4.6 Article

Synthesis of New Glycosylated Flavonoids with Inhibitory Activity on Cell Growth

Journal

MOLECULES
Volume 23, Issue 5, Pages -

Publisher

MDPI
DOI: 10.3390/molecules23051093

Keywords

flavonoids; xanthones; growth inhibitory activity; acetylation; glycosylation

Funding

  1. Foundation for Science and Technology from the Minister of Science, Technology and Higher Education (FCT/MCTES-PIDDAC)
  2. European Regional Development Fund (ERDF) through the COMPETE-Programa Operacional Factores de Competitividade (POFC) [POCI-01-0145-FEDER-016790]
  3. PPCDT-Promover a Producao Cientifica e Desenvolvimento Tecnologico e a Constituicao de Redes Tematicas [3599]
  4. programme PT and INNOVMAR-Innovation and Sustainability in the Management and Exploitation of Marine Resources [PTDC/MAR-BIO/4694/2014]
  5. North Portugal Regional Operational Programme (NORTE) [NORTE-01-0145-FEDER-000035]
  6. Fundação para a Ciência e a Tecnologia [PTDC/MAR-BIO/4694/2014] Funding Source: FCT

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Natural flavonoids and xanthone glycosides display several biological activities, with the glycoside moiety playing an important role in the mechanism of action of these metabolites. Herein, to give further insights into the inhibitory activity on cell growth of these classes of compounds, the synthesis of four flavonoids (5, 6, 9, and 10) and one xanthone (7) containing one or more acetoglycoside moieties was carried out. Acetyl groups were introduced using acetic anhydride and microwave irradiation. The introduction of one or two acetoglycoside moieties in the framework of 3,7-dihydroxyflavone (4) was performed using two synthetic methods: the Michael reaction and the Koenigs-Knorr reaction. The in vitro cell growth inhibitory activity of compounds 5, 6, 7, 9, and 10 was investigated in six human tumor cell lines: A375-C5 (malignant melanoma IL-1 insensitive), MCF-7 (breast adenocarcinoma), NCI-H460 (non-small cell lung cancer), U251 (glioblastoma astrocytoma), U373 (glioblastoma astrocytoma), and U87MG (glioblastoma astrocytoma). The new flavonoid 3-hydroxy-7-(2,3,4,6-tetra-O-acetyl--glucopyranosyl) flavone (10) was the most potent compound in all tumor cell lines tested, with GI(50) values < 8 M and a notable degree of selectivity for cancer cells.

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