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Fungal persister cells: The basis for recalcitrant infections?
Jurgen Wuyts1,2, Patrick Van Dijck1,2, Michelle Holtappels1,2
1VIB-KU Leuven Center for Microbiology, Leuven, Belgium.
Abstract:
Persister cells are a small subpopulation within fungal biofilms that are highly resistant to high concentrations of antifungals and therefore most likely contribute to the resistance and recalcitrance of biofilm infections. Moreover, this subpopulation is defined as a nongrowing, phenotypic variant of wild-type cells that can survive high doses of antifungals. There are high degrees of heterogeneity and plasticity associated with biofilm formation, resulting in a strong variation in the amount of persister cells. The fraction of these cells in fungal biofilms also appear to be dependent on the type of substrate. The cells can be observed immediately after their adhesion to that substrate, which makes up the initial step of biofilm formation. Thus far, persister cells have primarily been studied in Candida spp. These fungi are the fourth most common cause of nosocomial systemic infections in the United States, with C. albicans being the most prevalent species. Remarkably, persisters exhibit characteristics of a dormant state similar to what is observed in cells deprived of glucose. This dormant state, together with attachment to a substrate, appears to provide the cells with characteristics that help them overcome the challenges with fungicidal drugs such as amphotericin B (AmB). AmB is known to induce apoptosis, and persister cells are able to cope with the increase in reactive oxygen species (ROS) by activating stress response pathways and the accumulation of high amounts of glycogen and trehalose-two known stress-protecting molecules. In this review, we discuss the molecular pathways that are involved in persister cell formation in fungal species and highlight that the eradication of persister cells could lead to a strong reduction of treatment failure in a clinical setting.
Insights
Persister cells in fungal biofilms are dormant, drug-resistant variants. Eradicating these resilient cells could significantly reduce treatment failures in clinical settings.
Area of Science:
- Mycology
- Microbiology
- Cell Biology
Background:
- Persister cells are a small subpopulation in fungal biofilms.
- These cells exhibit high resistance to antifungal drugs, contributing to treatment recalcitrance.
- Persister cell formation is heterogeneous and influenced by substrate attachment.
Purpose of the Study:
- To review the molecular pathways involved in fungal persister cell formation.
- To highlight the significance of persister cells in antifungal resistance.
- To emphasize the clinical relevance of targeting persister cells for improved treatment outcomes.
Main Methods:
- Literature review of studies on fungal persister cells.
- Analysis of molecular mechanisms underlying persister cell survival.
- Discussion of phenotypic characteristics and stress responses of persister cells.
Main Results:
- Persister cells are nongrowing phenotypic variants that survive high antifungal doses.
- They enter a dormant state, similar to glucose-deprived cells, and attach to substrates.
- Persisters cope with antifungal stress (e.g., amphotericin B-induced ROS) via stress pathways and accumulating glycogen/trehalose.
Conclusions:
- Understanding persister cell formation is crucial for combating fungal biofilm infections.
- Targeting persister cells offers a promising strategy to overcome antifungal drug resistance.
- Eradication of persister cells may lead to a substantial decrease in treatment failures.
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Fungal Group Zygomycota
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