Artigo Produção Nacional Revisado por pares

Exposure of Candida parapsilosis complex to agricultural azoles: An overview of the role of environmental determinants for the development of resistance

2018; Elsevier BV; Volume: 650; Linguagem: Inglês

10.1016/j.scitotenv.2018.09.096

ISSN

1879-1026

Autores

Raimunda Sâmia Nogueira Brilhante, Lucas Pereira de Alencar, Silviane Praciano Bandeira, Jamille Alencar Sales, Antônio José de Jesus Evangelista, Rosana Serpa, Rossana de Aguiar Cordeiro, Waldemiro de Aquino Pereira‐Neto, José Júlio Costa Sidrim, Débora de Souza Collares Maia Castelo‐Branco, Marcos Fábio Gadelha Rocha,

Tópico(s)

Mycotoxins in Agriculture and Food

Resumo

This work investigated the phenotypic behavior of Candida parapsilosis species complex in response to exposure to agricultural azoles and fluconazole. Three fluconazole-susceptible strains of C. parapsilosis sensu stricto, C. orthopsilosis and C. metapsilosis were used. Initial minimum inhibitory concentrations (iMICs) for agricultural and clinical azoles were determined by broth microdilution. Then, the strains were exposed to tebuconazole, tetraconazole and fluconazole for 15 days, at concentrations that were two-folded daily, starting at one-eighth the iMIC (iMIC/8) up to 64 times iMIC (64xiMIC). After 15-day-exposure, antifungal susceptibility, biofilm formation, CDR, MDR and ERG expression were evaluated. The three cryptic species developed tolerance to the antifungals they were exposed and presented reduction (P < 0.05) in fluconazole susceptibility. In addition, C. parapsilosis sensu stricto and C. metapsilosis also presented reduced susceptibility to voriconazole, after fluconazole exposure. Azole exposure decreased (P < 0.05) biofilm production by C. parapsilosis sensu stricto and C. orthopsilosis and increased (P < 0.05) the expression of ERG11 in all tested strains. The results show that exposure to agricultural azoles and fluconazole induces changes in the phenotypic behavior and gene expression by the three cryptic species of C. parapsilosis complex, highlighting the importance of environmental determinants for the development of antifungal resistance.

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