In vitro inhibitory activity of sertraline against clinical isolates of Sporothrix schenckii
- ,
- Hiram Villanueva Lozano,
- Rogelio de J. Treviño Rangel,
- Ricardo Téllez-Marroquín,
- Alexandro Bonifaz,
- Pedro A. Hernández Rodríguez
- Universidad Autonoma de Nuevo Leon,
- Departamento de Microbiología, Facultad de Medicina, Universidad Autónoma de Nuevo León, Monterrey, Nuevo León, México.,
- Hospital General de Mexico
Sustainable Development Goals
- SDG 3 Good Health and Well
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Abstract
Background: Sertraline (SRT) is an antidepressant that has proven its activity in vitro against Cryptococcus, Coccidioides, Trichosporon and other fungi. Disseminated sporotrichosis, although rare, has a high mortality and its treatment is difficult and prolonged, often relying in combining two or more antifungals. Aims: In our study we evaluate the antifungal activity of SRT, alone and in combination with itraconazole (ITC), voriconazole (VRC) and amphotericin B (AMB), against 15 clinical isolates of Sporothrix schenckii. Methods: We used the broth microdilution method as described by the CLSI to test the susceptibility to antifungals, and the checkerboard microdilution method to evaluate drug interactions. Results: The minimum inhibitory concentration (MIC) with SRT was in the range of 4–8 μg/ml, while for AMB, VRC and ITC were 0.5–4 μg/ml, 0.5–8 μg/ml and 0.125–2 μg/ml, respectively. In addition, SRT showed synergy with ITC in one strain, mainly additivity with VRC, and indifference with AMB in others. Conclusions: The MIC values with SRT for the isolates studied show the potential role of this drug as an adjuvant in the treatment of sporotrichosis, especially in disseminated or complicated cases.
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Original language
SpanishPages from-to (Number of pages)
Pages 139-141 (3 pages)Journal (Volume, Issue Number)
Revista Iberoamericana de Micologia (Volume 36, Issue 3)Publication milestones
- E-pub ahead of print - 03/06/2019
- Published - 01/07/2019
Publication status
ISSN
1130-1406Publication IDs
- ORCID: /0000-0001-7717-7072/work/58299296
- Scopus: 85066410392
