← Explorer/Network

Allergic fungal airways disease (AFAD): an under-recognised asthma endotype

Catherine H. Pashley, Andrew J. Wardlaw2021MycopathologiaReview
10.1007/s11046-021-00562-0PubMedFree full text
Immune/InnateRespiratory/Sinus
Indoor Mold (Stachybotrys, Aspergillus, etc.)

Abstract

The term allergic fungal airways disease has a liberal definition based on IgE sensitisation to thermotolerant fungi and evidence of fungal-related lung damage. It arose from a body of work looking into the role of fungi in asthma. Historically fungi were considered a rare complication of asthma, exemplified by allergic bronchopulmonary aspergillosis; however, there is a significant proportion of individuals with Aspergillus fumigatus sensitisation who do not meet these criteria, who are at high risk for the development of lung damage. The fungi that play a role in asthma can be divided into two groups; those that can grow at body temperature referred to as thermotolerant, which are capable of both infection and allergy, and those that cannot but can still act as allergens in IgE sensitised individuals. Sensitisation to thermotolerant filamentous fungi (Aspergillus and Penicillium), and not non-thermotolerant fungi (Alternaria and Cladosporium) is associated with lower lung function and radiological abnormalities (bronchiectasis, tree-in-bud, fleeting shadows, collapse/consolidation and fibrosis). For antifungals to play a role in treatment, the focus should be on fungi capable of growing in the airways thereby causing a persistent chronic allergenic stimulus and releasing tissue damaging proteases and other enzymes which may disrupt the airway epithelial barrier and cause mucosal damage and airway remodelling. All patients with IgE sensitisation to thermotolerant fungi in the context of asthma and other airway disease are at risk of progressive lung damage, and as such should be monitored closely.

Key Biomarkers

Immunoglobulin E (IgE)

Symptom Clusters

Asthma

Cited By (3)

  • Aerosolization of fungal spores in indoor environmentsThe Science of The Total Environment · 2022
  • The study of effective factors in sick building syndrome related to fungi and its control methodsResults in Engineering · 2024
  • A review of pathogenic airborne fungi and bacteria: unveiling occurrence, sources, and profound human health implicationFrontiers in Microbiology · 2024

Related Papers

  • Mold inhalation causes innate immune activation, neural, cognitive and emotional dysfunctionBrain Behavior and Immunity · 2020 · 3 shared tags
  • THIRTY YEARS OF PUBLISHED RESEARCH ON HUMAN HEALTH EFFECTS OF EXPOSURE TO THE INTERIOR ENVIRONMENT OF WATER-DAMAGED BUILT ENVIRONMENTSMedical Research Archives · 2025 · 3 shared tags
  • Dampness and moulds in workplace buildings: Associations with incidence and remission of sick building syndrome (SBS) and biomarkers of inflammation in a 10 year follow-up studyThe Science of The Total Environment · 2012 · 3 shared tags
  • Divergent TLR2 and TLR4 Activation by Fungal Spores and Species Diversity in Dust from Waste Sorting PlantsApplied and Environmental Microbiology · 2023 · 3 shared tags
  • Phytoplankton Toxins and Their Potential Therapeutic Applications: A Journey toward the Quest for Potent PharmaceuticalsMarine Drugs · 2022 · 3 shared tags
  • Poorly controlled asthma – Easy wins and future prospects for addressing fungal allergy
Allergology International · 2023 · 3 shared tags