4.7 Article

New Unnatural Gallotannins: A Way toward Green Antioxidants, Antimicrobials and Antibiofilm Agents

期刊

ANTIOXIDANTS
卷 10, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/antiox10081288

关键词

unnatural gallotannins; antioxidant potential; S; aureus; antibiofilm activity; antimicrobial effect

资金

  1. Slovak Grant Agency [VEGA 2/0022/18]
  2. Slovak Research and Development Agency [APVV-17-0373]

向作者/读者索取更多资源

The synthetic unnatural gallotannins showed excellent antioxidant and radical-scavenging properties, moderate antibacterial effects against S. aureus and E. faecalis, and were practically inactive against mycobacteria. However, they were efficient inhibitors of S. aureus biofilms at sub-MIC concentrations and interacted with quorum-sensing systems in certain bacteria.
Nature has been a source of inspiration for the development of new pharmaceutically active agents. A series of new unnatural gallotannins (GTs), derived from d-lyxose, d-ribose, l-rhamnose, d-mannose, and d-fructose have been designed and synthesized in order to study the protective and antimicrobial effects of synthetic polyphenols that are structurally related to plant-derived products. The structures of the new compounds were confirmed by various spectroscopic methods. Apart from spectral analysis, the antioxidant activity was evaluated by 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical-scavenging and iron reducing power (FRAP) assays. Antibacterial activity of compounds was tested in vitro against Staphylococcus aureus ATCC 29213, Enterococcus faecalis ATCC 29212 (reference and control strains), three methicillin-resistant isolates of S. aureus, and three isolates of vancomycin-resistant E. faecalis. For screening of antimycobacterial effect, a virulent isolate of Mycobacterium tuberculosis and two non-tuberculous mycobacteria were used. Furthermore, antibiofilm activity of structurally different GTs against S. aureus, and their ability to inhibit sortase A, were inspected. Experimental data revealed that the studied GTs are excellent antioxidants and radical-scavenging agents. The compounds exhibited only a moderate antibacterial effect against Gram-positive pathogens S. aureus and E. faecalis and were practically inactive against mycobacteria. However, they were efficient inhibitors and disruptors of S. aureus biofilms in sub-MIC concentrations, and interacted with the quorum-sensing system in Chromobacterium violaceum. Overall, these findings suggest that synthetic GTs could be considered as promising candidates for pharmacological, biomedical, consumer products, and for food industry applications.

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