Aeroallergens and work-related respiratory symptoms among office workers
Abstract
OBJECTIVE: We sought to determine the association between office workers' respiratory tract symptoms and immediate skin test reactions with exposure to fungal and house dust mite aeroallergens at their work sites. METHODS: An initial prevalence survey was conducted among 1102 full-time workers in six mechanically ventilated, air-conditioned, nonindustrial buildings in downtown Montreal. Detailed environmental measures of 214 subjects' work sites were determined. Half of the workers reported frequent work-related respiratory tract symptoms on the initial survey. Participants simultaneously underwent allergy skin prick testing and completed a second self-administered questionnaire. RESULTS: Contaminant levels were low and not associated with symptoms in the great majority of workers. For approximately 17% of workers, symptoms were associated with exposure to total concentrations of house dust mite allergen greater than 1 microg/gm floor dust (odds ratio [OR], 5.0; 95% confidence interval [CI], 1.3, 19.5]) or to detectable airborne Alternaria allergens in their offices (OR, 3.3; 95% CI, 1.2, 9.4 and in the ventilation system supplying their offices (OR, 3.9; 95% CI, 1.6, 9.6). Workers with positive skin test reactions to Alternaria extract were exposed at their work site to airborne Alternaria allergen (OR, 4.4; 95% CI, 1.4, 14.5) and cited significantly more respiratory symptoms on both questionnaires. Detection of airborne Alternaria allergen at work sites was significantly associated with detection in the ventilation system (OR, 4.0; 95% CI, 1.4,10.9); this was in turn associated with lower efficiency filters. CONCLUSIONS: Potentially avoidable exposure to aeroallergens accounted for symptoms in a small subgroup of office workers with frequent work-related respiratory tract symptoms.
Symptom Clusters
Cited By (6)
- Public health and economic impact of dampness and moldIndoor Air · 2007
- Indoor Mold, Toxigenic Fungi, andStachybotrys chartarum: Infectious Disease PerspectiveClinical Microbiology Reviews · 2003
- Indoor air particles and bioaerosols before and after renovation of moisture-damaged buildings: the effect on biological activity and microbial floraEnvironmental Research · 2008
- Effect of ultraviolet germicidal lights installed in office ventilation systems on worker’s health and wellbeing: double-blind multiple crossover trialThe Lancet · 2003
- Airborne fungal spores in a cross-sectional study of office buildingsJournal of Occupational and Environmental Hygiene · 2006
- Do indoor molds in nonindustrial environments threaten workers’ health? A review of the epidemiologic evidenceEpidemiologic Reviews · 2002
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