| Literature DB >> 25244612 |
Andrey E Shchekotikhin1, Valeria A Glazunova2, Lyubov G Dezhenkova3, Yuri N Luzikov3, Vladimir N Buyanov4, Helena M Treshalina5, Nina A Lesnaya5, Vladimir I Romanenko5, Dmitry N Kaluzhny6, Jan Balzarini7, Keli Agama8, Yves Pommier8, Alexander A Shtil2, Maria N Preobrazhenskaya3.
Abstract
A series of new 3-aminomethyl-4,11-dihydroxynaphtho[2,3-f]indole-5,10-diones 6-13 bearing the cyclic diamine in the position 3 of the indole ring was synthesized. The majority of new compounds demonstrated a superior cytotoxicity than doxorubicin against a panel of mammalian tumor cells with determinants of altered drug response, that is, Pgp expression or p53 inactivation. For naphtho[2,3-f]indole-5,10-diones 6-9 bearing 3-aminopyrrolidine in the side chains, the ability to bind double-stranded DNA and inhibit topoisomerases 1 and 2 mediated relaxation of supercoiled DNA were demonstrated. Only one isomer, (R)-4,11-dihydroxy-3-((pyrrolidin-3-ylamino)methyl)-1H-naphtho[2,3-f]indole-5,10-dione (7) induced the formation of specific DNA cleavage products similar to the known topoisomerase 1 inhibitors camptothecin and indenoisoquinoline MJ-III-65, suggesting a role of the structure of the side chain of 3-aminomethylnaphtho[2,3-f]indole-5,10-diones in interaction with the target. Compound 7 demonstrated an antitumor activity in mice with P388 leukemia transplants whereas its enantiomer 6 was inactive. Thus, 3-aminomethyl derivatives of 4,11-dihydroxynaphtho[2,3-f]indole-5,10-dione emerge as a new prospective chemotype for the search of antitumor agents.Entities:
Keywords: Antitumor activity; Circumvention of multidrug resistance; DNA ligands; Naphtho[2,3-f]indole-5,10-diones; Topoisomerase 1/2 inhibitors
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Year: 2014 PMID: 25244612 DOI: 10.1016/j.ejmech.2014.09.021
Source DB: PubMed Journal: Eur J Med Chem ISSN: 0223-5234 Impact factor: 6.514