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Published on: April 19, 2017
New and emerging antifungal agents: impact on respiratory infections
1Departments of Medicine and Microbiology and Immunology, Albert Einstein College of Medicine, Bronx, New York 10461, USA. feldmess@aecom.yu.edu
Abstract:
Fungal pathogens are increasingly important causes of respiratory disease, yet the number of antifungal agents available for clinical use is limited. Use of amphotericin B deoxycholate is hampered by severe toxicity. Triazole agents currently available have significant drug interactions; fluconazole has a limited spectrum of activity and itraconazole was, until recently, available only in oral formulations with limited bioavailability. The development of resistance to all three agents is increasingly being recognized and some filamentous fungi are resistant to the action of all of these agents. In the past few years, new antifungal agents and new formulations of existing agents have become available.The use of liposomal amphotericin B preparations is associated with reduced, but still substantial, rates of nephrotoxicity and infusion-related reactions. An intravenous formulation of itraconazole has been introduced, and several new triazole agents have been developed, with the view of identifying agents that have enhanced potency, broader spectra of action and improved pharmacodynamic properties. One of these, voriconazole, has completed large-scale clinical trials. In addition, caspofungin, the first of a new class of agents, the echinocandins, which inhibit cell wall glucan synthesis, was approved for use in the US in 2001 as salvage therapy for invasive aspergillosis. It is hoped that the availability of these agents will have a significant impact on the morbidity and mortality of fungal respiratory infections. However, at the present time, our ability to assess their impact is limited by the problematic nature of conducting trials for antifungal therapy.
Insights
New antifungal drugs offer improved options for respiratory fungal infections, addressing resistance and toxicity issues with older treatments. Further research is needed to fully assess their clinical impact.
Area of Science:
- Mycology
- Infectious Diseases
- Pharmacology
Background:
- Fungal respiratory infections pose a growing threat, with limited effective antifungal treatments.
- Existing antifungals like amphotericin B and triazoles have significant toxicity, drug interactions, and emerging resistance.
- Some filamentous fungi are resistant to all currently available antifungal agents.
Purpose of the Study:
- To review recent advancements in antifungal agents and formulations for respiratory fungal infections.
- To highlight new treatments addressing limitations of older antifungal therapies.
- To discuss the potential impact of novel antifungals on morbidity and mortality.
Main Methods:
- Review of new antifungal agents and formulations.
- Discussion of clinical trial data for agents like voriconazole.
- Examination of the mechanism of action for new classes like echinocandins.
Main Results:
- Liposomal amphotericin B shows reduced toxicity compared to deoxycholate formulations.
- Newer triazoles, including voriconazole, offer enhanced potency and broader spectra.
- Caspofungin, an echinocandin, provides a new treatment option for invasive aspergillosis.
Conclusions:
- Novel antifungal agents and formulations represent significant progress in treating fungal respiratory diseases.
- These new agents aim to overcome resistance, toxicity, and bioavailability issues of older drugs.
- Challenges remain in evaluating the full clinical impact due to difficulties in conducting antifungal therapy trials.
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