← Explorer/Network

Aerosolization of fungal spores in indoor environments

Xian Li, Dan Liu, Jian Guo Yao2022The Science of The Total EnvironmentReview
10.1016/j.scitotenv.2022.153003PubMed
Respiratory/Sinus
Indoor Mold (Stachybotrys, Aspergillus, etc.)

Abstract

Fungi in indoor environments can cause adverse health effects through inhalation and epidermal exposure. The risk of fungal exposure originates from the aerosolization of fungal spores. However, spore aerosolization is still not well understood. This paper provides a review of indoor fungal contamination, especially the aerosolization of fungal spores. We attempted to summarize what is known today and to identify what more information is needed to predict the aerosolization of fungal spores. This paper first reviews fungal contamination in indoor environments and HVAC systems. The detachment of fungal spores from colonies and the spore aerosolization principle are then summarized. Based on the above discussion, prediction methods for spore aerosolization are discussed. This review further clarifies the current situation and future efforts required to accurately predict spore aerosolization. This information is useful for forecasting and controlling the aerosolization of fungal spores.

Cited By (6)

  • A comprehensive review of microbial contamination in the indoor environment: sources, sampling, health risks, and mitigation strategiesFrontiers in Public Health · 2023
  • Environmental fungal spore aerosolization: a reviewJournal of Bacteriology & Mycology Open Access · 2023
  • Exposure Risks from Microbiological Hazards in Buildings and Their Control—A Rapid Review of the EvidenceAtmosphere · 2025
  • Passive fungal spore release from fruit and vegetable solid wasteJournal of Hazardous Materials · 2023
  • Airborne Fungal Communities: Diversity, Health Impacts, and Potential AI Applications in AeromycologyAerobiology · 2025
  • Tio2 Photocatalytic Biocidal Activity on Escherichia Coli and On Aspergillus Niger under Different Methodological ConditionsProceedings of the World Congress on Civil, Structural, and Environmental Engineering · 2023

References (5)

Related Papers

  • Misalignment between Clinical Mold Antigen Extracts and Airborne Molds Found in Water-damaged HomesAnnals of the American Thoracic Society · 2021 · 2 shared tags
  • Microbiological Analysis of Indoor Air in Selected Primary Schools: Health Concerns and RecommendationsJournal of Multidisciplinary Science MIKAILALSYS · 2023 · 2 shared tags
  • Dampness, mould, onset and remission of adult respiratory symptoms, asthma and rhinitisEuropean Respiratory Journal · 2019 · 2 shared tags
  • Microbial Air Quality in the Built Environment—Case Study of Darvas-La Roche Heritage Museum House, Oradea, RomaniaBuildings · 2023 · 2 shared tags
  • Assessment of Mould Risk in Low-Cost Residential Buildings in Urban Slum Districts of Surakarta City, IndonesiaBuildings · 2023 · 2 shared tags
  • Impact of positive pressure ventilation systems on indoor air quality in residential settingsBuilding and Environment · 2025 ·
Fungal Fragments as Indoor Air BiocontaminantsApplied and Environmental Microbiology · 2002
  • Allergic fungal airways disease (AFAD): an under-recognised asthma endotypeMycopathologia · 2021
  • Assessment of the aerosolization potential for fungal spores in moldy homesIndoor Air · 2004
  • Determination of fungal spore release from wet building materialsIndoor Air · 2003
  • Reaerosolization of fluidized spores in ventilation systemsApplied and Environmental Microbiology · 2007
  • 2 shared tags