Antifungal Activity of an Original Amino-Isocyanonaphthalene (ICAN) Compound Family: Promising Broad Spectrum Antifungals

  • Molecules. 2020 Feb 18;25(4):903. doi: 10.3390/molecules25040903.
Miklós Nagy  1 Gábor Szemán-Nagy  2 Alexandra Kiss  2 Zsolt László Nagy  1 László Tálas  2 Dávid Rácz  1 László Majoros  3 Zoltán Tóth  3 Zsuzsa Máthéné Szigeti  2 István Pócsi  2 Sándor Kéki  1
Affiliations
  • 1. Department of Applied Chemistry, Faculty of Science, University of Debrecen, 4010 Debrecen, Hungary.
  • 2. Department of Molecular Biotechnology and Microbiology, Faculty of Science, University of Debrecen, 4010 Debrecen, Hungary.
  • 3. Department of Medical Microbiology, Faculty of Medicine, University of Debrecen, 1 Egyetem tér, 4010 Debrecen, Hungary.
Abstract

: Multiple drug resistant fungi pose a serious threat to human health, therefore the development of completely new antimycotics is of paramount importance. The in vitro Antifungal activity of the original, 1-amino-5-isocyanonaphthalenes (ICANs) was evaluated against reference strains of clinically important Candida species. Structure-activity studies revealed that the naphthalene core and the isocyano- together with the amino moieties are all necessary to exert Antifungal activity. 1,1-N-dimethylamino-5-isocyanonaphthalene (DIMICAN), the most promising candidate, was tested further in vitro against clinical isolates of Candida species, yielding a minimum inhibitory concentration (MIC) of 0.04-1.25 µg/mL. DIMICAN was found to be effective against intrinsically fluconazole resistant Candida krusei isolates, too. In vivo experiments were performed in a severly neutropenic murine model inoculated with a clinical strain of Candida albicans. Daily administration of 5 mg/kg DIMICAN intraperitoneally resulted in 80% survival even at day 13, whereas 100% of the control group died within six days. Based on these results, ICANs may become an effective clinical lead compound family against Fungal pathogens.

Keywords
1,1-N-dimethylamino-5-isocyanonaphthalene; 1-amino-5-isocyanonaphthalenes; C. albicans; Candida species; antifungal effect; multiple drug resistance.
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