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Vascular and Cardiac Impairments in Rats Inhaling Ozone and Diesel Exhaust Particles

BACKGROUND: Mechanisms of cardiovascular injuries from exposure to gas and particulate air pollutants are unknown. OBJECTIVE: We sought to determine whether episodic exposure of rats to ozone or diesel exhaust particles (DEP) causes differential cardiovascular impairments that are exacerbated by ozo...

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Autores principales: Kodavanti, Urmila P., Thomas, Ronald, Ledbetter, Allen D., Schladweiler, Mette C., Shannahan, Jonathan H., Wallenborn, J. Grace, Lund, Amie K., Campen, Matthew J., Butler, Elizabeth O., Gottipolu, Reddy R., Nyska, Abraham, Richards, Judy E., Andrews, Deborah, Jaskot, Richard H., McKee, John, Kotha, Sainath R., Patel, Rishi B., Parinandi, Narasimham L.
Formato: Texto
Lenguaje:English
Publicado: National Institute of Environmental Health Sciences 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3059992/
https://www.ncbi.nlm.nih.gov/pubmed/20980218
http://dx.doi.org/10.1289/ehp.1002386
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author Kodavanti, Urmila P.
Thomas, Ronald
Ledbetter, Allen D.
Schladweiler, Mette C.
Shannahan, Jonathan H.
Wallenborn, J. Grace
Lund, Amie K.
Campen, Matthew J.
Butler, Elizabeth O.
Gottipolu, Reddy R.
Nyska, Abraham
Richards, Judy E.
Andrews, Deborah
Jaskot, Richard H.
McKee, John
Kotha, Sainath R.
Patel, Rishi B.
Parinandi, Narasimham L.
author_facet Kodavanti, Urmila P.
Thomas, Ronald
Ledbetter, Allen D.
Schladweiler, Mette C.
Shannahan, Jonathan H.
Wallenborn, J. Grace
Lund, Amie K.
Campen, Matthew J.
Butler, Elizabeth O.
Gottipolu, Reddy R.
Nyska, Abraham
Richards, Judy E.
Andrews, Deborah
Jaskot, Richard H.
McKee, John
Kotha, Sainath R.
Patel, Rishi B.
Parinandi, Narasimham L.
author_sort Kodavanti, Urmila P.
collection PubMed
description BACKGROUND: Mechanisms of cardiovascular injuries from exposure to gas and particulate air pollutants are unknown. OBJECTIVE: We sought to determine whether episodic exposure of rats to ozone or diesel exhaust particles (DEP) causes differential cardiovascular impairments that are exacerbated by ozone plus DEP. METHODS AND RESULTS: Male Wistar Kyoto rats (10–12 weeks of age) were exposed to air, ozone (0.4 ppm), DEP (2.1 mg/m(3)), or ozone (0.38 ppm) + DEP (2.2 mg/m(3)) for 5 hr/day, 1 day/week for 16 weeks, or to air, ozone (0.51 or 1.0 ppm), or DEP (1.9 mg/m(3)) for 5 hr/day for 2 days. At the end of each exposure period, we examined pulmonary and cardiovascular biomarkers of injury. In the 16-week study, we observed mild pulmonary pathology in the ozone, DEP, and ozone + DEP exposure groups, a slight decrease in circulating lymphocytes in the ozone and DEP groups, and decreased platelets in the DEP group. After 16 weeks of exposure, mRNA biomarkers of oxidative stress (hemeoxygenase-1), thrombosis (tissue factor, plasminogen activator inhibitor-1, tissue plasminogen activator, and von Willebrand factor), vasoconstriction (endothelin-1, endothelin receptors A and B, endothelial NO synthase) and proteolysis [matrix metalloprotease (MMP)-2, MMP-3, and tissue inhibitor of matrix metalloprotease-2] were increased by DEP and/or ozone in the aorta, but not in the heart. Aortic LOX-1 (lectin-like oxidized low-density lipoprotein receptor-1) mRNA and protein increased after ozone exposure, and LOX-1 protein increased after exposure to ozone + DEP. RAGE (receptor for advanced glycation end products) mRNA increased in the ozone + DEP group. Exposure to ozone or DEP depleted cardiac mitochondrial phospholipid fatty acids (DEP > ozone). The combined effect of ozone and DEP exposure was less pronounced than exposure to either pollutant alone. Exposure to ozone or DEP for 2 days (acute) caused mild changes in the aorta. CONCLUSIONS: In animals exposed to ozone or DEP alone for 16 weeks, we observed elevated biomarkers of vascular impairments in the aorta, with the loss of phospholipid fatty acids in myocardial mitochondria. We conclude that there is a possible role of oxidized lipids and protein through LOX-1 and/or RAGE signaling.
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spelling pubmed-30599922011-03-21 Vascular and Cardiac Impairments in Rats Inhaling Ozone and Diesel Exhaust Particles Kodavanti, Urmila P. Thomas, Ronald Ledbetter, Allen D. Schladweiler, Mette C. Shannahan, Jonathan H. Wallenborn, J. Grace Lund, Amie K. Campen, Matthew J. Butler, Elizabeth O. Gottipolu, Reddy R. Nyska, Abraham Richards, Judy E. Andrews, Deborah Jaskot, Richard H. McKee, John Kotha, Sainath R. Patel, Rishi B. Parinandi, Narasimham L. Environ Health Perspect Research BACKGROUND: Mechanisms of cardiovascular injuries from exposure to gas and particulate air pollutants are unknown. OBJECTIVE: We sought to determine whether episodic exposure of rats to ozone or diesel exhaust particles (DEP) causes differential cardiovascular impairments that are exacerbated by ozone plus DEP. METHODS AND RESULTS: Male Wistar Kyoto rats (10–12 weeks of age) were exposed to air, ozone (0.4 ppm), DEP (2.1 mg/m(3)), or ozone (0.38 ppm) + DEP (2.2 mg/m(3)) for 5 hr/day, 1 day/week for 16 weeks, or to air, ozone (0.51 or 1.0 ppm), or DEP (1.9 mg/m(3)) for 5 hr/day for 2 days. At the end of each exposure period, we examined pulmonary and cardiovascular biomarkers of injury. In the 16-week study, we observed mild pulmonary pathology in the ozone, DEP, and ozone + DEP exposure groups, a slight decrease in circulating lymphocytes in the ozone and DEP groups, and decreased platelets in the DEP group. After 16 weeks of exposure, mRNA biomarkers of oxidative stress (hemeoxygenase-1), thrombosis (tissue factor, plasminogen activator inhibitor-1, tissue plasminogen activator, and von Willebrand factor), vasoconstriction (endothelin-1, endothelin receptors A and B, endothelial NO synthase) and proteolysis [matrix metalloprotease (MMP)-2, MMP-3, and tissue inhibitor of matrix metalloprotease-2] were increased by DEP and/or ozone in the aorta, but not in the heart. Aortic LOX-1 (lectin-like oxidized low-density lipoprotein receptor-1) mRNA and protein increased after ozone exposure, and LOX-1 protein increased after exposure to ozone + DEP. RAGE (receptor for advanced glycation end products) mRNA increased in the ozone + DEP group. Exposure to ozone or DEP depleted cardiac mitochondrial phospholipid fatty acids (DEP > ozone). The combined effect of ozone and DEP exposure was less pronounced than exposure to either pollutant alone. Exposure to ozone or DEP for 2 days (acute) caused mild changes in the aorta. CONCLUSIONS: In animals exposed to ozone or DEP alone for 16 weeks, we observed elevated biomarkers of vascular impairments in the aorta, with the loss of phospholipid fatty acids in myocardial mitochondria. We conclude that there is a possible role of oxidized lipids and protein through LOX-1 and/or RAGE signaling. National Institute of Environmental Health Sciences 2011-03 2010-10-27 /pmc/articles/PMC3059992/ /pubmed/20980218 http://dx.doi.org/10.1289/ehp.1002386 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
Kodavanti, Urmila P.
Thomas, Ronald
Ledbetter, Allen D.
Schladweiler, Mette C.
Shannahan, Jonathan H.
Wallenborn, J. Grace
Lund, Amie K.
Campen, Matthew J.
Butler, Elizabeth O.
Gottipolu, Reddy R.
Nyska, Abraham
Richards, Judy E.
Andrews, Deborah
Jaskot, Richard H.
McKee, John
Kotha, Sainath R.
Patel, Rishi B.
Parinandi, Narasimham L.
Vascular and Cardiac Impairments in Rats Inhaling Ozone and Diesel Exhaust Particles
title Vascular and Cardiac Impairments in Rats Inhaling Ozone and Diesel Exhaust Particles
title_full Vascular and Cardiac Impairments in Rats Inhaling Ozone and Diesel Exhaust Particles
title_fullStr Vascular and Cardiac Impairments in Rats Inhaling Ozone and Diesel Exhaust Particles
title_full_unstemmed Vascular and Cardiac Impairments in Rats Inhaling Ozone and Diesel Exhaust Particles
title_short Vascular and Cardiac Impairments in Rats Inhaling Ozone and Diesel Exhaust Particles
title_sort vascular and cardiac impairments in rats inhaling ozone and diesel exhaust particles
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3059992/
https://www.ncbi.nlm.nih.gov/pubmed/20980218
http://dx.doi.org/10.1289/ehp.1002386
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