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Environmental determinants of polycyclic aromatic hydrocarbons exposure at home, at kindergartens and during a
Mohammad Miri1, Ahmad Alahabadi2, Mohammad Hassan Ehrampoush3
1Department of Environmental Health, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran; Department of Environmental Health, School of Public Health, Sabzevar University of Medical Sciences, Sabzevar, Iran.
Insights
Exposure to polycyclic aromatic hydrocarbons (PAHs) in preschool children is linked to environmental factors. Proximity to green spaces and good home ventilation reduce PAH exposure, keeping health risks at safe levels.
Area of Science:
- Environmental Health
- Toxicology
- Pediatric Health
Background:
- Polycyclic Aromatic Hydrocarbons (PAHs) are common environmental pollutants.
- Exposure in early childhood can pose health risks.
- Assessing exposure levels and associated environmental factors is crucial for public health.
Purpose of the Study:
- To evaluate the health risks associated with polycyclic aromatic hydrocarbon (PAH) exposure in preschool children.
- To investigate the relationship between environmental parameters and urinary 1-hydroxypyrene (1-OHP) levels, a biomarker for PAH exposure.
- To estimate the health risk and uncertainty of PAH exposure in the target population.
Main Methods:
- Collected urine samples from 200 preschool children (aged 5-7 years) to measure 1-OHP.
- Utilized mixed-effect models to analyze associations between environmental factors (e.g., traffic, greenness, ventilation) and 1-OHP levels.
- Employed Monte-Carlo simulation for risk assessment and sensitivity analysis.
Main Results:
- Median urinary 1-OHP concentration was 257 ng/L.
- Increased distance to green spaces (≥5000 m²) and increased home window opening time were significantly associated with lower 1-OHP levels.
- Normalized Difference Vegetation Index (NDVI) around homes showed an inverse association with urinary 1-OHP.
- Hazard Quotient (HQ) values indicated that PAH exposure levels were generally safe (HQ < 1).
Conclusions:
- Proximity to green spaces and good home ventilation are associated with reduced PAH exposure in preschool children.
- Remoteness from major roads and heavy traffic areas correlates with lower PAH exposure.
- Environmental modifications can mitigate health risks from PAH exposure in young children.
Abstract:
The aim of this study was to assess the potential health risk of exposure to polycyclic aromatic hydrocarbons (PAHs) at home and kindergarten for pre-school children. The urine samples were taken from 200 pre-school children aged 5-7 years and analyzed for 1-OHP as a biomarker of PAHs. Mixed effect models were applied to investigate the association between effective environmental parameters (mode of transport, distance to major roads, traffic density, greenness, tobacco exposure, home ventilation, and grill foods) and urinary 1-OHP levels. A Monte-Carlo simulation technique was applied to calculate the risk of exposure to PAHs and to check the uncertainty of input variables and the sensitivity of the estimated risk. The median and inter quartile range (IQR) of 1-OHP was 257 (188.5) ng L-1. There was a positive significant association between distance from the kindergartens to the green space with surface area ≥5000 m2 and 1-OHP concentration (β = 0.844, 95% CI: 0.223, 1.46, P-value = 0.009). Also, urinary 1-OHP was found to be inversely associated with the time the window was open at the home (β = -12.56, 95% CI: -23.52, -1.596, P-value = 0.025) and normalized difference vegetation index (NDVI) in a 100 m buffer around the homes. The mean (9.76 E-3) and 95th percentile (3.28 E-2) of the hazard quotient (HQ) indicated that the concentration of urinary 1-OHP is at a safe level for the target population (HQ < 1). According to the sensitivity analysis results, the concentration of 1-OHP is the most influential variable in the estimated risk. Our findings indicated that the proximity of homes and kindergartens to green space areas and their remoteness from the main streets and heavy traffic areas are associated with reduced exposure to PAHs.
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