Fungal Signature of Moisture Damage in Buildings: Identification by Targeted and Untargeted Approaches with Mycobiome Data
Abstract
Living or working in damp or moldy buildings increases the risk of many adverse health effects, including asthma and other respiratory diseases. To date, however, the particular environmental exposure(s) from water-damaged buildings that causes the health effects have not been identified. Likewise, a consistent quantitative measurement that would indicate whether a building is water damaged or poses a health risk to occupants has not been found. In this work, we tried to develop analytical tools that would find a microbial signal of moisture damage amid the noisy background of microorganisms in buildings. The most successful approach taken here focused on particular groups of fungi-those considered likely to grow in damp indoor environments-and their associations with observed moisture damage. With further replication and refinement, this hypothesis-based strategy may be effective in finding still-elusive relationships between building damage and microbiomes.
Symptom Clusters
Cited By (6)
- Fungal Contamination of Building Materials and the Aerosolization of Particles and Toxins in Indoor Air and Their Associated Risks to Health: A ReviewToxins · 2023
- Association of exposure to indoor molds and dampness with allergic diseases at water-damaged dwellings in KoreaScientific Reports · 2024
- Damp Buildings: Associated Fungi and How to Find ThemJournal of Fungi · 2024
- Indoor Bacterial and Fungal Burden in “Moldy” versus “Non-Moldy” Homes: A Case Study Employing Advanced Sequencing Techniques in a US Metropolitan AreaPathogens · 2023
- Efficiency of the Coriolis µ Air Sampling Device for Fungal Contamination Analysis of Indoor Air: A Case StudyPathogens · 2025
- The Impact of Biochar Used in Repairs to Historical Buildings on Public HealthInternational Journal of Environmental Research and Public Health · 2022
References (2)
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