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Anti-mycobacterial activity of 1,3-diaryltriazenes.

Vajs, Jure
Uythethofken, Cynthia
Virag, Andrej
Kočevar, Marijan
Verschaeve, Luc
Gazvoda, Martin
Polanc, Slovenko
Huygen, Kris
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Abstract

The rapid generation and spread of the drug resistant tuberculosis has led to an ongoing demand for novel compounds for therapeutic use. Identification and study of compounds with the ability to inhibit Mycobacterium tuberculosis is of paramount importance. For this reason, a library of substituted 1,3-diaryltriazenes based on the acting component of the anti-trypanosomal drug, diminazene aceturate was created and evaluated for its potential as anti-tubercular agent. Several compounds were identified with sub-micro molar inhibitory concentrations against M. tuberculosis and other clinically relevant mycobacterial species such as Mycobacterium bovis, Mycobacterium avium and Mycobacterium ulcerans. Although the library of the compounds showed a considerable acute cytotoxicity, a genotoxicity could not be observed. Finally, the triazene 14 was selected with the best biological properties (IC50 = 3.26 μM, NI50 = 24.22 μM, SI = 7.44). The compound 14 showed the ability to inhibit the growth of intracellular replicating and multi-drug resistant M. tuberculosis. The results suggest the molecule to be an interesting scaffold for further study and optimization.

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2014-04-22
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Peer reviewed scientific article
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Animals, Antitubercular Agents, Cell Line, Cell Survival, Dose-Response Relationship, Drug, Macrophages, mice, Microbial Sensitivity Tests, Molecular Structure, Mycobacterium avium, Mycobacterium bovis, Mycobacterium ulcerans, Structure-Activity Relationship, Triazenes
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