Autism Spectrum Disorders in Relation to Distribution of Hazardous Air Pollutants in the San Francisco Bay Area

Gayle C. Windham, Lixia Zhang, Robert B. Gunier, Lisa Croen, Judith K. Grether

Environmental Health Perspectives · 2006 · 422 citations · 42 references

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TL;DR

The study aimed to investigate associations between autism spectrum disorders and hazardous air pollutant exposures by linking California autism surveillance data with EPA HAP concentrations for children born in 1994 in the San Francisco Bay area. Exposure was estimated at the census‑tract level for 19 neurotoxicant chemicals, grouped into mechanistic and structural categories, and summary index scores were used to compare ASD risk in the highest quartiles versus lower exposures while adjusting for demographic factors. The highest quartile of metal exposures was associated with a 70–95% increase in ASD odds (AORs 1.7–1.95), whereas solvent exposure risk varied, with the strongest links involving mercury, cadmium, nickel, trichloroethylene, and vinyl chloride.

Abstract

ObjectiveTo explore possible associations between autism spectrum disorders (ASD) and environmental exposures, we linked the California autism surveillance system to estimated hazardous air pollutant (HAP) concentrations compiled by the U.S. Environmental Protection Agency.MethodsSubjects included 284 children with ASD and 657 controls, born in 1994 in the San Francisco Bay area. We assigned exposure level by census tract of birth residence for 19 chemicals we identified as potential neurotoxicants, developmental toxicants, and/or endocrine disruptors from the 1996 HAPs database. Because concentrations of many of these were highly correlated, we combined the chemicals into mechanistic and structural groups, calculating summary index scores. We calculated ASD risk in the upper quartiles of these group scores or individual chemical concentrations compared with below the median, adjusting for demographic factors.ResultsThe adjusted odds ratios (AORs) were elevated by 50% in the top quartile of chlorinated solvents and heavy metals [95% confidence intervals (CIs), 1.1–2.1], but not for aromatic solvents. Adjusting for these three groups simultaneously led to decreased risks for the solvents and increased risk for metals (AORs for metals: fourth quartile = 1.7; 95% CI, 1.0–3.0; third quartile = 1.95; 95% CI, 1.2–3.1). The individual compounds that contributed most to these associations included mercury, cadmium, nickel, trichloroethylene, and vinyl chloride.ConclusionsOur results suggest a potential association between autism and estimated metal concentrations, and possibly solvents, in ambient air around the birth residence, requiring confirmation and more refined exposure assessment in future studies.

References

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