Abstract

Two novel C(7)-derivatives of natural anticancer agent colchicine were designed with the purpose to study their ability to induce tubulin clustering in cancer cells. The compounds were synthesized via amidation of N-deacetylcolchicine and Steglich esterification. The conjugate of colchicine with the guanosine derivative possesses moderate cytotoxicity to these cells (EC50 = 13.7 µmol L−1) inducing the depolymerization of microtubules of human lung carcinoma A549 cells but does not stimulate the formation of tubulin clusters. The colchicine conjugate with the biphenyl moiety causes a strong tubulin clustering comparable to that of anticancer agent tubuloclustin. This effect was observed for the first time for the colchicine derivative bearing no substituent at the acetyl group capable of forming hydrogen bonds with target protein.

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