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Updated: Oct 8, 2025

Whole Genome Sequencing of Candida glabrata for Detection of Markers of Antifungal Drug Resistance
Published on: December 28, 2017
Candidemia: Evolution of Drug Resistance and Novel Therapeutic Approaches
Anna Maria Tortorano1, Anna Prigitano1, Gianluca Morroni2
1Department of Biomedical Sciences for Health, Università degli Studi di Milano, Milano, Italy.
Abstract:
Candidemia and invasive candidiasis are the most common healthcare-associated invasive fungal infections, with a crude mortality rate of 25-50%. Candida albicans remains the most frequent etiology, followed by C. glabrata, C. parapsilosis and C. tropicalis. With the exception of a limited number of species (ie: C. krusei, C. glabrata and rare Candida species), resistance to fluconazole and other triazoles are quite uncommon. However, recently fluconazole-resistant C. parapsilosis, echinocandin-resistant C. glabrata and the multidrug resistant C. auris have emerged. Resistance to amphotericin B is even more rare due to the reduced fitness of resistant isolates. The mechanisms of antifungal resistance in Candida (altered drug-target interactions, reduced cellular drug concentrations, and physical barriers associated with biofilms) are analyzed. The choice of the antifungal therapy for candidemia must take into account several factors such as type of patient, presence of devices, severity of illness, recent exposure to antifungals, local epidemiology, organs involvement, and Candida species. The first-line therapy in non-neutropenic critical patient is an echinocandin switching to fluconazole in clinically stable patients with negative blood cultures and azole susceptible isolate. Similarly, an echinocandin is the drug of choice also in neutropenic patients. The treatment duration is 14 days after the first negative blood culture or longer in cases of organ involvement. An early removal of vascular catheter improves the outcome. The promising results of new antifungal molecules, such as the terpenoid derivative ibrexafungerp, the novel echinocandin with an enhanced half-life rezafungin, oteseconazole and fosmanogepix, representative of new classes of antifungals, are discussed.
Insights
Candidemia, a common fungal infection, has high mortality. Emerging resistance to antifungals like fluconazole necessitates understanding resistance mechanisms and optimizing therapy with current and novel agents.
Area of Science:
- Mycology
- Infectious Diseases
- Pharmacology
Background:
- Candidemia and invasive candidiasis are leading healthcare-associated fungal infections with high mortality rates (25-50%).
- Candida albicans is the most common cause, followed by C. glabrata, C. parapsilosis, and C. tropicalis.
- While resistance to fluconazole is uncommon, emerging resistance in C. parapsilosis, C. glabrata, and multidrug-resistant C. auris is a growing concern.
Purpose of the Study:
- To analyze mechanisms of antifungal resistance in Candida species.
- To review current therapeutic strategies for candidemia.
- To discuss emerging antifungal agents and their potential impact.
Main Methods:
- Analysis of antifungal resistance mechanisms, including drug-target interactions, cellular drug concentrations, and biofilm formation.
- Review of clinical guidelines and evidence for antifungal therapy selection based on patient factors, Candida species, and disease severity.
- Discussion of recent clinical trial data for novel antifungal compounds.
Main Results:
- Antifungal resistance mechanisms involve altered drug targets, reduced drug accumulation, and biofilms.
- Echinocandins are recommended as first-line therapy for both non-neutropenic and neutropenic critical patients, with a switch to fluconazole in stable, azole-susceptible cases.
- Treatment duration is typically 14 days post-negative blood culture, with catheter removal improving outcomes.
Conclusions:
- Optimizing candidemia treatment requires considering patient specifics, local epidemiology, and Candida species.
- Emerging antifungal resistance necessitates careful therapeutic choices and highlights the importance of new drug development.
- Novel antifungal agents like ibrexafungerp, rezafungin, oteseconazole, and fosmanogepix show promise for future treatment paradigms.
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