Improving the antimicrobial activity of old antibacterial drug mafenide: Schiff bases and their bioactivity targeting resistant pathogens

  • Future Med Chem. 2023 Feb;15(3):255-274. doi: 10.4155/fmc-2022-0259.
Martin Krátký  1 Klára Konečná  2 Adéla Šimková  1 Ondřej Janďourek  2 Jana Maixnerová  3 Jiřina Stolaříková  4 Marcela Vejsová  2  5 Barbora Voxová  5 František Trejtnar  3 Jarmila Vinšová  1
Affiliations
  • 1. Department of Organic & Bioorganic Chemistry, Faculty of Pharmacy in Hradec Králové, Charles University, Hradec Králové, 50005, Czech Republic.
  • 2. Department of Biological & Medical Sciences, Faculty of Pharmacy in Hradec Králové, Charles University, Hradec Králové, 50005, Czech Republic.
  • 3. Department of Pharmacology & Toxicology, Faculty of Pharmacy in Hradec Králové, Charles University, Hradec Králové, 50005, Czech Republic.
  • 4. Laboratory for Mycobacterial Diagnostics and Tuberculosis, Regional Institute of Public Health in Ostrava, Ostrava, 70200, Czech Republic.
  • 5. Department of Clinical Microbiology, University Hospital Hradec Králové, Hradec Králové, 50005, Czech Republic.
Abstract

Background: Increasing rates of acquired resistance have justified the critical need for novel antimicrobial drugs. One viable concept is the modification of known drugs. Methods & results: 21 mafenide-based compounds were prepared via condensation reactions and screened for antimicrobial efficacy, which demonstrated promising activity against both Gram-positive and Gram-negative pathogens, pathogenic fungi and mycobacterial strains (minimum inhibitory concentrations from 3.91 μM). Importantly, they retained activity against a panel of superbugs (methicillin- and vancomycin-resistant staphylococci, enterococci, multidrug-resistant Mycobacterium tuberculosis) without any cross-resistance. Unlike mafenide, most of its imines were bactericidal. Toxicity to HepG2 cells was also investigated. Conclusion: Schiff Bases were significantly more active than the parent drug, with iodinated salicylidene and 5-nitrofuran/thiophene-methylidene scaffolds being preferred in identifying the most promising drug candidates.

Keywords
Schiff bases; antibacterial activity; antifungal activity; antimycobacterial activity; cytotoxicity; drug resistance; enterococci; imine; mafenide; staphylococci.
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