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Photodynamic therapy-mediated extirpation of cutaneous-resistant dermatophytosis with Ag@ZnO nanoparticles: an efficient therapeutic approach for onychomycosis.

Behnaz GhaemiSeyed Jamal HashemiSharmin KharraziArfa MoshiriHossein Kargar JahromiAmir Amani
Published in: Nanomedicine (London, England) (2022)
Aim: The aim of this study was to determine whether photodynamic therapy of resistant onychomycosis with Ag@ZnO nanoparticles can promote the treatment procedure and extirpates the recurrence of fungal infection. Methods: Ag@ZnO nanoparticles (NPs) under UVB-radiation were applied to treat T. rubrum and T. mentagrophytes in vitro through photodynamic therapy. In vivo therapeutic efficacy, biocompatibility and biodistribution of Ag@ZnO NPs were studied. Results: 40 μg/ml of UVB-activated Ag@ZnO NPs showed 100% antifungal activity against dermatophytosis in vitro and in vivo followed by complete growth prevention by degeneration of spores and mycelium after 180 days, while posed biocompatibility. Conclusion: This study showed the superiority of photodynamic therapy with Ag@ZnO NPs followed by proper regeneration of the skin with Zinc ion of the shell.
Keyphrases
  • photodynamic therapy
  • quantum dots
  • visible light
  • fluorescence imaging
  • room temperature
  • stem cells
  • reduced graphene oxide
  • highly efficient
  • minimally invasive
  • gold nanoparticles
  • pet ct
  • light emitting