Literature DB >> 18326518

Captan exposure and evaluation of a pesticide exposure algorithm among orchard pesticide applicators in the Agricultural Health Study.

Cynthia J Hines1, James A Deddens, Larry B Jaycox, Ronnee N Andrews, Cynthia A F Striley, Michael C R Alavanja.   

Abstract

Pesticide exposure assessment in the Agricultural Health Study (AHS) has relied upon two exposure metrics: lifetime exposure days and intensity-weighted lifetime exposure days, the latter incorporating an intensity score computed from a questionnaire-based algorithm. We evaluated this algorithm using actual fungicide exposure measurements from AHS private orchard applicators. Captan was selected as a marker of fungicide exposure. Seventy-four applicators from North Carolina and Iowa growing apples and/or peaches were sampled on 2 days they applied captan in 2002 and 2003. Personal air, hand rinse, 10 dermal patches, a pre-application first-morning urine and a subsequent 24-h urine sample were collected from each applicator per day. Environmental samples were analyzed for captan, and urine samples were analyzed for cis-1,2,3,6-tetrahydrophthalimide (THPI). Task and personal protective equipment information needed to compute an individual's algorithm score was also collected. Differences in analyte detection frequency were tested in a repeated logistic regression model. Mixed-effects models using maximum-likelihood estimation were employed to estimate geometric mean exposures and to evaluate the measured exposure data against the algorithm. In general, captan and THPI were detected significantly more frequently in environmental and urine samples collected from applicators who used air blast sprayers as compared to those who hand sprayed. The AHS pesticide exposure intensity algorithm, while significantly or marginally predictive of thigh and forearm captan exposure, respectively, did not predict air, hand rinse or urinary THPI exposures. The algorithm's lack of fit with some exposure measures among orchard fungicide applicators may be due in part to the assignment of equal exposure weights to air blast and hand spray application methods in the current algorithm. Some modification of the algorithm is suggested by these results.

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Year:  2008        PMID: 18326518     DOI: 10.1093/annhyg/men001

Source DB:  PubMed          Journal:  Ann Occup Hyg        ISSN: 0003-4878


  12 in total

1.  Determinants of captan air and dermal exposures among orchard pesticide applicators in the Agricultural Health Study.

Authors:  Cynthia J Hines; James A Deddens; Joseph Coble; Freya Kamel; Michael C R Alavanja
Journal:  Ann Occup Hyg       Date:  2011-03-22

2.  Assessment of a pesticide exposure intensity algorithm in the agricultural health study.

Authors:  Kent W Thomas; Mustafa Dosemeci; Joseph B Coble; Jane A Hoppin; Linda S Sheldon; Guadalupe Chapa; Carry W Croghan; Paul A Jones; Charles E Knott; Charles F Lynch; Dale P Sandler; Aaron E Blair; Michael C Alavanja
Journal:  J Expo Sci Environ Epidemiol       Date:  2009-11-04       Impact factor: 5.563

3.  Occupational determinants of serum cholinesterase inhibition among organophosphate-exposed agricultural pesticide handlers in Washington State.

Authors:  Jonathan N Hofmann; Matthew C Keifer; Anneclaire J De Roos; Richard A Fenske; Clement E Furlong; Gerald van Belle; Harvey Checkoway
Journal:  Occup Environ Med       Date:  2009-10-09       Impact factor: 4.402

4.  The Upper Midwest Health Study: a case-control study of pesticide applicators and risk of glioma.

Authors:  James H Yiin; Avima M Ruder; Patricia A Stewart; Martha A Waters; Tania Carreón; Mary Ann Butler; Geoffrey M Calvert; Karen E Davis-King; Paul A Schulte; Jack S Mandel; Roscoe F Morton; Douglas J Reding; Kenneth D Rosenman
Journal:  Environ Health       Date:  2012-06-12       Impact factor: 5.984

Review 5.  A review of pesticide exposure and cancer incidence in the Agricultural Health Study cohort.

Authors:  Scott Weichenthal; Connie Moase; Peter Chan
Journal:  Environ Health Perspect       Date:  2010-05-05       Impact factor: 9.031

6.  Atrazine and cancer incidence among pesticide applicators in the agricultural health study (1994-2007).

Authors:  Laura E Beane Freeman; Jennifer A Rusiecki; Jane A Hoppin; Jay H Lubin; Stella Koutros; Gabriella Andreotti; Shelia Hoar Zahm; Cynthia J Hines; Joseph B Coble; Francesco Barone-Adesi; Jennifer Sloan; Dale P Sandler; Aaron Blair; Michael C R Alavanja
Journal:  Environ Health Perspect       Date:  2011-05-27       Impact factor: 9.031

7.  An updated algorithm for estimation of pesticide exposure intensity in the agricultural health study.

Authors:  Joseph Coble; Kent W Thomas; Cynthia J Hines; Jane A Hoppin; Mustafa Dosemeci; Brian Curwin; Jay H Lubin; Laura E Beane Freeman; Aaron Blair; Dale P Sandler; Michael C R Alavanja
Journal:  Int J Environ Res Public Health       Date:  2011-12-12       Impact factor: 3.390

8.  Biological monitoring of pesticide exposures in residents living near agricultural land.

Authors:  Karen S Galea; Laura MacCalman; Kate Jones; John Cocker; Paul Teedon; Anne J Sleeuwenhoek; John W Cherrie; Martie van Tongeren
Journal:  BMC Public Health       Date:  2011-11-10       Impact factor: 3.295

Review 9.  A Critical Scoping Review of Pesticide Exposure Biomonitoring Studies in Overhead Cultures.

Authors:  Christian Tobias Willenbockel; Julia Prinz; Stefan Dietrich; Philip Marx-Stoelting; Cornelia Weikert; Tewes Tralau; Lars Niemann
Journal:  Toxics       Date:  2022-03-31

10.  Occupational Exposure to Pesticides and the Incidence of Lung Cancer in the Agricultural Health Study.

Authors:  Matthew R Bonner; Laura E Beane Freeman; Jane A Hoppin; Stella Koutros; Dale P Sandler; Charles F Lynch; Cynthia J Hines; Kent Thomas; Aaron Blair; Michael C R Alavanja
Journal:  Environ Health Perspect       Date:  2016-07-06       Impact factor: 9.031

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