Discovery of hydrazone containing thiadiazoles as Mycobacterium tuberculosis growth and enoyl acyl carrier protein reductase (InhA) inhibitors

Tuberculosis, caused by Mycobacterium tuberculosis, is a serious infectious disease and remains a global health problem. There is an increasing need for the discovery of novel therapeutic agents for its treatment due to the emerging multi-drug resistance. Herein, we present the rational design and t...

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Veröffentlicht in:European journal of medicinal chemistry 2020-02, Vol.188, p.112035-112035, Article 112035
Hauptverfasser: Doğan, Hilal, Doğan, Şengül Dilem, Gündüz, Miyase Gözde, Krishna, Vagolu Siva, Lherbet, Christian, Sriram, Dharmarajan, Şahin, Onur, Sarıpınar, Emin
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Sprache:eng
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Zusammenfassung:Tuberculosis, caused by Mycobacterium tuberculosis, is a serious infectious disease and remains a global health problem. There is an increasing need for the discovery of novel therapeutic agents for its treatment due to the emerging multi-drug resistance. Herein, we present the rational design and the synthesis of eighteen new thiadiazolylhidrazones (TDHs) which were synthesized by intramolecular oxidative N–S bond formation reaction of 2-benzylidene-N-(phenylcarbamothioyl)hydrazine-1-carboximidamide derivatives by phenyliodine(III) bis(trifluoroacetate) (PIFA) under mild conditions. The compounds were characterized by various spectral techniques including FTIR, 1H NMR, 13C NMR and HRMS. Furthermore, the proposed structure of TDH12 was resolved by single-crystal X-ray analysis. The compounds were evaluated for their in vitro antitubercular activity against M. tuberculosis H37Rv. Among them, some compounds exhibited remarkable antimycobacterial activity, MIC = 0.78–6.25 μg/mL, with low cytotoxicity. Additionally, the most active compounds were screened for their biological activities against M. tuberculosis in the nutrient starvation model. Enzyme inhibition assays and molecular docking studies revealed enoyl acyl carrier protein reductase (InhA) as the possible target enzyme of the compounds to show their antitubercular activities. [Display omitted] •Rational design and synthesis of thiadiazolylhydrazones as antitubercular agents.•Evaluation of antimycobacterial activity by MABA and nutrient starvation model.•Effective antitubercular agents with low cytotoxicities.•InhA emerged as an important target enzyme for the compounds.•Molecular docking studies supported InhA inhibition assay.
ISSN:0223-5234
1768-3254
DOI:10.1016/j.ejmech.2020.112035