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Antifungal efficacy of imidazo[1,2- a ]pyrazine-based thiosemicarbazones and thiazolidinediones against Sporothrix species.

Reginaldo Gonçalves de Lima-NetoMarlene Sa NetaCarlos At ValerianoRejane Pereira NevesArmando M LacerdaClaudia E FerrazCicero Pinheiro InácioPatrice Le PapeIsabelle Ourliac-GarnierAntônio R FariaTania Maria Sarmento SilvaValéria Rêgo Alves PereiraPascal Marchand
Published in: Future microbiology (2023)
Aim: To evaluate antifungal potential of 5,6,7,8-tetrahydroimidazo[1,2- a ]pyrazine hybrids based on thiosemicarbazones and thiazolidinediones against pathogenic Sporothrix species. Methods: Antifungal activity of nine compounds were assessed by broth microdilution. Interactions between active compounds and itraconazole were evaluated by the checkerboard assay using non-wild-type isolates. Cytotoxicity of the compounds was determined. Results: Four C-3 substituted analogs showed antifungal activity, unrelated to thiosemicarbazone or thiazolidinedione functions. Synergistic interactions between the four compounds and itraconazole, and low toxicity on mouse fibroblast cells were observed. Activity of 5,6,7,8-tetrahydroimidazo[1,2- a ]pyrazine hybrids against Sporothrix depended on the substitution on the imidazopyrazine ring. Conclusion: Antifungal potential, overcoming itraconazole resistance and low toxicity indicate the possible use of that series of compounds in a therapeutic alternative for treatment of sporotrichosis.
Keyphrases
  • candida albicans
  • wild type
  • oxidative stress
  • induced apoptosis
  • molecular docking
  • genetic diversity
  • high throughput
  • risk assessment
  • human health
  • drug delivery
  • molecular dynamics simulations
  • oxide nanoparticles