4.2 Article

Triazolylthioacetamides Confer Inhibitory Efficacy against Metallo-β-Lactamase IMP-1

Journal

LETTERS IN DRUG DESIGN & DISCOVERY
Volume 18, Issue 1, Pages 76-84

Publisher

BENTHAM SCIENCE PUBL LTD
DOI: 10.2174/1570180817999200831094019

Keywords

Antibiotic resistance; beta-lactam; metallo-beta-lactamases; IMP-1; triazolylthioacetamides; inhibitor

Funding

  1. Shaanxi Province International Cooperation Project [2019KW-068]
  2. Science Foundation of Shaanxi Academy of Sciences [2017K-08]
  3. Science and Technology Research Project of Shaanxi Province Academy of Sciences, PR. China [2018nk-01]

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A series of triazolylthioacetamides were synthesized and exhibited specific inhibitory activity against IMP-1, potentially enhancing the antibacterial efficacy of cefazolin. Some compounds showed low cytotoxicity in cell assays. These findings indicate that triazolylthioacetamides could serve as effective inhibitors of metallo-beta-lactamases.
Background: The appearance of antibiotic resistance caused by metallo-beta-lactamases (M beta Ls) is a global public health threat. Developing M beta Ls inhibitor is an effective way to overcome antibiotic resistance. Recently, azolylthioacetamides were reported to be promising M beta Ls inhibitors. Methods: Triazolylthioacetamides were synthesized and tested for inhibition activity against the purified M beta L IMP-1. Antimicrobial activities of these inhibitors in combination with cefazolin were evaluated. Isothermal Titration Calorimetry (ITC) was employed to characterize the binding of the inhibitor to IMP-1, and their action mechanism was studied by molecular docking. Results: Twenty compounds exhibited specific inhibitory activity against IMP-1 with an IC50 value in the range of 3.1-62.5 mu M. Eight of the compounds can restore the antibacterial efficacy of cefazolin against E. coli BL21 strain producing IMP-1 by 2-4 fold. ITC monitoring showed that 1c exhibited dose-dependent inhibition on IMP-1. Docking studies revealed that the triazole group in 1c and 2d played an essential role in the inhibition activity. Cytotoxicity assay showed that 1c and 2d have low toxicity in L929 mouse fibroblastic cells. Conclusion: The triazolylthioacetamides are efficient inhibitors of IMP-1 in vitro and in vivo.

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