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Inborn errors of immunity underlying fungal diseases in otherwise healthy individuals
Juan Li1, Donald C Vinh2, Jean-Laurent Casanova3
1St. Giles Laboratory of Human Genetics of Infectious Diseases, Rockefeller Branch, The Rockefeller University, New York, NY 10065, USA.
Abstract:
It has been estimated that there are at least 1.5 million fungal species, mostly present in the environment, but only a few of these fungi cause human disease. Most fungal diseases are self-healing and benign, but some are chronic or life-threatening. Acquired and inherited defects of immunity, including breaches of mucocutaneous barriers and circulating leukocyte deficiencies, account for most severe modern-day mycoses. Other types of infection typically accompany these fungal infections. More rarely, severe fungal diseases can strike otherwise healthy individuals. Historical reports of fungi causing chronic peripheral infections (e.g. affecting the nails, skin, hair), and invasive diseases (e.g. brain, lungs, liver), in otherwise healthy patients, can be traced back to the mid-20th century. These fungi typically cause endemic, but not epidemic diseases, are more likely to underlie sporadic than familial cases, and only threaten a small proportion of infected individuals. The basis of this 'idiosyncratic' susceptibility has long remained unexplained, but it has recently become apparent that 'idiopathic' fungal diseases, in children, teenagers, and even adults, may be caused by single-gene inborn errors of immunity. The study of these unusual primary immunodeficiencies (PIDs) has led to the identification of molecules and cells playing a crucial role in human host defenses against certain fungi at particular anatomic sites. A picture is emerging of inborn errors of IL-17 immunity selectively underlying chronic mucocutaneous candidiasis, with little inter-individual variability, and of inborn errors of CARD9 immunity underlying various life-threatening invasive fungal diseases, differing between patients.
Insights
Severe fungal infections in humans can stem from rare genetic immune disorders. Understanding these inborn errors of immunity, like those affecting IL-17 and CARD9 pathways, is key to fighting serious mycoses.
Area of Science:
- Immunology
- Medical Mycology
- Genetics
Background:
- Fungal species are abundant, but few cause human disease, with most infections being benign.
- Severe mycoses often arise from acquired or inherited immune defects, but rare cases occur in healthy individuals.
- Historically, 'idiosyncratic' susceptibility to severe fungal infections was unexplained.
Purpose of the Study:
- To investigate the genetic basis of rare, severe fungal infections in individuals without apparent immune compromise.
- To identify specific molecular and cellular pathways involved in host defense against fungi.
- To elucidate the role of inborn errors of immunity in susceptibility to mycoses.
Main Methods:
- Analysis of patients with 'idiopathic' fungal diseases, including children, teenagers, and adults.
- Study of primary immunodeficiencies (PIDs) associated with fungal infections.
- Characterization of genetic defects and their impact on immune response.
Main Results:
- Inborn errors of IL-17 immunity are linked to chronic mucocutaneous candidiasis with low variability.
- Inborn errors of CARD9 immunity are associated with diverse, life-threatening invasive fungal diseases.
- Identification of specific immune pathways critical for defense against particular fungi at distinct sites.
Conclusions:
- Single-gene inborn errors of immunity can explain 'idiopathic' severe fungal diseases.
- Understanding these genetic defects reveals crucial host defense mechanisms against fungi.
- Targeted therapies for specific PIDs may improve management of severe fungal infections.
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