Issue 12, 2008

Synthesis and biological evaluation of novel oxophenylarcyriaflavins as potential anticancer agents

Abstract

We report the synthesis and biological evaluation of new oxophenylarcyriaflavins designed as potential anticancer agents. An efficient synthesis involving palladium-catalyzed Suzuki and Stille reactions is presented, without any indolic protective group. The central ring closure of the scaffold was performed through an electrophilic reaction on the position C-2 of the indole ring. The use of indole and 5-benzyloxyindole, along with substituted phenyl rings, generated three different scaffolds, which were successively exploited to modulate the structure. The cytotoxicity of the newly designed compounds on four cancer cell lines and activities against three kinases (CDK1, CDK5 and GSK3) were evaluated. Several compounds showed a marked cytotoxicity with IC50 values in the sub-micromolar range, and induced important cell cycle perturbations, with a G2/M arrest. Some compounds revealed DNA binding properties and were found to inhibit topoisomerase-mediated DNA relaxation of supercoiled DNA, but these properties are not mandatory for a cytotoxic action. A novel lead compound (32) has been identified and warrants further investigations.

Graphical abstract: Synthesis and biological evaluation of novel oxophenylarcyriaflavins as potential anticancer agents

Supplementary files

Article information

Article type
Paper
Submitted
21 Jan 2008
Accepted
03 Mar 2008
First published
15 Apr 2008

Org. Biomol. Chem., 2008,6, 2108-2117

Synthesis and biological evaluation of novel oxophenylarcyriaflavins as potential anticancer agents

A. Bourderioux, V. Bénéteau, J. Mérour, B. Baldeyrou, C. Ballot, A. Lansiaux, C. Bailly, R. Le Guével, C. Guillouzo and S. Routier, Org. Biomol. Chem., 2008, 6, 2108 DOI: 10.1039/B801121D

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