Pyrazinamide-derived 1,2,3-triazoles: Antimicrobial evaluation, selective antimycobacterial activity and mechanism of action insights

  • Eur J Med Chem. 2026 Jun 23:317:119091. doi: 10.1016/j.ejmech.2026.119091.
Priam-Amedeo Houngbedji  1 Andrea Bachtíková  2 Jarmila Boháčová  2 Parinaz Tabarestani  2 Ondřej Janďourek  2 Klára Konečná  2 Jan Ősterreicher  2 Pavla Paterová  3 Martin Novák  4 Pavel Bárta  2 Monika Záhorszká  5 Jana Korduláková  5 Matteo Mori  6 Fiorella Meneghetti  6 Jan Zitko  7
Affiliations
  • 1. Faculty of Pharmacy in Hradec Králové, Charles University, Ak. Heyrovského 1203, Hradec Králové, 500 03, Czech Republic. Electronic address: [email protected].
  • 2. Faculty of Pharmacy in Hradec Králové, Charles University, Ak. Heyrovského 1203, Hradec Králové, 500 03, Czech Republic.
  • 3. Department of Clinical Microbiology, University Hospital Hradec Králové, Sokolská 581, Hradec Králové, 500 03, Czech Republic.
  • 4. Biomedical Research Centre, University Hospital Hradec Králové, Sokolská 581, Hradec Králové, 500 03, Czech Republic.
  • 5. Department of Biochemistry, Faculty of Natural Sciences, Comenius University in Bratislava, Ilkovičova 6, Bratislava, 814 99, Slovakia.
  • 6. Department of Pharmaceutical Sciences, University of Milan, Via Mangiagalli 25, Milan, 20133, Italy.
  • 7. Faculty of Pharmacy in Hradec Králové, Charles University, Ak. Heyrovského 1203, Hradec Králové, 500 03, Czech Republic. Electronic address: [email protected].
Abstract

A series of pyrazinamide-derived 1,2,3-triazoles featuring systematic chlorination of the pyrazine ring and diverse aryl substituents was synthesized and evaluated for antimycobacterial activity. Biological activity screening revealed broad-spectrum antimycobacterial activity and good selectivity toward mycobacteria over Other pathogens, with 11 of the prepared compounds showing activity against Mycobacterium tuberculosis (Mtb) H37Ra and/or Mtb H37Rv (MIC ≤62.5 μg/mL). Structure-activity relationship analysis showed that 5-Cl substitution on the pyrazine ring was associated with improved antimycobacterial activity, with the best MIC values observed for compound 7 against Mtb H37Ra (MIC = 1.98 μg/mL) and compound 37 against Mtb H37Rv (MIC = 1.56 μg/mL). The tested compounds retained activity against drug-resistant Mtb isolates and partially against naturally resistant Mycobacterium abscessus, while showing low in vitro cytotoxicity in the HepG2 cell line and favorable selectivity indices. During advanced cytotoxicity testing, both compounds 7 and 37 displayed substantially lower hemolytic activity than bedaquiline, indicating a favorable erythrocyte safety profile within the tested concentration ranges. In vivo toxicity testing on Galleria mellonella showed low acute toxicity for both compounds. Mechanistic studies on compounds 7, 27, 31, and 37 revealed reduced biosynthesis of fatty acids and derived lipids, a phenotype consistent with interference with the Fatty Acid Synthase I (FAS I) system.

Keywords
1,2,3-Triazole; Antimicrobial screening; Antimycobacterial; Fatty acid synthase I; Mycobacterium tuberculosis; Pyrazinamide.
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