Biomimetic synthesis of active stilbenolignan derivatives by oxidative coupling and acid-catalyzed polymerization

Two new stilbenolignans and one novel lactone stilbenolignan with a seven-membered ring were biomimetically synthesized by an oxidative coupling reaction and acid-catalyzed polymerization with either isorhapontigenin and ferulic acid or sinapinic acid, respectively, as the starting materials. The st...

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Main Authors: Chunsuo Yao, Mao Lin, Qingyun Yang
Format: Article
Language:English
Published: Elsevier 2013-04-01
Series:Acta Pharmaceutica Sinica B
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2211383513000154
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spelling doaj-e4a7d15a6b7f4dc99c9f831102ce7a682020-11-24T22:25:30ZengElsevierActa Pharmaceutica Sinica B2211-38352211-38432013-04-013210210810.1016/j.apsb.2013.02.002Biomimetic synthesis of active stilbenolignan derivatives by oxidative coupling and acid-catalyzed polymerizationChunsuo YaoMao LinQingyun YangTwo new stilbenolignans and one novel lactone stilbenolignan with a seven-membered ring were biomimetically synthesized by an oxidative coupling reaction and acid-catalyzed polymerization with either isorhapontigenin and ferulic acid or sinapinic acid, respectively, as the starting materials. The structures of the stilbenolignans were defined using spectral analysis and their mechanisms of formation are discussed. Anti-oxidant and anti-inflammatory activities of the novel stilbenolignans were tested, and the lactone stilbenolignan was observed to exhibit potent anti-oxidant activity.http://www.sciencedirect.com/science/article/pii/S2211383513000154StilbenolignanIsorhapontigeninOxidative coupling reactionAnti-oxidation activityBiomimetic synthesis
collection DOAJ
language English
format Article
sources DOAJ
author Chunsuo Yao
Mao Lin
Qingyun Yang
spellingShingle Chunsuo Yao
Mao Lin
Qingyun Yang
Biomimetic synthesis of active stilbenolignan derivatives by oxidative coupling and acid-catalyzed polymerization
Acta Pharmaceutica Sinica B
Stilbenolignan
Isorhapontigenin
Oxidative coupling reaction
Anti-oxidation activity
Biomimetic synthesis
author_facet Chunsuo Yao
Mao Lin
Qingyun Yang
author_sort Chunsuo Yao
title Biomimetic synthesis of active stilbenolignan derivatives by oxidative coupling and acid-catalyzed polymerization
title_short Biomimetic synthesis of active stilbenolignan derivatives by oxidative coupling and acid-catalyzed polymerization
title_full Biomimetic synthesis of active stilbenolignan derivatives by oxidative coupling and acid-catalyzed polymerization
title_fullStr Biomimetic synthesis of active stilbenolignan derivatives by oxidative coupling and acid-catalyzed polymerization
title_full_unstemmed Biomimetic synthesis of active stilbenolignan derivatives by oxidative coupling and acid-catalyzed polymerization
title_sort biomimetic synthesis of active stilbenolignan derivatives by oxidative coupling and acid-catalyzed polymerization
publisher Elsevier
series Acta Pharmaceutica Sinica B
issn 2211-3835
2211-3843
publishDate 2013-04-01
description Two new stilbenolignans and one novel lactone stilbenolignan with a seven-membered ring were biomimetically synthesized by an oxidative coupling reaction and acid-catalyzed polymerization with either isorhapontigenin and ferulic acid or sinapinic acid, respectively, as the starting materials. The structures of the stilbenolignans were defined using spectral analysis and their mechanisms of formation are discussed. Anti-oxidant and anti-inflammatory activities of the novel stilbenolignans were tested, and the lactone stilbenolignan was observed to exhibit potent anti-oxidant activity.
topic Stilbenolignan
Isorhapontigenin
Oxidative coupling reaction
Anti-oxidation activity
Biomimetic synthesis
url http://www.sciencedirect.com/science/article/pii/S2211383513000154
work_keys_str_mv AT chunsuoyao biomimeticsynthesisofactivestilbenolignanderivativesbyoxidativecouplingandacidcatalyzedpolymerization
AT maolin biomimeticsynthesisofactivestilbenolignanderivativesbyoxidativecouplingandacidcatalyzedpolymerization
AT qingyunyang biomimeticsynthesisofactivestilbenolignanderivativesbyoxidativecouplingandacidcatalyzedpolymerization
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