Detection of ERG11 point mutations in Iranian fluconazoleresistant Candida albicans isolates

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Study and detection of ERG11 gene mutation in resistant - drug Candida albicans and relation with Iranian women infertility

Aim and Background: Candida  Albicans is the most important cause of  vulvovaginal candidiasis and resistance to azoles can occur via various mechanisms including, change in the ERG11 gene. This study aim was to identification  of  ERG11 gene mutations in drug  resistant Candida albicans isolated from patients with Candida vaginitis and its association with infertility in Iranian women.   Mat...

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MUTATION IN HOTSPOT REGIONS OF THE ERG11 GENE AND FLUCONAZOLE RESISTANCE IN CLINICAL ISOLATES OF CANDIDA ALBICANS IN RASHT CITY

Background & Aims: Nowadays, the common use of azoles has led to increased resistance to azole among Candida albicans strains. Amino acid substitutions in azole target enzyme, ERG11p, is attributed to azole resistance in some clinical strains of Candida albicans. The aim of this study was to evaluate ERG11 gene mutations in fluconazole-resistant isolates of Candida albicans in Rasht. Materials...

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Nucleotide substitutions in the Candida albicans ERG11 gene of azole-susceptible and azole-resistant clinical isolates.

One of the mechanisms of Candida albicans resistance to azole drugs used in antifungal therapy relies on increased expression and presence of point mutations in the ERG11 gene that encodes sterol 14α demethylase (14DM), an enzyme which is the primary target for the azole class of antifungals. The aim of the study was to analyze nucleotide substitutions in the Candida albicans ERG11 gene of azol...

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Contribution of clinically derived mutations in ERG11 to azole resistance in Candida albicans.

In Candida albicans, the ERG11 gene encodes lanosterol demethylase, the target of the azole antifungals. Mutations in ERG11 that result in an amino acid substitution alter the abilities of the azoles to bind to and inhibit Erg11, resulting in resistance. Although ERG11 mutations have been observed in clinical isolates, the specific contributions of individual ERG11 mutations to azole resistance...

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Effect of biogenic selenium nanoparticles on ERG11 and CDR1 gene expression in both fluconazole-resistant and -susceptible Candida albicans isolates

Background and Purpose: Candida albicans is the most common Candida species (spp.) isolated from fungal infections. Azole resistance in Candida species has been considerably increased in the last decades. Given the toxicity of the antimicrobial drugs, resistance to antifungal agents, and drug interactions, the identification of new antifungal agents seems essential. In this study, we assessed t...

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ژورنال

عنوان ژورنال: Current Medical Mycology

سال: 2019

ISSN: 2423-3420,2423-3439

DOI: 10.18502/cmm.5.1.531