This study is designed to integrate our pesticide exposure research across the Center cohort community within the Yakima Valley region of Washington. This will link our previous research on exposure pathways which has been conducted on a smaller scale with single spray events: pesticide spray drift studies describing chemical fate and transport, and exposure assessment studies, with emphasis on residential exposure factors, para-occupational exposures, human activity patterns, personal exposure and dose estimation. Children who live in agricultural communities are a vulnerable community having many potential yet not fully characterized exposures pathways related to their proximity to pesticide spraying in addition to the traditional pathways of take-home exposure, diet, drinking water, and residential pesticide use. The overall objective of our research is to understand how exposures at a community scale, involving multiple applications, crops, weather patterns, and human activities may contribute to non-occupational exposures of children following pesticide applications. Pesticide drift and dispersion will be evaluated using measurements and physical transport models we have benchmarked in our previous studies to field samples from actual spray events. Residential characteristics and land use will be assessed with crop data and pesticide application information from the current decision tools used for selecting chemical treatments. Participant's activity patterns will be assessed using a GPS tracking device that can be integrated into a spatial-temporal data set describing personal activity during spray episodes. Using these physical and behavioral exposure factors, this study seeks to identify the determinants of children's exposure to pesticides from the proximity pathway as estimated through urinary metabolites or other biomarkers. This study will bring innovative methods of exposure assessment to bear on the problem of pesticide spray drift, and in doing so will identify the best opportunities for applicator, community, or parental interventions.

Public Health Relevance

This study is designed to look at pesticide exposure pathways. To accomplish this we have designed a study that will evaluate potential pesticide exposures in the Yakima Valley agricultural region of Washington where our children's cohort resides. We will look at potential for pesticide drift and will describe chemical fate and transport.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Research Program Projects (P01)
Project #
5P01ES009601-13
Application #
8309378
Study Section
Special Emphasis Panel (ZES1)
Project Start
2011-08-01
Project End
2014-07-31
Budget Start
2011-08-01
Budget End
2012-07-31
Support Year
13
Fiscal Year
2011
Total Cost
$106,503
Indirect Cost
Name
University of Washington
Department
Type
DUNS #
605799469
City
Seattle
State
WA
Country
United States
Zip Code
98195
Ulrich, Angie; Molina, Yamile; Briant, Katherine J et al. (2018) Stress Among Latinos: Does it Vary by Occupation and Agricultural Season? J Occup Environ Med 60:810-814
Griffith, William C; Vigoren, Eric M; Smith, Marissa N et al. (2018) Application of improved approach to evaluate a community intervention to reduce exposure of young children living in farmworker households to organophosphate pesticides. J Expo Sci Environ Epidemiol :
Plascak, Jesse J; Griffith, William C; Workman, Tomomi et al. (2018) Evaluation of the relationship between residential orchard density and dimethyl organophosphate pesticide residues in house dust. J Expo Sci Environ Epidemiol :
Tamaro, Catherine M; Smith, Marissa N; Workman, Tomomi et al. (2018) Characterization of organophosphate pesticides in urine and home environment dust in an agricultural community. Biomarkers 23:174-187
Shaffer, Rachel M; Smith, Marissa N; Faustman, Elaine M (2017) Developing the Regulatory Utility of the Exposome: Mapping Exposures for Risk Assessment through Lifestage Exposome Snapshots (LEnS). Environ Health Perspect 125:085003
Gibbs, Jenna L; Yost, Michael G; Negrete, Maria et al. (2017) Passive Sampling for Indoor and Outdoor Exposures to Chlorpyrifos, Azinphos-Methyl, and Oxygen Analogs in a Rural Agricultural Community. Environ Health Perspect 125:333-341
Smith, Marissa N; Workman, Tomomi; McDonald, Katie M et al. (2017) Seasonal and occupational trends of five organophosphate pesticides in house dust. J Expo Sci Environ Epidemiol 27:372-378
Stanaway, Ian B; Wallace, James C; Shojaie, Ali et al. (2017) Human Oral Buccal Microbiomes Are Associated with Farmworker Status and Azinphos-Methyl Agricultural Pesticide Exposure. Appl Environ Microbiol 83:
Peter, Beate; Wijsman, Ellen M; Nato Jr, Alejandro Q et al. (2016) Genetic Candidate Variants in Two Multigenerational Families with Childhood Apraxia of Speech. PLoS One 11:e0153864
Kim, Hee Yeon; Wegner, Susanna H; Van Ness, Kirk P et al. (2016) Differential epigenetic effects of chlorpyrifos and arsenic in proliferating and differentiating human neural progenitor cells. Reprod Toxicol 65:212-223

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