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Updated: Jan 7, 2026

Whole Genome Sequencing of Candida glabrata for Detection of Markers of Antifungal Drug Resistance
Published on: December 28, 2017
Antifungal Susceptibility and Resistance-Associated Gene Expression in Nosocomial Candida Isolates
Fabiola Berenice Hernandez-Reyes1, Luis Alfonso Muñoz-Miranda2,3, Manuel R Kirchmayr3
1Programa de Maestría en Microbiología Médica, Departamento de Microbiología y Patología, Centro Universitario de Ciencias de la Salud, Universidad de Guadalajara, Guadalajara 44340, Jalisco, Mexico.
Abstract:
Background: Nosocomial infections represent a significant clinical burden due to high morbidity, mortality and healthcare costs. Invasive fungal infections, particularly those caused by Candida species, are of growing concern due to increasing antifungal resistance, which limits therapeutic options and worsens patient outcomes. This study aimed to characterize the prevalence, species distribution, antifungal susceptibility profiles, and molecular mechanisms of resistance in clinical Candida isolates from hospitalized patients. Methods: A cross-sectional study was conducted involving 55 hospitalized patients, yielding 60 isolates from blood, secretions, fluids, and catheter tips. Species identification was performed using chromogenic media and confirmed by MALDI-TOF MS. Antifungal susceptibility testing followed CLSI M27-A4 broth microdilution guidelines for amphotericin B, fluconazole and 5-flucytosine. Gene expression of ERG2, ERG11 and MDR1 was evaluated by RT-qPCR after exposure to subinhibitory antifungal concentrations using the 2-∆∆Ct method. Results:Candida albicans was the most frequent species, followed by Nakaseomyces glabratus, C. tropicalis and C. parapsilosis. Resistance varied among species, with elevated rates for fluconazole. ERG2 was notably overexpressed in amphotericin B-resistant isolates, while ERG11 and MDR1 showed species-dependent variation. Conclusions: Resistance mechanisms in Candida are species-specific and drug-dependent. Accurate species identification and understanding their molecular profiles are essential to guide targeted antifungal therapy and improve clinical outcomes.
Insights
This study reveals that antifungal resistance in clinical Candida isolates is species-specific and drug-dependent. Understanding these resistance mechanisms is crucial for effective treatment of invasive fungal infections.
Area of Science:
- Clinical Microbiology
- Infectious Diseases
- Molecular Biology
Background:
- Nosocomial infections pose a significant clinical and economic burden.
- Invasive fungal infections caused by Candida species are increasing due to antifungal resistance.
- Limited therapeutic options and poor patient outcomes are associated with Candida infections.
Purpose of the Study:
- To characterize the prevalence and species distribution of clinical Candida isolates.
- To determine antifungal susceptibility profiles and identify molecular resistance mechanisms.
- To guide targeted antifungal therapy for improved patient outcomes.
Main Methods:
- Cross-sectional study of 60 Candida isolates from 55 hospitalized patients.
- Species identification using chromogenic media and MALDI-TOF MS.
- Antifungal susceptibility testing and gene expression analysis (ERG2, ERG11, MDR1) via RT-qPCR.
Main Results:
- Candida albicans was the most prevalent species, followed by Nakaseomyces glabratus, C. tropicalis, and C. parapsilosis.
- Fluconazole resistance was elevated across species.
- ERG2 overexpression correlated with amphotericin B resistance; ERG11 and MDR1 showed species-specific variations.
Conclusions:
- Candida antifungal resistance mechanisms are species-specific and drug-dependent.
- Accurate species identification is essential for effective treatment.
- Understanding molecular resistance profiles aids in guiding targeted antifungal therapy.

