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IBJ-Iranian Biomedical Journal. 2017; 21 (4): 275-281
in English | IMEMR | ID: emr-189237

ABSTRACT

Background: Candida parapsilosis is one of the five common strains of yeasts involved in invasive candidiasis. The expression analysis of sterol biosynthesis pathway genes, which are associated with resistance, can assist the better understanding of antifungal resistance mechanisms


Methods: The antifungal susceptibility of 120 clinical C. parapsilosis isolates was examined. The changes in the gene expression related to resistance were analyzed


Results: Eight strains were resistant to fluconazole [FLC], itraconazole [ITC], and amphotericin B [AMB]. The regulation variations included increased mRNA levels of ERG3, ERG6, and ERG11 and decreased mRNA levels of ERG3 and ERG6 in response to FLC. ERG11 mRNA level increases in response to ITC and AMB


Conclusion: The mechanism of resistance to azoles in C. parapsilosis is very similar to C. Albicans. This feature may help to design new treatment strategy for candidiasis


Subject(s)
Ergosterol/biosynthesis , Gene Expression , Drug Resistance, Fungal , Candida parapsilosis/drug effects , Antifungal Agents , Azoles
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