| Literature DB >> 26907951 |
Sanjib Bhakta1, Nicolò Scalacci2,3, Arundhati Maitra1, Alistair K Brown2,4, Saiprasad Dasugari2, Dimitrios Evangelopoulos5, Timothy D McHugh5, Parisa N Mortazavi1, Alexander Twist2, Elena Petricci6, Fabrizio Manetti6, Daniele Castagnolo2,3.
Abstract
Novel pyrroles have been designed, synthesized, and evaluated against mycobacterial strains. The pyrroles have originally been designed as hybrids of the antitubercular drugs BM212 (1) and SQ109 (2), which showed common chemical features with very similar topological distribution. A perfect superposition of the structures of 1 and 2 revealed by computational studies suggested the introduction of bulky substituents at the terminal portion of the pyrrole C3 side chain and the removal of the C5 aryl moiety. Five compounds showed high activity toward Mycobacterium tuberculosis, while 9b and 9c were highly active also against multidrug-resistant clinical isolates. Compound 9c showed low eukaryotic cell toxicity, turning out to be an excellent lead candidate for preclinical trials. In addition, four compounds showed potent inhibition (comparable to that of verapamil) toward the whole-cell drug efflux pump activity of mycobacteria, thus turning out to be promising multidrug-resistance-reversing agents.Entities:
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Year: 2016 PMID: 26907951 DOI: 10.1021/acs.jmedchem.6b00031
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446