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LA UDES PUBLICA
Fecha de publicación:
2019-07-01
Tipo:
Article
Número de artículo:
001019
Identificación:
SCOPUS_ID:85069238088
eID:
2-s2.0-85069238088
Nombre de la revista:
Journal of Medical Microbiology
Título del artículo:

Semisynthetic eugenol derivatives as antifungal agents against dermatophytes of the genus Trichophyton

Purpose. Eugenol, the main component of clove bud essential oil (Eugenia caryophyllus), has been linked to antimicrobial, anti-inflammatory, insecticidal and immunomodulatory properties. The purpose of this study was to evaluate the antifungal and cytotoxic activity of eugenol, the essential oil of Eugenia caryophyllus, and some semisynthetic derivatives of eugenol against dermatophytes of the genus Trichophyton. Methodology. We evaluated the antifungal effect of the compounds, determining the minimum inhibitory concentrations (MICs) by the microdilution method and the minimum fungicidal concentrations by cultures from the inhibitions. Additionally, the inhibition of the radial growth of the mycelium of the dermatophyte fungi was tested by poisoned substrate. Cytotoxicity was measured by the colorimetric method on Vero cells. Results: All of the eugenol compounds tested exhibited antifungal properties, showing MICs of 62.5–500 µg ml−1, determined within three dermatophyte species: Trichophyton rubrum, Trichophyton mentagrophytes and Trichophyton tonsurans. Among these derivatives, methyl isoeugenol, at concentrations of 300 and 100 µg ml−1, was found to completely inhibit (100 %) radial growth of the mycelium of all three species after 20 days of treatment. Additionally, phenotypic variations related to the decrease in pigment production of T. rubrum were observed after treatment with O-ethyl and O-butyl isoeugenol derivatives. Meanwhile, all of the tested (iso)eugenol molecules exhibited moderate toxicity in Vero cells [50 % cytotoxic concentration (the concentration required for a 50 % reduction in cell viability; CC50): 54.06–265.18 µg ml−1). Conclusion: The results suggest that the semisynthetic eugenol derivatives (SEDs) show promising antifungal activity and selectivity against dermatophyte fungi.

Autor(es) UDES:
Pinto S.M.L., Rivera Y.
Otros Autores:
Sandoval L.V.H., Lizarazo J.C., Rincón J.J., Méndez L.Y.V.
Autor Principal:
Pinto S.M.L.
Áreas del conocimiento:
Microbiology, Microbiology (medical)
Acerca de la revista donde se publicó este artículo:

Journal of Medical Microbiology

Cuartil Q2
Ranking
7465
Tipo
Journal
ISSN
00222615
eISSN
14735644
Región
Western Europe
País
United Kingdom
Volumen
68
Rango de páginas
1109-1117
Cobertura
1968-2022
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