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Novel antifungals and treatment approaches to tackle resistance and improve outcomes of invasive fungal disease

抗真菌药 抗真菌药 抗药性 抗真菌 氟康唑 药品 生物 二型真菌 人口 疾病 药理学 重症监护医学 医学 微生物学 酵母 内科学 遗传学 环境卫生
作者
Martin Hoenigl,Amir Arastehfar,Maiken Cavling Arendrup,Roger J. M. Brüggemann,Agostinho Carvalho,Tom Chiller,Sharon Chen,Matthias Egger,Simon Feys,Jean‐Pierre Gangneux,Jeremy A W Gold,Andreas H. Groll,Jannes Heylen,Jeffrey D. Jenks,Robert Krause,Katrien Lagrou,Frédéric Lamoth,Juergen Prattes,Sarah Sedik,Joost Wauters,Nathan P. Wiederhold,George R. Thompson
出处
期刊:Clinical Microbiology Reviews [American Society for Microbiology]
标识
DOI:10.1128/cmr.00074-23
摘要

SUMMARY Fungal infections are on the rise, driven by a growing population at risk and climate change. Currently available antifungals include only five classes, and their utility and efficacy in antifungal treatment are limited by one or more of innate or acquired resistance in some fungi, poor penetration into “sequestered” sites, and agent-specific side effect which require frequent patient reassessment and monitoring. Agents with novel mechanisms, favorable pharmacokinetic (PK) profiles including good oral bioavailability, and fungicidal mechanism(s) are urgently needed. Here, we provide a comprehensive review of novel antifungal agents, with both improved known mechanisms of actions and new antifungal classes, currently in clinical development for treating invasive yeast, mold (filamentous fungi), Pneumocystis jirovecii infections, and dimorphic fungi (endemic mycoses). We further focus on inhaled antifungals and the role of immunotherapy in tackling fungal infections, and the specific PK/pharmacodynamic profiles, tissue distributions as well as drug-drug interactions of novel antifungals. Finally, we review antifungal resistance mechanisms, the role of use of antifungal pesticides in agriculture as drivers of drug resistance, and detail detection methods for antifungal resistance.
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