Yamagaki Tohru, Sugahara Kohtaro, Fujikawa Kohki, Washida Kazuto
Suntory Institute for Bioorganic Research, Suntory Foundation of Life Sciences, 8-1-1 Seikadai, Seika-Cho, Soraku, Kyoto 619-0284, Japan.
Nara Prefectural Agricultural Experiment Station, 88 Shijo, Kashihara, Nara 634-0813, Japan.
Mass Spectrom (Tokyo). 2022;11(1):A0101. doi: 10.5702/massspectrometry.A0101. Epub 2022 Feb 28.
Paeoniflorin and albiflorin, which are functional isomers, are the major constituents of an herbal medicine derived from . Those functional isomers and their galloylated derivatives, which are positional isomers, were studied by matrix-assisted laser desorption/ionization-tandem mass spectrometry (MALDI-MS/MS). The resulting mass spectra are discussed based on the fragmentation patterns of the sodium adducts. The product ion spectra of 4--galloylalbiflorin and 4'--galloylpaeoniflorin differed, even though they were positional isomers. The fragmentations of the ester parts were influenced by the neighboring hydroxyl groups. The ionization efficiency of the sodium adduct of albiflorin was higher than that for paeoniflorin. These results indicate that the carboxylic ester group has a higher affinity for sodium ions than the acetal group, which can be attributed to the carbonyl oxygen being negatively polarized, allowing it to function as a Lewis base.
芍药苷和芍药内酯苷是官能异构体,是源自某草药的主要成分。那些官能异构体及其没食子酰化衍生物(位置异构体)通过基质辅助激光解吸/电离串联质谱法(MALDI-MS/MS)进行了研究。基于钠加合物的碎裂模式对所得质谱进行了讨论。尽管4''-没食子酰芍药内酯苷和4'-没食子酰芍药苷是位置异构体,但其产物离子谱却有所不同。酯部分的碎裂受相邻羟基的影响。芍药内酯苷钠加合物的电离效率高于芍药苷。这些结果表明,羧酸酯基团对钠离子的亲和力高于缩醛基团,这可归因于羰基氧带负电,使其能够作为路易斯碱发挥作用。