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Accelerated epigenetic age as a biomarker of cardiovascular sensitivity to traffic-related air pollution

Background: Accelerated epigenetic age has been proposed as a biomarker of increased aging, which may indicate disruptions in cellular and organ system homeostasis and thus contribute to sensitivity to environmental exposures. Methods: Using 497 participants from the CATHGEN cohort, we evaluated whe...

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Autores principales: Ward-Caviness, Cavin K., Russell, Armistead G., Weaver, Anne M., Slawsky, Erik, Dhingra, Radhika, Kwee, Lydia Coulter, Jiang, Rong, Neas, Lucas M., Diaz-Sanchez, David, Devlin, Robert B., Cascio, Wayne E., Olden, Kenneth, Hauser, Elizabeth R., Shah, Svati H., Kraus, William E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7762491/
https://www.ncbi.nlm.nih.gov/pubmed/33289704
http://dx.doi.org/10.18632/aging.202341
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author Ward-Caviness, Cavin K.
Russell, Armistead G.
Weaver, Anne M.
Slawsky, Erik
Dhingra, Radhika
Kwee, Lydia Coulter
Jiang, Rong
Neas, Lucas M.
Diaz-Sanchez, David
Devlin, Robert B.
Cascio, Wayne E.
Olden, Kenneth
Hauser, Elizabeth R.
Shah, Svati H.
Kraus, William E.
author_facet Ward-Caviness, Cavin K.
Russell, Armistead G.
Weaver, Anne M.
Slawsky, Erik
Dhingra, Radhika
Kwee, Lydia Coulter
Jiang, Rong
Neas, Lucas M.
Diaz-Sanchez, David
Devlin, Robert B.
Cascio, Wayne E.
Olden, Kenneth
Hauser, Elizabeth R.
Shah, Svati H.
Kraus, William E.
author_sort Ward-Caviness, Cavin K.
collection PubMed
description Background: Accelerated epigenetic age has been proposed as a biomarker of increased aging, which may indicate disruptions in cellular and organ system homeostasis and thus contribute to sensitivity to environmental exposures. Methods: Using 497 participants from the CATHGEN cohort, we evaluated whether accelerated epigenetic aging increases cardiovascular sensitivity to traffic-related air pollution (TRAP) exposure. We used residential proximity to major roadways and source apportioned air pollution models as measures of TRAP exposure, and chose peripheral arterial disease (PAD) and blood pressure as outcomes based on previous associations with TRAP. We used Horvath epigenetic age acceleration (AAD) and phenotypic age acceleration (PhenoAAD) as measures of age acceleration, and adjusted all models for chronological age, race, sex, smoking, and socioeconomic status. Results: We observed significant interactions between TRAP and both AAD and PhenoAAD. Interactions indicated that increased epigenetic age acceleration elevated associations between proximity to roadways and PAD. Interactions were also observed between AAD and gasoline and diesel source apportioned PM(2.5). Conclusion: Epigenetic age acceleration may be a biomarker of sensitivity to air pollution, particularly for TRAP in urban cohorts. This presents a novel means by which to understand sensitivity to air pollution and provides a molecular measure of environmental sensitivity.
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spelling pubmed-77624912021-01-08 Accelerated epigenetic age as a biomarker of cardiovascular sensitivity to traffic-related air pollution Ward-Caviness, Cavin K. Russell, Armistead G. Weaver, Anne M. Slawsky, Erik Dhingra, Radhika Kwee, Lydia Coulter Jiang, Rong Neas, Lucas M. Diaz-Sanchez, David Devlin, Robert B. Cascio, Wayne E. Olden, Kenneth Hauser, Elizabeth R. Shah, Svati H. Kraus, William E. Aging (Albany NY) Research Paper Background: Accelerated epigenetic age has been proposed as a biomarker of increased aging, which may indicate disruptions in cellular and organ system homeostasis and thus contribute to sensitivity to environmental exposures. Methods: Using 497 participants from the CATHGEN cohort, we evaluated whether accelerated epigenetic aging increases cardiovascular sensitivity to traffic-related air pollution (TRAP) exposure. We used residential proximity to major roadways and source apportioned air pollution models as measures of TRAP exposure, and chose peripheral arterial disease (PAD) and blood pressure as outcomes based on previous associations with TRAP. We used Horvath epigenetic age acceleration (AAD) and phenotypic age acceleration (PhenoAAD) as measures of age acceleration, and adjusted all models for chronological age, race, sex, smoking, and socioeconomic status. Results: We observed significant interactions between TRAP and both AAD and PhenoAAD. Interactions indicated that increased epigenetic age acceleration elevated associations between proximity to roadways and PAD. Interactions were also observed between AAD and gasoline and diesel source apportioned PM(2.5). Conclusion: Epigenetic age acceleration may be a biomarker of sensitivity to air pollution, particularly for TRAP in urban cohorts. This presents a novel means by which to understand sensitivity to air pollution and provides a molecular measure of environmental sensitivity. Impact Journals 2020-12-07 /pmc/articles/PMC7762491/ /pubmed/33289704 http://dx.doi.org/10.18632/aging.202341 Text en Copyright: © 2020 Ward-Caviness et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Ward-Caviness, Cavin K.
Russell, Armistead G.
Weaver, Anne M.
Slawsky, Erik
Dhingra, Radhika
Kwee, Lydia Coulter
Jiang, Rong
Neas, Lucas M.
Diaz-Sanchez, David
Devlin, Robert B.
Cascio, Wayne E.
Olden, Kenneth
Hauser, Elizabeth R.
Shah, Svati H.
Kraus, William E.
Accelerated epigenetic age as a biomarker of cardiovascular sensitivity to traffic-related air pollution
title Accelerated epigenetic age as a biomarker of cardiovascular sensitivity to traffic-related air pollution
title_full Accelerated epigenetic age as a biomarker of cardiovascular sensitivity to traffic-related air pollution
title_fullStr Accelerated epigenetic age as a biomarker of cardiovascular sensitivity to traffic-related air pollution
title_full_unstemmed Accelerated epigenetic age as a biomarker of cardiovascular sensitivity to traffic-related air pollution
title_short Accelerated epigenetic age as a biomarker of cardiovascular sensitivity to traffic-related air pollution
title_sort accelerated epigenetic age as a biomarker of cardiovascular sensitivity to traffic-related air pollution
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7762491/
https://www.ncbi.nlm.nih.gov/pubmed/33289704
http://dx.doi.org/10.18632/aging.202341
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