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Total Syntheses of Biologically Active Pterocarpan, Isoflavan, and Isoflavanone from Dalbergia oliveri
Author(s) -
Singh Dileep Kumar,
Kim Jinwoo,
Sung JongHyuk,
Kim Ikyon
Publication year - 2018
Publication title -
bulletin of the korean chemical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.237
H-Index - 59
ISSN - 1229-5949
DOI - 10.1002/bkcs.11375
Subject(s) - chemistry , total synthesis , stereochemistry , biological activity , biochemistry , in vitro
Biological screening of the natural products from Dalbergia oliveri identified that (6a R ,11a R )‐3,8‐dihydroxy‐9‐methoxypterocarpan and (3 R )‐7,2′‐dihydroxy‐4′,5′‐dimethoxyisoflavanone significantly increased the proliferation of dermal papilla cells and subcutaneous injection of these compounds induced the anagen of hair cycle in animal models. These interesting biological activities led us to design a practical synthetic route to these natural products for further pharmacological evaluation. Here we report the first total syntheses of naturally occurring pterocarpan ((6a R ,11a R )‐3,8‐dihydroxy‐9‐methoxypterocarpan), isoflavan ((3 R )‐5′‐methoxyvestitol), and isoflavanone ((3 R )‐7,2′‐dihydroxy‐4′,5′‐dimethoxyisoflavanone) in a racemic form. A mild ZnCl 2 ‐mediated [3 + 2] annulation method was utilized with chromenes and 2‐methoxy‐1,4‐benzoquinone to construct a pterocarpan framework in a one‐pot manner. O ‐methylation and reductive cleavage of the benzylic C─O bond afforded 5′‐methoxyvestitol, which was transformed to isoflavanone, 7,2′‐dihydroxy‐4′,5′‐dimethoxyisoflavanone, via a three‐step sequence including DDQ‐mediated benzylic oxidation.

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