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Diesel Exhaust Particle Exposure Compromises Alveolar Macrophage Mitochondrial Bioenergetics

Diesel exhaust particles (DEPs) are known pathogenic pollutants that constitute a significant quantity of air pollution. Given the ubiquitous presence of macrophages throughout the body, including the lungs, as well as their critical role in tissue and organismal metabolic function, we sought to det...

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Autores principales: Gibbs, Jonathan L., Dallon, Blake W., Lewis, Joshua B., Walton, Chase M., Arroyo, Juan A., Reynolds, Paul R., Bikman, Benjamin T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6888061/
https://www.ncbi.nlm.nih.gov/pubmed/31717476
http://dx.doi.org/10.3390/ijms20225598
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author Gibbs, Jonathan L.
Dallon, Blake W.
Lewis, Joshua B.
Walton, Chase M.
Arroyo, Juan A.
Reynolds, Paul R.
Bikman, Benjamin T.
author_facet Gibbs, Jonathan L.
Dallon, Blake W.
Lewis, Joshua B.
Walton, Chase M.
Arroyo, Juan A.
Reynolds, Paul R.
Bikman, Benjamin T.
author_sort Gibbs, Jonathan L.
collection PubMed
description Diesel exhaust particles (DEPs) are known pathogenic pollutants that constitute a significant quantity of air pollution. Given the ubiquitous presence of macrophages throughout the body, including the lungs, as well as their critical role in tissue and organismal metabolic function, we sought to determine the effect of DEP exposure on macrophage mitochondrial function. Following daily DEP exposure in mice, pulmonary macrophages were isolated for mitochondrial analyses, revealing reduced respiration rates and dramatically elevated H(2)O(2) levels. Serum ceramides and inflammatory cytokines were increased. To determine the degree to which the changes in mitochondrial function in macrophages were not dependent on any cross-cell communication, primary pulmonary murine macrophages were used to replicate the DEP exposure in a cell culture model. We observed similar changes as seen in pulmonary macrophages, namely diminished mitochondrial respiration, but increased H(2)O(2) production. Interestingly, when treated with myriocin to inhibit ceramide biosynthesis, these DEP-induced mitochondrial changes were mitigated. Altogether, these data suggest that DEP exposure may compromise macrophage mitochondrial and whole-body function via pathologic alterations in macrophage ceramide metabolism.
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spelling pubmed-68880612019-12-09 Diesel Exhaust Particle Exposure Compromises Alveolar Macrophage Mitochondrial Bioenergetics Gibbs, Jonathan L. Dallon, Blake W. Lewis, Joshua B. Walton, Chase M. Arroyo, Juan A. Reynolds, Paul R. Bikman, Benjamin T. Int J Mol Sci Article Diesel exhaust particles (DEPs) are known pathogenic pollutants that constitute a significant quantity of air pollution. Given the ubiquitous presence of macrophages throughout the body, including the lungs, as well as their critical role in tissue and organismal metabolic function, we sought to determine the effect of DEP exposure on macrophage mitochondrial function. Following daily DEP exposure in mice, pulmonary macrophages were isolated for mitochondrial analyses, revealing reduced respiration rates and dramatically elevated H(2)O(2) levels. Serum ceramides and inflammatory cytokines were increased. To determine the degree to which the changes in mitochondrial function in macrophages were not dependent on any cross-cell communication, primary pulmonary murine macrophages were used to replicate the DEP exposure in a cell culture model. We observed similar changes as seen in pulmonary macrophages, namely diminished mitochondrial respiration, but increased H(2)O(2) production. Interestingly, when treated with myriocin to inhibit ceramide biosynthesis, these DEP-induced mitochondrial changes were mitigated. Altogether, these data suggest that DEP exposure may compromise macrophage mitochondrial and whole-body function via pathologic alterations in macrophage ceramide metabolism. MDPI 2019-11-09 /pmc/articles/PMC6888061/ /pubmed/31717476 http://dx.doi.org/10.3390/ijms20225598 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gibbs, Jonathan L.
Dallon, Blake W.
Lewis, Joshua B.
Walton, Chase M.
Arroyo, Juan A.
Reynolds, Paul R.
Bikman, Benjamin T.
Diesel Exhaust Particle Exposure Compromises Alveolar Macrophage Mitochondrial Bioenergetics
title Diesel Exhaust Particle Exposure Compromises Alveolar Macrophage Mitochondrial Bioenergetics
title_full Diesel Exhaust Particle Exposure Compromises Alveolar Macrophage Mitochondrial Bioenergetics
title_fullStr Diesel Exhaust Particle Exposure Compromises Alveolar Macrophage Mitochondrial Bioenergetics
title_full_unstemmed Diesel Exhaust Particle Exposure Compromises Alveolar Macrophage Mitochondrial Bioenergetics
title_short Diesel Exhaust Particle Exposure Compromises Alveolar Macrophage Mitochondrial Bioenergetics
title_sort diesel exhaust particle exposure compromises alveolar macrophage mitochondrial bioenergetics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6888061/
https://www.ncbi.nlm.nih.gov/pubmed/31717476
http://dx.doi.org/10.3390/ijms20225598
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