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Volatile organic compounds (VOC) in homes associated with asthma and lung function among adults in Northern Europe

Juan Wang, Christer Janson, Þórarinn Gíslason +4 more2023Environmental PollutionJournal Article
10.1016/j.envpol.2023.121103PubMedFree full text
Respiratory/Sinus
Indoor Mold (Stachybotrys, Aspergillus, etc.)Volatile Organic Compounds (VOCs)

Abstract

Associations between measured specific VOC reported to be associated with dampness and microbial growth in dwellings and asthma, lung function were investigated in 159 adults (one adult/home) from three North European cities (Reykjavik, Uppsala and Tartu). Spirometry was performed and forced vital capacity (FVC), forced expiratory volume in 1 s (FEV1) and FEV1/FVC were measured. Among 159 participants, 58% were females, 24.5% atopics, 25.8% current smokers and 41% reported dampness or mold at home. Dimethyl disulphide (p = 0.004), ethyl isobutyrate (p = 0.021) and ethyl 2-methylbutyrate (p = 0.035) were associated with asthma. Isobutanol (p = 0.043), 3-methyl-1-butanol (p = 0.020), 2-hexanone (p = 0.033), 1-octen-3-ol (p = 0.027), 2-methyl-1-butanol (p = 0.022) and 2-ethyl-1-hexanol (p = 0.045) were associated with lower FEV1. Isobutanol (p = 0.004), 3-methyl-1-butanol (p = 0.001), 2-heptanone (p = 0.047) and 2-methyl-1-butanol (p = 0.002) were associated with lower FEV1/FVC. The association between dimethyl disulphide and asthma was more pronounced in females (p for interaction 0.099). The association between 1-butanol and lower FEV1 was more pronounced in males (p for interaction 0.046). The associations between 3-octanone (p for interaction 0.064), 2-ethyl-1-hexanol (p for interaction 0.049) and lower FEV1, and between 2-heptanone (p for interaction 0.021), 3-octanone (p for interaction 0.008) and lower FEV1/FVC were stronger in homes with dampness/mold. Factor analysis identified one VOC factor related to asthma and two VOC factors related to lower lung function. Increased air concentrations of 2-heptanone, ethyl 2-methylbutyrate and ethyl isobutyrate were related to prescence of certain mold species (Aspergillus sp., Cladosporum sp. and Penicillium sp.) or building dampness. Some VOC were associated with type of dwelling, building age and pet keeping. In conclusion, some VOC reported to be associated with dampness and microbial growth can be associated with asthma and lower lung function in adults. Associations between these VOC and respiratory illness can be stronger in homes with dampness/mold. There can be gender differences in respiratory health effects when exposed to indoor VOC.

Symptom Clusters

Asthma

Cited By (3)

  • Risk of Fungal Growth in Nearly Zero-Energy Buildings (nZEB)Buildings · 2023
  • INdoor Home Air Level Exploration (INHALE) Study: Protocol to Monitor Indoor Pollution in British DwellingsInternational Journal of Environmental Research and Public Health · 2025
  • Assessment of Mold-Specific Volatile Organic Compounds and Molds Using Sorbent Tubes and a CDC/NIOSH-Developed Tool in Homes Affected by Hurricane IanApplied Sciences · 2025

References (4)

  • Pulmonary Health Effects of Indoor Volatile Organic Compounds—A Meta-AnalysisInternational Journal of Environmental Research and Public Health · 2021
  • Dampness, mould, onset and remission of adult respiratory symptoms, asthma and rhinitisEuropean Respiratory Journal · 2019
  • Respiratory and Allergic Health Effects of Dampness, Mold, and Dampness-Related Agents: A Review of the Epidemiologic EvidenceEnvironmental Health Perspectives · 2011

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