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The impact of climate change on the epidemiology of fungal infections: implications for diagnosis, treatment, and public health strategies

Mary G. George, Tonisha T. Gaitor, David B. Cluck +3 more2025Therapeutic Advances in Infectious DiseaseReview
10.1177/20499361251313841PubMedFree full text
Immune/Innate
Indoor Mold (Stachybotrys, Aspergillus, etc.)

Abstract

Anthropogenic climate change, primarily driven by greenhouse gas emissions, is reshaping ecosystems and creating conditions that affect 58% of all known human infectious diseases, including fungal infections. Specifically, increasing temperatures, changing precipitation patterns, and extreme weather events are influencing fungal growth, distribution, and virulence. These factors may expand the geographic range of pathogenic fungi, exposing populations to novel, potentially more virulent, or drug-resistant strains. Simultaneously, human factors such as declining immunity, aging populations, and increased use of immunosuppressive therapies are enhancing host susceptibility. This review explores the intricate relationship between climate change and fungal infections, highlighting pathogens that may demonstrate increased virulence and antifungal resistance, along with emerging novel pathogens. The clinical implications are profound, with increased morbidity, mortality, and the spread of fungal infections into new regions. Immediate action is required to develop policies, educational initiatives, and novel antifungal therapies, enhance early diagnostic capabilities, and address healthcare disparities to mitigate the growing burden of fungal infections.

References (4)

  • An Overlooked and Underrated Endemic Mycosis—Talaromycosis and the Pathogenic Fungus Talaromyces marneffeiClinical Microbiology Reviews · 2023
  • Mold Exposure and Health Effects Following Hurricanes Katrina and RitaAnnual Review of Public Health · 2011
  • Social determinants of health as drivers of fungal diseaseEClinicalMedicine · 2023
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