Going over Fungal Allergy: Alternaria alternata and Its Allergens
Eva Abel-Fernández1, María José Martínez1, Tania Galán1
1Applied Science, Inmunotek S.L., Parque Científico Tecnológico Alcalá de Henares, 28805 Madrid, Spain.
Abstract:
Fungal allergy is the third most frequent cause of respiratory pathologies and the most related to a poor prognosis of asthma. The genera Alternaria and Cladosporium are the most frequently associated with allergic respiratory diseases, with Alternaria being the one with the highest prevalence of sensitization. Alternaria alternata is an outdoor fungus whose spores disseminate in warm and dry air, reaching peak levels in temperate summers. Alternaria can also be found in damp and insufficiently ventilated houses, causing what is known as sick building syndrome. Thus, exposure to fungal allergens can occur outdoors and indoors. However, not only spores but also fungal fragments contain detectable amounts of allergens and may function as aeroallergenic sources. Allergenic extracts of Alternaria hyphae and spores are still in use for the diagnosis and treatment of allergic diseases but are variable and insufficiently standardised, as they are often a random mixture of allergenic ingredients and casual impurities. Thus, diagnosis of fungal allergy has been difficult, and knowledge about new fungal allergens is stuck. The number of allergens described in Fungi remains almost constant while new allergens are being found in the Plantae and Animalia kingdoms. Given Alt a 1 is not the unique Alternaria allergen eliciting allergy symptoms, component-resolved diagnosis strategies should be applied to diagnose fungal allergy. To date, twelve A. alternata allergens are accepted in the WHO/IUIS Allergen Nomenclature Subcommittee, many of them are enzymes: Alt a 4 (disulfide isomerase), Alt a 6 (enolase), Alt a 8 (mannitol de-hydrogenase), Alt a 10 (aldehyde dehydrogenase), Alt a 13 (glutathione-S-transferase) and Alt a MnSOD (Mn superoxide dismutase), and others have structural and regulatory functions such as Alt a 5 and Alt a 12, Alt a 3, Alt a 7. The function of Alt a 1 and Alt a 9 remains unknown. Other four allergens are included in other medical databases (e.g., Allergome): Alt a NTF2, Alt a TCTP, and Alt a 70 kDa. Despite Alt a 1 being the A. alternata major allergen, other allergens, such as enolase, Alt a 6 or MnSOD, Alt a 14 have been suggested to be included in the diagnosis panel of fungal allergy.
Insights
Fungal allergy, particularly from Alternaria, is a major cause of respiratory issues and asthma. Improved diagnosis requires component-resolved strategies beyond just Alt a 1, considering other Alternaria allergens like enolase and MnSOD.
Area of Science:
- Allergy and Immunology
- Environmental Health
- Mycology
Background:
- Fungal allergy is a significant cause of respiratory diseases, strongly linked to poor asthma prognosis.
- Alternaria and Cladosporium are key genera in allergic respiratory diseases, with Alternaria sensitization being highly prevalent.
- Exposure to Alternaria allergens occurs both outdoors and indoors, with spores and fragments acting as aeroallergenic sources.
Purpose of the Study:
- To highlight the challenges in diagnosing fungal allergies due to non-standardized extracts.
- To emphasize the need for component-resolved diagnosis strategies for Alternaria allergy.
- To discuss the known and potential allergens of Alternaria alternata.
Main Methods:
- Review of current literature on fungal allergens, particularly Alternaria.
- Analysis of accepted and suggested Alternaria allergens by WHO/IUIS and other databases.
- Discussion of the limitations of traditional diagnostic methods using crude allergenic extracts.
Main Results:
- Twelve Alternaria alternata allergens are recognized, many being enzymes (e.g., enolase, MnSOD) or having structural/regulatory functions.
- Alt a 1 is the major allergen, but others like enolase (Alt a 6) and MnSOD (Alt a 14) are suggested for diagnostic panels.
- Current diagnostic and treatment extracts are variable and insufficiently standardized.
Conclusions:
- Diagnosis of fungal allergy is complex and hindered by the lack of standardized components.
- Component-resolved diagnosis strategies are crucial for accurate fungal allergy assessment.
- Further research and standardization of Alternaria allergens are needed for improved clinical management.
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