首页> 美国卫生研究院文献>Journal of Ginseng Research >Re-evaluation of physicochemical and NMR data of triol ginsenosides Re Rf Rg2 and 20-gluco-Rf from Panax ginseng roots
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Re-evaluation of physicochemical and NMR data of triol ginsenosides Re Rf Rg2 and 20-gluco-Rf from Panax ginseng roots

机译:从人参根中重新评估三醇人参皂甙ReRfRg2和20-gluco-Rf的理化和NMR数据

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摘要

Ginseng roots were extracted with aqueous methanol, and extracts were suspended in water and extracted successively with ethyl acetate and n-butanol. Column chromatography using the n-butanol fraction yielded four purified triol ginseng saponins: the ginsenosides Re, Rf, Rg2, and 20-gluco-Rf. The physicochemical, spectroscopic, and chromatographic characteristics of the ginsenosides were measured and compared with reports from the literature. For spectroscopic analysis, two-dimensional nuclear magnetic resonance (NMR) methods such as 1H-1H correlation spectroscopy, nuclear Overhauser effect spectroscopy, heteronuclear single quantum correlation, and heteronuclear multiple bond connectivity were employed to identify exact peak assignments. Some peak assignments for previously published 1H- and 13C-NMR spectra were found to be inaccurate. This study reports the complete NMR assignment of 20-gluco-Rf for the first time.
机译:人参根用甲醇水溶液萃取,萃取液悬浮于水中,依次用乙酸乙酯和正丁醇萃取。使用正丁醇馏分进行柱色谱分离,得到四种纯化的三醇人参皂苷:人参皂甙Re,Rf,Rg2和20-葡萄糖-Rf。人参皂甙的理化,光谱和色谱特性得到了测量,并与文献报道进行了比较。对于光谱分析,使用二维核磁共振(NMR)方法,例如 1 H- 1 H相关光谱法,核Overhauser效应光谱法,异核单量子相关法和异核采用多重键连接来确定确切的峰分配。发现先前发布的 1 H-和 13 C-NMR谱的某些峰分配不准确。这项研究首次报告了20-葡萄糖-Rf的完整NMR归属。

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