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- Title
Impact of calmodulin inhibition by fluphenazine on susceptibility, biofilm formation and pathogenicity of caspofungin-resistant Candida glabrata.
- Authors
Garzon, Andrés Ceballos; Amado, Daniela; Robert, Estelle; Giraldo, Claudia M Parra; Pape, Patrice Le; Ceballos Garzon, Andrés; Parra Giraldo, Claudia M; Le Pape, Patrice
- Abstract
<bold>Background: </bold>In recent decades, Candida glabrata has emerged as a frequent cause of life-threatening fungal infection. In C. glabrata, echinocandin resistance is associated with mutations in FKS1/FKS2 (β-1,3-glucan synthase). The calmodulin/calcineurin pathway is implicated in response to antifungal stress and calcineurin gene disruption specifically reverses Fks2-mediated resistance of clinical isolates.<bold>Objectives: </bold>We evaluated the impact of calmodulin inhibition by fluphenazine in two caspofungin-resistant C. glabrata isolates.<bold>Methods: </bold>C. glabrata isolates were identified by ITS1/ITS4 (where ITS stands for internal transcribed spacer) sequencing and the echinocandin target FKS1/FKS2 genes were sequenced. Susceptibility testing of caspofungin in the presence of fluphenazine was performed by a modified CLSI microbroth dilution method. The effect of the fluphenazine/caspofungin combination on heat stress (37°C or 40°C), oxidative stress (0.2 and 0.4 mM menadione) and biofilm formation (polyurethane catheter) was analysed. A Galleria mellonella model using blastospores (1 × 109 cfu/mL) was developed to evaluate the impact of this combination on larval survival.<bold>Results: </bold>F659del was found in the FKS2 gene of both resistant strains. In these clinical isolates, fluphenazine increased susceptibility to caspofungin and reduced their thermotolerance. Furthermore, the fluphenazine/caspofungin combination significantly impaired biofilm formation in an in vitro polyurethane catheter model. All these features participated in the increasing survival of infected G. mellonella after combination treatment in comparison with caspofungin alone.<bold>Conclusions: </bold>In a repurposing strategy, our findings confirm that calmodulin could provide a relevant target in life-threatening fungal infectious diseases.
- Subjects
CASPOFUNGIN; ANTIFUNGAL agents; RESEARCH; CANDIDA; RESEARCH methodology; BIOFILMS; MEDICAL cooperation; EVALUATION research; COMPARATIVE studies; FLUPHENAZINE; IMPACT of Event Scale; MICROBIAL virulence; CALCIUM-binding proteins; DRUG resistance in microorganisms; MICROBIAL sensitivity tests; PEPTIDES; PHARMACODYNAMICS
- Publication
Journal of Antimicrobial Chemotherapy (JAC), 2020, Vol 75, Issue 5, p1187
- ISSN
0305-7453
- Publication type
journal article
- DOI
10.1093/jac/dkz565