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Updated: Feb 22, 2026

Whole Genome Sequencing of Candida glabrata for Detection of Markers of Antifungal Drug Resistance
Published on: December 28, 2017
Antifungal resistance: current trends and future strategies to combat
1Department of Pathology and Laboratory Medicine, Fungus Testing Laboratory, University of Texas Health Science Center at San Antonio, San Antonio, TX, USA.
Abstract:
Antifungal resistance represents a major clinical challenge to clinicians responsible for treating invasive fungal infections due to the limited arsenal of systemically available antifungal agents. In addition current drugs may be limited by drug-drug interactions and serious adverse effects/toxicities that prevent their prolonged use or dosage escalation. Fluconazole resistance is of particular concern in non-Candida albicans species due to the increased incidence of infections caused by these species in different geographic locations worldwide and the elevated prevalence of resistance to this commonly used azole in many institutions. C. glabrata resistance to the echinocandins has also been documented to be rising in several US institutions, and a higher percentage of these isolates may also be azole resistant. Azole resistance in Aspergillus fumigatus due to clinical and environmental exposure to this class of agents has also been found worldwide, and these isolates can cause invasive infections with high mortality rates. In addition, several species of Aspergillus, and other molds, including Scedosporium and Fusarium species, have reduced susceptibility or pan-resistance to clinically available antifungals. Various investigational antifungals are currently in preclinical or clinical development, including several of them that have the potential to overcome resistance observed against the azoles and the echinocandins. These include agents that also target ergosterol and b-glucan biosynthesis, as well as compounds with novel mechanisms of action that may also overcome the limitations of currently available antifungal classes, including both resistance and adverse effects/toxicity.
Insights
Antifungal resistance is a growing problem, especially for fluconazole-resistant fungi like *Candida glabrata* and *Aspergillus fumigatus*. New antifungal drugs are in development to combat resistance and improve patient outcomes.
Area of Science:
- Mycology
- Infectious Diseases
- Pharmacology
Background:
- Antifungal resistance poses a significant clinical challenge due to limited treatment options.
- Existing antifungal drugs face limitations including drug-drug interactions and toxicity.
- Fluconazole resistance is a growing concern, particularly in non-Candida albicans species and Aspergillus fumigatus.
Purpose of the Study:
- To review the current landscape of antifungal resistance.
- To highlight emerging antifungal agents in development.
- To discuss strategies for overcoming antifungal resistance and drug limitations.
Main Methods:
- Literature review of antifungal resistance trends.
- Analysis of current and investigational antifungal agents.
- Examination of resistance mechanisms and novel therapeutic approaches.
Main Results:
- Rising resistance observed in *Candida glabrata* to echinocandins and azoles.
- Azole resistance in *Aspergillus fumigatus* is a global concern.
- Several novel antifungal agents targeting ergosterol and b-glucan biosynthesis are in development.
Conclusions:
- Investigational antifungals show promise in overcoming resistance to existing drug classes.
- New agents offer potential solutions for drug-drug interactions and toxicity.
- Development of novel antifungals is crucial for managing invasive fungal infections.
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