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Whole Genome Sequencing of Candida glabrata for Detection of Markers of Antifungal Drug Resistance
Published on: December 28, 2017
Antifungal treatment strategies and their impact on resistance development in clinical settings
Norman Van Rhijn1, P Lewis White2
1Manchester Fungal Infection Group, Division of Evolution, Infection and Genomic Sciences, School of Biological Sciences, Faculty of Biology, Medicine and Health, University of Manchester, Manchester, UK.
Abstract:
Invasive fungal diseases, particularly among immunocompromised patients, represent a growing clinical challenge due to limited therapeutic options, diagnostic delays and escalating antifungal resistance. Fungal pathogens employ diverse resistance mechanisms, including genetic mutations of antifungal target enzymes, biofilm formation, efflux pump overexpression and reduced drug penetration, which compromise the efficacy of clinically available antifungal classes. This review explores antifungal treatment modalities and evaluates approaches to mitigate resistance development. Advanced diagnostics and therapeutic drug monitoring are pivotal for enabling timely, targeted therapies and personalizing treatment plans, thus minimizing reliance on broad-spectrum agents. New antifungal agents, such as rezafungin, olorofim and fosmanogepix, along with long-acting and advanced formulations plus combination regimens, show substantial promise for managing resistance and improving treatment outcomes. Additionally, the development of immunotherapies and antifungal vaccines offers new avenues for bolstering host defences against fungal pathogens. Addressing antifungal resistance demands a multifaceted 'One Health' approach that integrates robust diagnostics, antifungal stewardship (AFS), precision medicine and collaborative global efforts. By advancing drug formulations, enhancing diagnostic tools and implementing forward-thinking AFS practices, the healthcare community can better tackle the escalating burden of fungal infections and deliver improved patient outcomes.
Insights
Antifungal resistance is a growing threat, especially for immunocompromised patients. New drugs, advanced diagnostics, and a One Health approach are crucial for managing invasive fungal diseases and improving patient outcomes.
Area of Science:
- Medical Mycology
- Infectious Diseases
- Pharmacology
Background:
- Invasive fungal diseases pose significant clinical challenges, particularly in immunocompromised individuals.
- Limited therapeutic options and escalating antifungal resistance exacerbate these challenges.
- Fungal pathogens utilize diverse resistance mechanisms, compromising current antifungal treatments.
Purpose of the Study:
- To review current antifungal treatment modalities.
- To evaluate strategies for mitigating antifungal resistance.
- To explore novel therapeutic and preventative approaches for invasive fungal infections.
Main Methods:
- Literature review of antifungal treatment options and resistance mechanisms.
- Analysis of emerging antifungal agents and formulations.
- Evaluation of advanced diagnostics and immunotherapies.
Main Results:
- New antifungal agents (e.g., rezafungin, olorofim, fosmanogepix) show promise.
- Advanced diagnostics and therapeutic drug monitoring can personalize treatment.
- Immunotherapies and vaccines offer potential host defense enhancement.
- Combination regimens and novel formulations may improve outcomes.
Conclusions:
- Combating antifungal resistance requires a multifaceted 'One Health' approach.
- Integrating diagnostics, antifungal stewardship (AFS), and precision medicine is essential.
- Advancements in drug formulations, diagnostics, and AFS practices are key to improving patient outcomes and managing the burden of fungal infections.
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