Triazole-diindolylmethane conjugates as new antitubercular agents: synthesis, bioevaluation, and molecular docking

We describe the synthesis of novel triazole-incorporated diindolylmethanes (DIMs) using a molecular hybridization approach. The in vitro antitubercular activity of the DIMs against Mycobacterium tuberculosis H37Ra (ATCC 25177) was tested in the active and dormant state. Among all the synthesized con...

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Veröffentlicht in:MedChemComm 2018-07, Vol.9 (7), p.1114-113
Hauptverfasser: Danne, Ashruba B, Choudhari, Amit S, Chakraborty, Shakti, Sarkar, Dhiman, Khedkar, Vijay M, Shingate, Bapurao B
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Sprache:eng
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Zusammenfassung:We describe the synthesis of novel triazole-incorporated diindolylmethanes (DIMs) using a molecular hybridization approach. The in vitro antitubercular activity of the DIMs against Mycobacterium tuberculosis H37Ra (ATCC 25177) was tested in the active and dormant state. Among all the synthesized conjugates, the compounds 6b , 6f , 6l , 6n , 6q , 6r , and 6s displayed good antitubercular activity against both the active and dormant Mtb H37Ra strain. The compound 6l exhibited good antitubercular activity against dormant Mtb H37Ra with an IC 50 value of 1 μg mL −1 and IC 90 (MIC) value of 3 μg mL −1 . The compounds 6b , 6l , and 6r displayed good antitubercular activity against active Mtb H37Ra with IC 50 values of 2.19, 1.52, and 0.22 μg mL −1 , respectively. The compounds 6b , 6h , 6l , and 6s displayed more than 70% inhibition against the Gram-positive Bacillus subtilus strain at 3 μg mL −1 . The molecular docking study showed the binding modes of the titled compounds in the active site of the DprE1 enzyme and assisted with elucidating a structural basis for the inhibition of Mycobacteria . We describe the synthesis of novel triazole-incorporated diindolylmethanes (DIMs) using a molecular hybridization approach.
ISSN:2040-2503
2040-2511
DOI:10.1039/c8md00055g