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Epoxide-containing side
chains enhance antiproliferative activity of paullones
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J. Med. Chem. 49, 789-799.
Routier, S., Mérour, J.Y., Dias, N.,
Lansiaux, A., Bailly, C., Lozach, O. and Meijer, L.
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We here report the
synthesis and biological evaluation of new phenylcarbazole derivatives designed
as potential anticancer agents. Indole and hydroxyindole were used to generate
three scaffolds that were successively exploited to introduce various
substituents on the maleimide moiety. The synthesis includes a final
intramolecular key Heck-type reaction, which was carried out with a triflate
derivative or with a bromophenyl derivative. Each step was optimized and the
complete chemical strategy is detailed. Several compounds showed a marked
cytotoxicity against CEM human leukemia cells with IC50 values in the
10-100 nM range. Precise structure-activity relationships were delineated. Cell
cycle analysis, topoisomerase I inhibition, and interaction with DNA were
evaluated, and inhibition of CDK activity was also investigated. Although
binding of the drugs to DNA likely contributes to the cytotoxic action, the
exact molecular targets of these molecules remain undiscovered. The efficient
chemical routes reported here for the design of highly cytotoxic compounds
provide novel opportunities to identify antitumor agents in the phenylcarbazole
series.
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Updated 30 Jan 2006
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