Melanins Protect Sporothrix brasiliensis and Sporothrix schenckii from the Antifungal Effects of Terbinafine.

Terbinafine is a recommended therapeutic alternative for patients with sporotrichosis who cannot use itraconazole due to drug interactions or side effects. Melanins are involved in resistance to antifungal drugs and Sporothrix species produce three different types of melanin. Therefore, in this stud...

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Main Authors: Rodrigo Almeida-Paes, Maria Helena Galdino Figueiredo-Carvalho, Fábio Brito-Santos, Fernando Almeida-Silva, Manoel Marques Evangelista Oliveira, Rosely Maria Zancopé-Oliveira
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4816517?pdf=render
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spelling doaj-62c9bffbc655479bbf4b2db9db247e8a2020-11-25T00:03:06ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01113e015279610.1371/journal.pone.0152796Melanins Protect Sporothrix brasiliensis and Sporothrix schenckii from the Antifungal Effects of Terbinafine.Rodrigo Almeida-PaesMaria Helena Galdino Figueiredo-CarvalhoFábio Brito-SantosFernando Almeida-SilvaManoel Marques Evangelista OliveiraRosely Maria Zancopé-OliveiraTerbinafine is a recommended therapeutic alternative for patients with sporotrichosis who cannot use itraconazole due to drug interactions or side effects. Melanins are involved in resistance to antifungal drugs and Sporothrix species produce three different types of melanin. Therefore, in this study we evaluated whether Sporothrix melanins impact the efficacy of antifungal drugs. Minimal inhibitory concentrations (MIC) and minimal fungicidal concentrations (MFC) of two Sporothrix brasiliensis and four Sporothrix schenckii strains grown in the presence of the melanin precursors L-DOPA and L-tyrosine were similar to the MIC determined by the CLSI standard protocol for S. schenckii susceptibility to amphotericin B, ketoconazole, itraconazole or terbinafine. When MICs were determined in the presence of inhibitors to three pathways of melanin synthesis, we observed, in four strains, an increase in terbinafine susceptibility in the presence of tricyclazole, a DHN-melanin inhibitor. In addition, one S. schenckii strain grown in the presence of L-DOPA had a higher MFC value when compared to the control. Growth curves in presence of 2×MIC concentrations of terbinafine showed that pyomelanin and, to a lesser extent, eumelanin were able to protect the fungi against the fungicidal effect of this antifungal drug. Our results suggest that melanin protects the major pathogenic species of the Sporothrix complex from the effects of terbinafine and that the development of new antifungal drugs targeting melanin synthesis may improve sporotrichosis therapies.http://europepmc.org/articles/PMC4816517?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Rodrigo Almeida-Paes
Maria Helena Galdino Figueiredo-Carvalho
Fábio Brito-Santos
Fernando Almeida-Silva
Manoel Marques Evangelista Oliveira
Rosely Maria Zancopé-Oliveira
spellingShingle Rodrigo Almeida-Paes
Maria Helena Galdino Figueiredo-Carvalho
Fábio Brito-Santos
Fernando Almeida-Silva
Manoel Marques Evangelista Oliveira
Rosely Maria Zancopé-Oliveira
Melanins Protect Sporothrix brasiliensis and Sporothrix schenckii from the Antifungal Effects of Terbinafine.
PLoS ONE
author_facet Rodrigo Almeida-Paes
Maria Helena Galdino Figueiredo-Carvalho
Fábio Brito-Santos
Fernando Almeida-Silva
Manoel Marques Evangelista Oliveira
Rosely Maria Zancopé-Oliveira
author_sort Rodrigo Almeida-Paes
title Melanins Protect Sporothrix brasiliensis and Sporothrix schenckii from the Antifungal Effects of Terbinafine.
title_short Melanins Protect Sporothrix brasiliensis and Sporothrix schenckii from the Antifungal Effects of Terbinafine.
title_full Melanins Protect Sporothrix brasiliensis and Sporothrix schenckii from the Antifungal Effects of Terbinafine.
title_fullStr Melanins Protect Sporothrix brasiliensis and Sporothrix schenckii from the Antifungal Effects of Terbinafine.
title_full_unstemmed Melanins Protect Sporothrix brasiliensis and Sporothrix schenckii from the Antifungal Effects of Terbinafine.
title_sort melanins protect sporothrix brasiliensis and sporothrix schenckii from the antifungal effects of terbinafine.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description Terbinafine is a recommended therapeutic alternative for patients with sporotrichosis who cannot use itraconazole due to drug interactions or side effects. Melanins are involved in resistance to antifungal drugs and Sporothrix species produce three different types of melanin. Therefore, in this study we evaluated whether Sporothrix melanins impact the efficacy of antifungal drugs. Minimal inhibitory concentrations (MIC) and minimal fungicidal concentrations (MFC) of two Sporothrix brasiliensis and four Sporothrix schenckii strains grown in the presence of the melanin precursors L-DOPA and L-tyrosine were similar to the MIC determined by the CLSI standard protocol for S. schenckii susceptibility to amphotericin B, ketoconazole, itraconazole or terbinafine. When MICs were determined in the presence of inhibitors to three pathways of melanin synthesis, we observed, in four strains, an increase in terbinafine susceptibility in the presence of tricyclazole, a DHN-melanin inhibitor. In addition, one S. schenckii strain grown in the presence of L-DOPA had a higher MFC value when compared to the control. Growth curves in presence of 2×MIC concentrations of terbinafine showed that pyomelanin and, to a lesser extent, eumelanin were able to protect the fungi against the fungicidal effect of this antifungal drug. Our results suggest that melanin protects the major pathogenic species of the Sporothrix complex from the effects of terbinafine and that the development of new antifungal drugs targeting melanin synthesis may improve sporotrichosis therapies.
url http://europepmc.org/articles/PMC4816517?pdf=render
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