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首页> 外文期刊>Metabolites >Feature-Based Molecular Networking to Target the Isolation of New Caffeic Acid Esters from Yacon ( Smallanthus sonchifolius , Asteraceae)
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Feature-Based Molecular Networking to Target the Isolation of New Caffeic Acid Esters from Yacon ( Smallanthus sonchifolius , Asteraceae)

机译:基于特征的分子网络,以靶向Yacon(Smallanthus Sonchifolius,Asteraceae)的新咖啡酸酯的分离

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Smallanthus sonchifolius (yacon) is an edible tuberous Andean shrub that has been included in the diet of indigenous people since before recorded history. The nutraceutical and medicinal properties of yacon are widely recognized, especially for the improvement of hyperglycemic disorders. However, the chemical diversity of the main bioactive series of caffeic acid esters has not been explored in detail. In this metabolomics study, we applied the latest tools to facilitate the targeted isolation of new caffeic acid esters. Using liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS), we analyzed extracts from different organs (roots, vascular tissues of the stems, stem epidermis, leaves, bracts, and ray flowers) and followed a feature-based molecular networking approach to characterize the structural diversity of caffeic acid esters and recognize new compounds. The analysis identified three potentially new metabolites, one of them confirmed by isolation and full spectroscopic/spectrometric assignment using nuclear magnetic resonance (NMR), high-resolution mass spectrometry (HRMS), and MS/MS. This metabolite (5- O -caffeoyl-2,7-anhydro- d -glycero-β- d -galacto-oct-2-ulopyranosonic acid), along with eight known caffeic acid esters, was isolated from the roots and stems. Furthermore, based on detailed tandem MS analyses, we suggest that the two isomeric monocaffeoyl-2,7-anhydro-2-octulopyranosonic acids found in yacon can be reliably distinguished based on their characteristic MS 2 and MS 3 spectra. The outcome of the current study confirms the utility of feature-based molecular networking as a tool for targeted isolation of previously undescribed metabolites and reveals the full diversity of potentially bioactive metabolites from S. sonchifolius .
机译:Smallanthus sonchifolius(yacon)是一种可食用的枯枝灌木丛,以来已被列入土着人民的饮食以来以来历史。盐的营养保健品和药用特性被广泛认识到,特别是对于高血糖疾病的改善。然而,尚未详细探讨了主要生物活性系列的咖啡酸酯的化学多样性。在这种代谢组科研究中,我们应用了最新工具,以促进新的咖啡酸酯的靶向分离。使用液相色谱偶联至串联质谱(LC-MS / MS),我们分析了来自不同器官的提取物(茎,茎表皮,叶子,苞片,苞片和射线花朵)的萃取物,并遵循特征的分子网络表征咖啡酸酯结构多样性的方法,识别新化合物。该分析确定了三种潜在的新代谢物,其中一个是通过使用核磁共振(NMR),高分辨率质谱(HRMS)和MS / MS的分离和全光谱/光谱分配证实。该代谢物(5-O-Caffeyl-2,7-α-羟基-Glycero-β-d -galacto-1010-10- u1 ulopyranosonic酸和八个已知的咖啡酸酯与根部和茎分离。此外,基于详细的串联MS分析,我们表明,基于其特征MS 2和MS 3光谱,可以可靠地区分在yacon中发现的两种异构单一组合伊酰-2,7-α-羟基-2-辛吡喃醇。目前研究的结果证实了基于特征的分子网络的效用作为靶向近似未等待的代谢物的靶向分离的工具,并揭示了来自S. Sonchifolius的潜在生物活性代谢物的全部多样性。

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