具有相同的分子几何结构时,它们表现出相同的解离轨迹。在进行了聚焦人参皂苷的定量代谢组学研究后,三七不同部位的亚代谢组出现了显著差异。通过应用 3×三维-MS/MS 谱与结构之间的相关性,对差异人参皂苷进行了确证鉴定。总之,3×三维-MS/MS 谱涵盖了所有 MS/MS 行为,从定量程序开发和结构鉴定两方面极大地促进了亚代谢组表征。