Acetylated Rhamnose Triterpenoid Saponins from Glechoma longituba Analyzed by LC-Q-TOFMS.
Xi-Lin OuyangTian-Hua MaGui-Liang XieShan ChenHeng-Shan WangQiang JiaEn-De ZhangJing-Hua HuangPublished in: Chemistry & biodiversity (2021)
The aim of the present work is to isolate a series of triterpene derivatives with rhamnosyl linking acetyl groups from Glechoma longituba according to the structural characteristics of previously described triterpene saponins. The extract ion chromatography spectrum of the crude extract of G. longituba was detected and analyzed by HPLC-HR-ESI-MS to determine possible components, and these metabolites were traced and separated by combining high-resolution mass spectrometry and predicted liquid chromatography retention time. Three 11α, 12α-epoxypentacyclic oleanolic acid triterpene saponins (glechomanosides H-J) and one ursane triterpene aldehyde saponin with a C-28 aldehyde group were isolated from G. longituba. The structure of these compounds was confirmed by NMR and compared with those of previously characterized compounds. The strategy described in this report enables a rapid, reliable, and complete analysis of glycoside compounds containing different numbers of acetyl groups at different positions on the sugar.
Keyphrases
- liquid chromatography
- high resolution mass spectrometry
- mass spectrometry
- ms ms
- tandem mass spectrometry
- simultaneous determination
- ultra high performance liquid chromatography
- solid phase extraction
- high performance liquid chromatography
- gas chromatography
- high resolution
- oxidative stress
- magnetic resonance
- multiple sclerosis
- anti inflammatory
- sensitive detection
- solid state