Nail Lacquer Containing Origanum vulgare and Rosmarinus officinalis Essential Oils and Biogenic Silver Nanoparticles for Onychomycosis: Development, Characterization, and Evaluation of Antifungal Efficacy

Author:

Scandorieiro Sara1ORCID,de Oliveira Natalia Rodrigues1,de Souza Monique2,de Castro-Hoshino Lidiane Vizioli2ORCID,Baesso Mauro Luciano2ORCID,Nakazato Gerson3ORCID,Kobayashi Renata Katsuko Takayama3ORCID,Panagio Luciano Aparecido4,Lonni Audrey Alesandra Stinghen Garcia1ORCID

Affiliation:

1. Laboratory of Innovation and Cosmeceutical Technology, Department of Pharmaceutical Sciences, Center of Health Sciences, Hospital Universitário de Londrina, Robert Koch Avenue, 60, Londrina 86038-350, Brazil

2. Department of Physics, Center of Exact Sciences, Universidade Estadual de Maringá, Colombo Avenue, 5790, Maringá 87020-900, Brazil

3. Laboratory of Basic and Applied Bacteriology, Department of Microbiology, Center of Biological Sciences, Universidade Estadual de Londrina, Celso Garcia Cid Road, PR-445, Km 380, University Campus, Londrina 86057-970, Brazil

4. Laboratory of Medical Mycology and Oral Microbiology, Department of Microbiology, Center of Biological Sciences, Universidade Estadual de Londrina, Celso Garcia Cid Road, PR-445, Km 380, University Campus, Londrina 86057-970, Brazil

Abstract

Onychomycosis is a common fungal nail infection for which new antifungals are needed to overcome antimicrobial resistance and the limitations of conventional treatments. This study reports the development of antifungal nail lacquers containing oregano essential oil (OEO), rosemary essential oil (REO), and biogenic silver nanoparticles (bioAgNPs). The formulations (F) were tested against dermatophytes using agar diffusion, ex vivo nail infection, and scanning electron microscopy techniques. They were evaluated for their pharmacotechnical characteristics and by FTIR-PAS to assess permeation across the nail. F-OEO and F-OEO/bioAgNPs were promising candidates for the final nail lacquer formulation, as they permeated through the nail and showed antifungal efficacy against dermatophytes-contaminated nails after 5 days of treatment. Treated nails exhibited decreased hyphae and spores compared to the untreated control; the hyphae were atypically flattened, indicating loss of cytoplasmic content due to damage to the cytoplasmic membrane. The formulations were stable after centrifugation and thermal stress, maintaining organoleptic and physicochemical characteristics. Both F-OEO and F-OEO/bioAgNPs had pH compatible with the nail and drying times (59–90 s) within the reference for nail lacquer. For the first time, OEO and bioAgNPs were incorporated into nail lacquer, resulting in a natural and nanotechnological product for onychomycosis that could combat microbial resistance.

Funder

Coordination for the Improvement of Higher Education Personnel—CAPES

CAPES

The National Council for Scientific and Technological Development—CNPq

Publisher

MDPI AG

Reference95 articles.

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2. Optimal Diagnosis and Management of Common Nail Disorders;Lee;Ann. Med.,2022

3. Onychomycosis: An Updated Review;Leung;Recent Pat. Inflamm. Allergy Drug Discov.,2019

4. Bodman, M.A., Syed, H.A., and Krishnamurthy, K. (2024, July 30). Onychomycosis, Available online: https://www.ncbi.nlm.nih.gov/books/NBK441853/.

5. Histopathologic Characterization of Onychomycosis in Nailbiopsies: A Retrospective Case Series of 19 Patients;Chen;J. Cutan. Pathol.,2023

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