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Design, synthesis, in vitro, and in vivo anticancer and antiangiogenic activity of novel 3-arylaminobenzofuran derivatives targeting the colchicine site on tubulin

ROMAGNOLI, Romeo
•
BARALDI, Pier Giovanni
•
Salvador, Maria Kimatrai
altro
Viola, Giampietro
2015
  • journal article

Periodico
JOURNAL OF MEDICINAL CHEMISTRY
Abstract
A new series of compounds characterized by the presence of a 2-methoxy/ethoxycarbonyl group, combined with either no substituent or a methoxy group at each of the four possible positions of the benzene portion of the 3-(3',4',5'-trimethoxyanilino)benzo[b]furan skeleton, were evaluated for antiproliferative activity against cancer cells in culture and, for selected, highly active compounds, inhibition of tubulin polymerization, cell cycle effects, and in vivo potency. The greatest antiproliferative activity occurred with a methoxy group introduced at the C-6 position, the least with this substituent at C-4. Thus far, the most promising compound in this series was 2-methoxycarbonyl-3-(3',4',5'-trimethoxyanilino)-6-methoxybenzo[b]furan (3g), which inhibited cancer cell growth at nanomolar concentrations (IC50 values of 0.3-27 nM), bound to the colchicine site of tubulin, induced apoptosis, and showed, both in vitro and in vivo, potent vascular disrupting properties derived from the effect of this compound on vascular endothelial cells. Compound 3g had in vivo antitumor activity in a murine model comparable to the activity obtained with combretastatin A-4 phosphate.
DOI
10.1021/acs.jmedchem.5b00155
WOS
WOS:000353091300020
Archivio
http://hdl.handle.net/11368/3019577
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84927647021
https://pubs.acs.org/doi/10.1021/acs.jmedchem.5b00155
Diritti
metadata only access
Soggetti
  • Angiogenesis Inhibito...

  • Animal

  • Antineoplastic Agent

  • Apoptosi

  • Benzofuran

  • Binding Site

  • Cell Line

  • Tumor

  • Cell Proliferation

  • Chemistry Technique

  • Synthetic

  • Chick Embryo

  • Colchicine

  • Dose-Response Relatio...

  • Drug

  • Drug Design

  • Human

  • Male

  • Mice

  • Inbred BALB CMice

  • Inbred C57BLModel

  • Molecular

  • Molecular Targeted Th...

  • Structure-Activity Re...

  • Tubulin

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