Laboratoire de Chimie Ago-Industrielle (LCA), Université de Toulouse, INRAe, 4 Allée Emile Monso, 31030 Toulouse, France.
Laboratoire de Génétique Moléculaire, Immunologie et Biotechnologie, Faculté des Sciences de Tunis, Université de Tunis El Manar, Tunis 1068, Tunisia.
Molecules. 2022 Aug 23;27(17):5376. doi: 10.3390/molecules27175376.
Due to their particular structural characteristics, the extraction and isolation of saponins from plants present a serious challenge. In this study, specific extraction protocols were first implemented to extract the secondary metabolites from and, more precisely, the saponins. Subsequent purification of the extracts was based on a single chromatographic technique, high-performance thin-layer chromatography, applying two development systems: a one-step system that separated molecules according to their polarity and a multiple development system that made it possible to detect the triterpenoid saponins, azukisaponin or soyasapogenol at a retarded Rf of 0.2. The difficulties of detecting the saponins encountered during the extraction and purification of the extracts have been highlighted and the strategy carried out to isolate the saponins has been discussed.
由于其特殊的结构特征,从植物中提取和分离皂甙是一项极具挑战性的工作。在本研究中,首先实施了特定的提取方案,从 和 中提取次生代谢产物,更确切地说是皂甙。提取物的后续纯化基于单一的色谱技术,高效薄层色谱,应用两种展开系统:一步系统根据分子的极性进行分离,以及多步展开系统,可在滞后 Rf 为 0.2 时检测到三萜皂甙、azukisaponin 或 soyasapogenol。在提取和纯化提取物过程中,已经强调了检测 皂甙所遇到的困难,并讨论了分离皂甙的策略。