Design and synthesis of potent in vitro and in vivo anticancer agents based on 1-(3',4',5'-trimethoxyphenyl)-2-Aryl-1H-imidazole

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Abstract

A novel series of tubulin polymerization inhibitors, based on the 1-(3',4',5'-trimethoxyphenyl)-2-aryl-1H-imidazole scaffold and designed as cis-restricted combretastatin A-4 analogues, was synthesized with the goal of evaluating the effects of various patterns of substitution on the phenyl at the 2-position of the imidazole ring on biological activity. A chloro and ethoxy group at the meta- and para-positions, respectively, produced the most active compound in the series (4o), with IC 50 values of 0.4-3.8 nM against a panel of seven cancer cell lines. Except in HL-60 cells, 4o had greater antiproliferative than CA-4, indicating that the 3'-chloro-4'-ethoxyphenyl moiety was a good surrogate for the CA-4 B-ring. Experiments carried out in a mouse syngenic model demonstrated high antitumor activity of 4o, which significantly reduced the tumor mass at a dose thirty times lower than that required for CA-4P, which was used as a reference compound. Altogether, our findings suggest that 4o is a promising anticancer drug candidate that warrants further preclinical evaluation.

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Romagnoli, R., Baraldi, P. G., Prencipe, F., Oliva, P., Baraldi, S., Tabrizi, M. A., … Viola, G. (2016). Design and synthesis of potent in vitro and in vivo anticancer agents based on 1-(3’,4’,5’-trimethoxyphenyl)-2-Aryl-1H-imidazole. Scientific Reports, 6. https://doi.org/10.1038/srep26602

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