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Absolute configuration of naturally occurring glabridin
Author(s) -
Simmler Charlotte,
Fronczek Frank R.,
Pauli Guido F.,
Santarsiero Bernard D.
Publication year - 2013
Publication title -
acta crystallographica section c
Language(s) - English
Resource type - Journals
eISSN - 1600-5759
pISSN - 0108-2701
DOI - 10.1107/s0108270113018842
Subject(s) - absolute configuration , chemistry , chromatography , sephadex , yield (engineering) , molecule , circular dichroism , stereochemistry , organic chemistry , materials science , metallurgy , enzyme
The title compound {systematic name: 4‐[(3 R )‐8,8‐dimethyl‐3,4‐dihydro‐2 H ‐pyrano[2,3‐ f ]chromen‐3‐yl]benzene‐1,3‐diol, commonly named glabridin}, C 20 H 20 O 4 , is a species‐specific biomarker from the roots Glycyrrhiza glabra L. (European licorice, Fabaceae). In the present study, this prenylated isoflavan has been purified from an enriched CHCl 3 fraction of the extract of the root, using three steps of medium‐pressure liquid chromatography (MPLC) by employing HW‐40F, Sephadex LH‐20 and LiChroCN as adsorbents. Pure glabridin was crystallized from an MeOH–H 2 O mixture (95:5  v / v ) to yield colorless crystals containing one molecule per asymmetric unit ( Z ′ = 1) in the space group P 2 1 2 1 2 1 . Although the crystal structure has been reported before, the determination of the absolute configuration remained uncertain. Stereochemical analysis, including circular dichroism, NMR data and an X‐ray diffraction data set with Bijvoet differences, confirms that glabridin, purified from its natural source, is found only in a C3 R configuration. These results can therefore be used as a reference for the assignment of the configuration and enantiopurity of any isolated or synthetic glabridin sample.

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