Xia Yong-Gang, Li Guo-Yu, Liang Jun, Ortori Catharine A, Yang Bing-You, Kuang Hai-Xue, Barrett David A
Centre for Analytical Bioscience, School of Pharmacy, University of Nottingham, Nottingham NG7 2RD, UK; Key Laboratory of Chinese Materia Medica (Heilongjiang University of Chinese Medicine), Ministry of Education, Harbin 150040, PR China.
Pharmaceutical College, Harbin Medical University, Harbin 150086, PR China.
J Pharm Biomed Anal. 2014 Nov;100:109-122. doi: 10.1016/j.jpba.2014.07.024. Epub 2014 Aug 1.
Triterpene saponins are important bioactive constituents widely distributed in many plants. Saponins present in Caulophyllum (Berberidaceae) have not been fully characterized. In this study, we studied triterpene saponins from Caulophyllum robustum using liquid chromatography combined with electrospray ionization quadrupole time-of-flight mass spectrometry (LC-qTOF-MS). Rapid identification of Caulophyllum saponins was facilitated using low and high MS cone voltages to induce controlled fragmentation in positive mode. The full scan spectra at low cone voltage of 40V provided considerable structural information relating to aglycone skeletons, sugar types, and linked sequences for Caulophyllum saponins. Seven Caulophyllum aglycones were differentiated and identified by their diagnostic fragment ions combined with accurate mass measurements and characteristic fragmentation pathways. Peak intensity ratio of aglycone+H-2H2O to aglycone+H-H2O in full scan spectra acquired with low cone voltage is correlated with structural features of hederagenin and echinocystic acid and is useful for the discrimination of these positional isomers. However, at a high voltage of 200V, the saponin M+H ion and its fragmentation ions were not present; and the single saponin M+Na generated Bα+Na and Y0α+Na by in-source fragmentation, which provided structural information on the α- and β-sugar chains in the saponins. This approach enabled simultaneous acquisition of structural information on both aglycones and sugar chains from full scan spectra in one injection. Based on the developed strategy, 51 triterpene saponins of seven different classes were fully characterized or tentatively identified, of which 32 constituents were the first to be reported in genus Caulophyllum and 18 compounds were characterized as potentially new compounds.
三萜皂苷是广泛分布于许多植物中的重要生物活性成分。存在于类叶升麻属(小檗科)植物中的皂苷尚未得到充分表征。在本研究中,我们使用液相色谱结合电喷雾电离四极杆飞行时间质谱(LC-qTOF-MS)研究了粗壮类叶升麻中的三萜皂苷。通过在正模式下使用低和高质谱锥电压诱导可控碎片化,促进了类叶升麻皂苷的快速鉴定。在40V低锥电压下的全扫描光谱提供了与类叶升麻皂苷苷元骨架、糖类型和连接序列相关的大量结构信息。通过其诊断性碎片离子结合精确质量测量和特征性碎片化途径,区分并鉴定了七种类叶升麻苷元。在低锥电压下采集的全扫描光谱中,苷元+H-2H₂O与苷元+H-H₂O的峰强度比与常春藤皂苷元和刺囊酸的结构特征相关,可用于区分这些位置异构体。然而,在200V的高电压下,皂苷M+H离子及其碎片化离子不存在;单个皂苷M+Na通过源内碎片化产生Bα+Na和Y0α+Na,这提供了皂苷中α-和β-糖链的结构信息。这种方法能够在一次进样中从全扫描光谱同时获取苷元和糖链的结构信息。基于所开发的策略,对七种不同类别的51种三萜皂苷进行了全面表征或初步鉴定,其中32种成分是首次在类叶升麻属中报道,18种化合物被表征为潜在的新化合物。