Methods for Evaluating the Combined Effects of Chemical and Nonchemical Exposures for Cumulative Environmental Health Risk Assessment

Cumulative risk assessment (CRA) has been proposed as a means of evaluating possible additive and synergistic effects of multiple chemical, physical and social stressors on human health, with the goal of informing policy and decision-making, and protecting public health. Routine application of CRA t...

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Main Authors: Devon C. Payne-Sturges, Madeleine K. Scammell, Jonathan I. Levy, Deborah A. Cory-Slechta, Elaine Symanski, Jessie L. Carr Shmool, Robert Laumbach, Stephen Linder, Jane E. Clougherty
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:International Journal of Environmental Research and Public Health
Subjects:
Online Access:https://www.mdpi.com/1660-4601/15/12/2797
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spelling doaj-34611e2462904f53b4ebd6849be5fd6c2020-11-24T22:59:55ZengMDPI AGInternational Journal of Environmental Research and Public Health1660-46012018-12-011512279710.3390/ijerph15122797ijerph15122797Methods for Evaluating the Combined Effects of Chemical and Nonchemical Exposures for Cumulative Environmental Health Risk AssessmentDevon C. Payne-Sturges0Madeleine K. Scammell1Jonathan I. Levy2Deborah A. Cory-Slechta3Elaine Symanski4Jessie L. Carr Shmool5Robert Laumbach6Stephen Linder7Jane E. Clougherty8Maryland Institute for Applied Environmental Health, University of Maryland School of Public Health, 2234 L SPH, 255 Valley Drive, College Park, MD 20742, USADepartment of Environmental Health, Boston University School of Public Health, 715 Albany St., TW4, Boston, MA 02118, USADepartment of Environmental Health, Boston University School of Public Health, 715 Albany St., TW4, Boston, MA 02118, USADepartment of Environmental Medicine, University of Rochester Medical Center, 601 Elmwood Avenue, Box EHSC, Rochester, NY 14642, USAThe Southwest Center for Occupational and Environmental Health, Department of Epidemiology, Human Genetics and Environmental Sciences, The University of Texas Health Science Center at Houston (UTHealth) School of Public Health, 1200 Pressler Street, Suite W-1030, Houston, TX 77030, USADepartment of Environmental & Occupational Health, University of Pittsburgh, Bridgeside Point 1, 100 Technology Drive, Suite 350, Pittsburgh, PA 15219, USAEnvironmental and Occupational Health Sciences Institute, Rutgers School of Public Health, 170 Frelinghuysen Rd, room 204, Piscataway, NJ 08854, USAInstitute for Health Policy, School of Public Health, The University of Texas Health Science Center at Houston, 1200 Pressler, Houston, TX 77030, USADornsife School of Public Health, Drexel University, 3215 Market Street, Nesbitt Hall, Office 616, Philadelphia, PA 19104, USACumulative risk assessment (CRA) has been proposed as a means of evaluating possible additive and synergistic effects of multiple chemical, physical and social stressors on human health, with the goal of informing policy and decision-making, and protecting public health. Routine application of CRA to environmental regulatory and policy decision making, however, has been limited due to a perceived lack of appropriate quantitative approaches for assessing combined effects of chemical and nonchemical exposures. Seven research projects, which represented a variety of disciplines, including population health science, laboratory science, social sciences, geography, statistics and mathematics, were funded by the US Environmental Protection Agency (EPA) to help address this knowledge gap. We synthesize key insights from these unique studies to determine the implications for CRA practice and priorities for further research. Our analyses of these seven projects demonstrate that the necessary analytical methods to support CRA are available but are ultimately context-dependent. These projects collectively provided advancements for CRA in the areas of community engagement, characterization of exposures to nonchemical stressors, and assessment of health effects associated with joint exposures to chemical and psychosocial stressors.https://www.mdpi.com/1660-4601/15/12/2797cumulative riskmethodscommunity healthenvironmental justicepsychosocial stressors
collection DOAJ
language English
format Article
sources DOAJ
author Devon C. Payne-Sturges
Madeleine K. Scammell
Jonathan I. Levy
Deborah A. Cory-Slechta
Elaine Symanski
Jessie L. Carr Shmool
Robert Laumbach
Stephen Linder
Jane E. Clougherty
spellingShingle Devon C. Payne-Sturges
Madeleine K. Scammell
Jonathan I. Levy
Deborah A. Cory-Slechta
Elaine Symanski
Jessie L. Carr Shmool
Robert Laumbach
Stephen Linder
Jane E. Clougherty
Methods for Evaluating the Combined Effects of Chemical and Nonchemical Exposures for Cumulative Environmental Health Risk Assessment
International Journal of Environmental Research and Public Health
cumulative risk
methods
community health
environmental justice
psychosocial stressors
author_facet Devon C. Payne-Sturges
Madeleine K. Scammell
Jonathan I. Levy
Deborah A. Cory-Slechta
Elaine Symanski
Jessie L. Carr Shmool
Robert Laumbach
Stephen Linder
Jane E. Clougherty
author_sort Devon C. Payne-Sturges
title Methods for Evaluating the Combined Effects of Chemical and Nonchemical Exposures for Cumulative Environmental Health Risk Assessment
title_short Methods for Evaluating the Combined Effects of Chemical and Nonchemical Exposures for Cumulative Environmental Health Risk Assessment
title_full Methods for Evaluating the Combined Effects of Chemical and Nonchemical Exposures for Cumulative Environmental Health Risk Assessment
title_fullStr Methods for Evaluating the Combined Effects of Chemical and Nonchemical Exposures for Cumulative Environmental Health Risk Assessment
title_full_unstemmed Methods for Evaluating the Combined Effects of Chemical and Nonchemical Exposures for Cumulative Environmental Health Risk Assessment
title_sort methods for evaluating the combined effects of chemical and nonchemical exposures for cumulative environmental health risk assessment
publisher MDPI AG
series International Journal of Environmental Research and Public Health
issn 1660-4601
publishDate 2018-12-01
description Cumulative risk assessment (CRA) has been proposed as a means of evaluating possible additive and synergistic effects of multiple chemical, physical and social stressors on human health, with the goal of informing policy and decision-making, and protecting public health. Routine application of CRA to environmental regulatory and policy decision making, however, has been limited due to a perceived lack of appropriate quantitative approaches for assessing combined effects of chemical and nonchemical exposures. Seven research projects, which represented a variety of disciplines, including population health science, laboratory science, social sciences, geography, statistics and mathematics, were funded by the US Environmental Protection Agency (EPA) to help address this knowledge gap. We synthesize key insights from these unique studies to determine the implications for CRA practice and priorities for further research. Our analyses of these seven projects demonstrate that the necessary analytical methods to support CRA are available but are ultimately context-dependent. These projects collectively provided advancements for CRA in the areas of community engagement, characterization of exposures to nonchemical stressors, and assessment of health effects associated with joint exposures to chemical and psychosocial stressors.
topic cumulative risk
methods
community health
environmental justice
psychosocial stressors
url https://www.mdpi.com/1660-4601/15/12/2797
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