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Engine-Operating Load Influences Diesel Exhaust Composition and Cardiopulmonary and Immune Responses

Background: The composition of diesel engine exhaust (DEE) varies by engine type and condition, fuel, engine operation, and exhaust after treatment such as particle traps. DEE has been shown to increase inflammation, susceptibility to infection, and cardiovascular responses in experimentally exposed...

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Autores principales: McDonald, Jacob D., Campen, Matthew J., Harrod, Kevin S., Seagrave, JeanClare, Seilkop, Steven K., Mauderly, Joe L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Institute of Environmental Health Sciences 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3237353/
https://www.ncbi.nlm.nih.gov/pubmed/21524982
http://dx.doi.org/10.1289/ehp.1003101
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author McDonald, Jacob D.
Campen, Matthew J.
Harrod, Kevin S.
Seagrave, JeanClare
Seilkop, Steven K.
Mauderly, Joe L.
author_facet McDonald, Jacob D.
Campen, Matthew J.
Harrod, Kevin S.
Seagrave, JeanClare
Seilkop, Steven K.
Mauderly, Joe L.
author_sort McDonald, Jacob D.
collection PubMed
description Background: The composition of diesel engine exhaust (DEE) varies by engine type and condition, fuel, engine operation, and exhaust after treatment such as particle traps. DEE has been shown to increase inflammation, susceptibility to infection, and cardiovascular responses in experimentally exposed rodents and humans. Engines used in these studies have been operated at idle, at different steady-state loads, or on variable-load cycles, but exposures are often reported only as the mass concentration of particulate matter (PM), and the effects of different engine loads and the resulting differences in DEE composition are unknown. Objectives: We assessed the impacts of load-related differences in DEE composition on models of inflammation, susceptibility to infection, and cardiovascular toxicity. Methods: We assessed inflammation and susceptibility to viral infection in C57BL/6 mice and cardiovascular toxicity in APOE(–/–) mice after being exposed to DEE generated from a single-cylinder diesel generator operated at partial or full load. Results: At the same PM mass concentration, partial load resulted in higher proportions of particle organic carbon content and a smaller particle size than did high load. Vapor-phase hydrocarbon content was greater at partial load. Compared with high-load DEE, partial-load DEE caused greater responses in heart rate and T-wave morphology, in terms of both magnitude and rapidity of onset of effects, consistent with previous findings that systemic effects may be driven largely by the gas phase of the exposure atmospheres. However, high-load DEE caused more lung inflammation and greater susceptibility to viral infection than did partial load. Conclusions: Differences in engine load, as well as other operating variables, are important determinants of the type and magnitude of responses to inhaled DEE. PM mass concentration alone is not a sufficient basis for comparing or combining results from studies using DEE generated under different conditions.
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spelling pubmed-32373532011-12-15 Engine-Operating Load Influences Diesel Exhaust Composition and Cardiopulmonary and Immune Responses McDonald, Jacob D. Campen, Matthew J. Harrod, Kevin S. Seagrave, JeanClare Seilkop, Steven K. Mauderly, Joe L. Environ Health Perspect Research Background: The composition of diesel engine exhaust (DEE) varies by engine type and condition, fuel, engine operation, and exhaust after treatment such as particle traps. DEE has been shown to increase inflammation, susceptibility to infection, and cardiovascular responses in experimentally exposed rodents and humans. Engines used in these studies have been operated at idle, at different steady-state loads, or on variable-load cycles, but exposures are often reported only as the mass concentration of particulate matter (PM), and the effects of different engine loads and the resulting differences in DEE composition are unknown. Objectives: We assessed the impacts of load-related differences in DEE composition on models of inflammation, susceptibility to infection, and cardiovascular toxicity. Methods: We assessed inflammation and susceptibility to viral infection in C57BL/6 mice and cardiovascular toxicity in APOE(–/–) mice after being exposed to DEE generated from a single-cylinder diesel generator operated at partial or full load. Results: At the same PM mass concentration, partial load resulted in higher proportions of particle organic carbon content and a smaller particle size than did high load. Vapor-phase hydrocarbon content was greater at partial load. Compared with high-load DEE, partial-load DEE caused greater responses in heart rate and T-wave morphology, in terms of both magnitude and rapidity of onset of effects, consistent with previous findings that systemic effects may be driven largely by the gas phase of the exposure atmospheres. However, high-load DEE caused more lung inflammation and greater susceptibility to viral infection than did partial load. Conclusions: Differences in engine load, as well as other operating variables, are important determinants of the type and magnitude of responses to inhaled DEE. PM mass concentration alone is not a sufficient basis for comparing or combining results from studies using DEE generated under different conditions. National Institute of Environmental Health Sciences 2011-04-25 2011-08 /pmc/articles/PMC3237353/ /pubmed/21524982 http://dx.doi.org/10.1289/ehp.1003101 Text en http://creativecommons.org/publicdomain/mark/1.0/ Publication of EHP lies in the public domain and is therefore without copyright. All text from EHP may be reprinted freely. Use of materials published in EHP should be acknowledged (for example, ?Reproduced with permission from Environmental Health Perspectives?); pertinent reference information should be provided for the article from which the material was reproduced. Articles from EHP, especially the News section, may contain photographs or illustrations copyrighted by other commercial organizations or individuals that may not be used without obtaining prior approval from the holder of the copyright.
spellingShingle Research
McDonald, Jacob D.
Campen, Matthew J.
Harrod, Kevin S.
Seagrave, JeanClare
Seilkop, Steven K.
Mauderly, Joe L.
Engine-Operating Load Influences Diesel Exhaust Composition and Cardiopulmonary and Immune Responses
title Engine-Operating Load Influences Diesel Exhaust Composition and Cardiopulmonary and Immune Responses
title_full Engine-Operating Load Influences Diesel Exhaust Composition and Cardiopulmonary and Immune Responses
title_fullStr Engine-Operating Load Influences Diesel Exhaust Composition and Cardiopulmonary and Immune Responses
title_full_unstemmed Engine-Operating Load Influences Diesel Exhaust Composition and Cardiopulmonary and Immune Responses
title_short Engine-Operating Load Influences Diesel Exhaust Composition and Cardiopulmonary and Immune Responses
title_sort engine-operating load influences diesel exhaust composition and cardiopulmonary and immune responses
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3237353/
https://www.ncbi.nlm.nih.gov/pubmed/21524982
http://dx.doi.org/10.1289/ehp.1003101
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