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Carborane clusters increase the potency of bis-substituted cyclam derivatives against Mycobacterium tuberculosis.


ABSTRACT: Bis-substituted cyclam derivatives have recently emerged as a promising new class of antibacterial agents, displaying excellent activity against drug-resistant Mycobacterium tuberculosis (Mtb) and in vivo efficacy in a zebrafish assay. Herein we report the synthesis and biological activity of new carborane derivatives within this class of antitubercular compounds. The resulting carborane-cyclam conjugates incorporating either hydrophobic closo-1,2-carborane or anionic, hydrophilic nido-7,8-carborane clusters display promising activity in an antibacterial assay employing the virulent Mtb strain H37Rv. The most active of these carborane derivatives exhibit MIC50 values of <1 μM, making them the most active compounds in this unique class of antibacterial cyclams reported to date.

SUBMITTER: Smith N 

PROVIDER: S-EPMC9579921 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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Carborane clusters increase the potency of bis-substituted cyclam derivatives against <i>Mycobacterium tuberculosis</i>.

Smith Nicholas N   Quan Diana D   Nagalingam Gayathri G   Triccas James A JA   Rendina Louis M LM   Rutledge Peter J PJ  

RSC medicinal chemistry 20220802 10


Bis-substituted cyclam derivatives have recently emerged as a promising new class of antibacterial agents, displaying excellent activity against drug-resistant <i>Mycobacterium tuberculosis</i> (<i>Mtb</i>) and <i>in vivo</i> efficacy in a zebrafish assay. Herein we report the synthesis and biological activity of new carborane derivatives within this class of antitubercular compounds. The resulting carborane-cyclam conjugates incorporating either hydrophobic <i>closo</i>-1,2-carborane or anionic  ...[more]

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