1Narayan Consultancy on Veterinary Public Health and Microbiology, Bharuch, Gujarat, India
2Department of Life Sciences, Faculty of Applied Sciences, Parul University, Vadodara, Gujarat, India
3Sheger City Administration, Sebeta sub city Agricultural Office, Sebeta, Oromia, Ethiopia
4Shashwat Skin Clinic and Consultant at Welfare Hospital and Research Centre, Bharuch, Gujarat, India
5School of Dentistry, University of Sao Paulo (USP), Sao Paulo, SP, Brazil
6Department of Microbiology, Gajra Raj Medical College, Gwalior, Madhya Pradesh, India
7Institute of Human Biology and Evolution, Faculty of Biology, Adam Mickiewicz University, Poznań, Poland
American Journal of Medical and Biological Research.
2026,
Vol. 14 No. 2, 22-29
DOI: 10.12691/ajmbr-14-2-1
Copyright © 2026 Science and Education PublishingCite this paper: Mahendra Pal, Mahek Desai, Tesfaye Rebuma, Pratibha Dave, Claudete Rodrigues Paula, Neelima Ranjan, Oskar Nowak. The Emerging Global Burden of Fungal Infections: Epidemiology, Climate Change, Antifungal Resistance and Public Health Challenges.
American Journal of Medical and Biological Research. 2026; 14(2):22-29. doi: 10.12691/ajmbr-14-2-1.
Correspondence to: Mahendra Pal, Narayan Consultancy on Veterinary Public Health and Microbiology, Bharuch, Gujarat, India. Email:
palmahendra2@gmail.comAbstract
Fungal infections constitute an increasingly important global public health problem and are associated with substantial morbidity and mortality, particularly among immunocompromised and critically ill individuals. They range from highly prevalent superficial mycoses to invasive and disseminated infections with high case-fatality rates. Opportunistic pathogens, such as Aspergillus, Candida, Cryptococcus, Rhodotorula, Geotrichum, and Trichosporon cause diverse clinical syndromes, whereas endemic dimorphic fungi including Blastomyces, Coccidioides, Histoplasma, Paracoccidioides, and Talaromyces are strongly influenced by environmental and geographic exposure. Recent global estimates suggest that more than 6.5 million life-threatening invasive fungal infections occur annually, with approximately 3.8 million associated deaths. Climate change may alter fungal ecology, geographic distribution, and human exposure, while antifungal resistance increasingly compromises the effectiveness of the limited therapeutic options available. This review summarizes the epidemiology, major opportunistic and endemic mycoses, global morbidity and mortality, climate-related emergence, and antifungal resistance, and highlights the need for improved surveillance, laboratory diagnosis, antifungal stewardship, access to effective treatment, and coordinated One Health interventions.
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