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Metabolic Profiling as Well as Stable Isotope Assisted Metabolic and Proteomic Analysis of RAW 264.7 Macrophages Exposed to Ship Engine Aerosol Emissions: Different Effects of Heavy Fuel Oil and Refined Diesel Fuel
Exposure to air pollution resulting from fossil fuel combustion has been linked to multiple short-term and long term health effects. In a previous study, exposure of lung epithelial cells to engine exhaust from heavy fuel oil (HFO) and diesel fuel (DF), two of the main fuels used in marine engines,...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4922672/ https://www.ncbi.nlm.nih.gov/pubmed/27348622 http://dx.doi.org/10.1371/journal.pone.0157964 |
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author | Sapcariu, Sean C. Kanashova, Tamara Dilger, Marco Diabaté, Silvia Oeder, Sebastian Passig, Johannes Radischat, Christian Buters, Jeroen Sippula, Olli Streibel, Thorsten Paur, Hanns-Rudolf Schlager, Christoph Mülhopt, Sonja Stengel, Benjamin Rabe, Rom Harndorf, Horst Krebs, Tobias Karg, Erwin Gröger, Thomas Weiss, Carsten Dittmar, Gunnar Hiller, Karsten Zimmermann, Ralf |
author_facet | Sapcariu, Sean C. Kanashova, Tamara Dilger, Marco Diabaté, Silvia Oeder, Sebastian Passig, Johannes Radischat, Christian Buters, Jeroen Sippula, Olli Streibel, Thorsten Paur, Hanns-Rudolf Schlager, Christoph Mülhopt, Sonja Stengel, Benjamin Rabe, Rom Harndorf, Horst Krebs, Tobias Karg, Erwin Gröger, Thomas Weiss, Carsten Dittmar, Gunnar Hiller, Karsten Zimmermann, Ralf |
author_sort | Sapcariu, Sean C. |
collection | PubMed |
description | Exposure to air pollution resulting from fossil fuel combustion has been linked to multiple short-term and long term health effects. In a previous study, exposure of lung epithelial cells to engine exhaust from heavy fuel oil (HFO) and diesel fuel (DF), two of the main fuels used in marine engines, led to an increased regulation of several pathways associated with adverse cellular effects, including pro-inflammatory pathways. In addition, DF exhaust exposure was shown to have a wider response on multiple cellular regulatory levels compared to HFO emissions, suggesting a potentially higher toxicity of DF emissions over HFO. In order to further understand these effects, as well as to validate these findings in another cell line, we investigated macrophages under the same conditions as a more inflammation-relevant model. An air-liquid interface aerosol exposure system was used to provide a more biologically relevant exposure system compared to submerged experiments, with cells exposed to either the complete aerosol (particle and gas phase), or the gas phase only (with particles filtered out). Data from cytotoxicity assays were integrated with metabolomics and proteomics analyses, including stable isotope-assisted metabolomics, in order to uncover pathways affected by combustion aerosol exposure in macrophages. Through this approach, we determined differing phenotypic effects associated with the different components of aerosol. The particle phase of diluted combustion aerosols was found to induce increased cell death in macrophages, while the gas phase was found more to affect the metabolic profile. In particular, a higher cytotoxicity of DF aerosol emission was observed in relation to the HFO aerosol. Furthermore, macrophage exposure to the gas phase of HFO leads to an induction of a pro-inflammatory metabolic and proteomic phenotype. These results validate the effects found in lung epithelial cells, confirming the role of inflammation and cellular stress in the response to combustion aerosols. |
format | Online Article Text |
id | pubmed-4922672 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-49226722016-07-18 Metabolic Profiling as Well as Stable Isotope Assisted Metabolic and Proteomic Analysis of RAW 264.7 Macrophages Exposed to Ship Engine Aerosol Emissions: Different Effects of Heavy Fuel Oil and Refined Diesel Fuel Sapcariu, Sean C. Kanashova, Tamara Dilger, Marco Diabaté, Silvia Oeder, Sebastian Passig, Johannes Radischat, Christian Buters, Jeroen Sippula, Olli Streibel, Thorsten Paur, Hanns-Rudolf Schlager, Christoph Mülhopt, Sonja Stengel, Benjamin Rabe, Rom Harndorf, Horst Krebs, Tobias Karg, Erwin Gröger, Thomas Weiss, Carsten Dittmar, Gunnar Hiller, Karsten Zimmermann, Ralf PLoS One Research Article Exposure to air pollution resulting from fossil fuel combustion has been linked to multiple short-term and long term health effects. In a previous study, exposure of lung epithelial cells to engine exhaust from heavy fuel oil (HFO) and diesel fuel (DF), two of the main fuels used in marine engines, led to an increased regulation of several pathways associated with adverse cellular effects, including pro-inflammatory pathways. In addition, DF exhaust exposure was shown to have a wider response on multiple cellular regulatory levels compared to HFO emissions, suggesting a potentially higher toxicity of DF emissions over HFO. In order to further understand these effects, as well as to validate these findings in another cell line, we investigated macrophages under the same conditions as a more inflammation-relevant model. An air-liquid interface aerosol exposure system was used to provide a more biologically relevant exposure system compared to submerged experiments, with cells exposed to either the complete aerosol (particle and gas phase), or the gas phase only (with particles filtered out). Data from cytotoxicity assays were integrated with metabolomics and proteomics analyses, including stable isotope-assisted metabolomics, in order to uncover pathways affected by combustion aerosol exposure in macrophages. Through this approach, we determined differing phenotypic effects associated with the different components of aerosol. The particle phase of diluted combustion aerosols was found to induce increased cell death in macrophages, while the gas phase was found more to affect the metabolic profile. In particular, a higher cytotoxicity of DF aerosol emission was observed in relation to the HFO aerosol. Furthermore, macrophage exposure to the gas phase of HFO leads to an induction of a pro-inflammatory metabolic and proteomic phenotype. These results validate the effects found in lung epithelial cells, confirming the role of inflammation and cellular stress in the response to combustion aerosols. Public Library of Science 2016-06-27 /pmc/articles/PMC4922672/ /pubmed/27348622 http://dx.doi.org/10.1371/journal.pone.0157964 Text en © 2016 Sapcariu et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Sapcariu, Sean C. Kanashova, Tamara Dilger, Marco Diabaté, Silvia Oeder, Sebastian Passig, Johannes Radischat, Christian Buters, Jeroen Sippula, Olli Streibel, Thorsten Paur, Hanns-Rudolf Schlager, Christoph Mülhopt, Sonja Stengel, Benjamin Rabe, Rom Harndorf, Horst Krebs, Tobias Karg, Erwin Gröger, Thomas Weiss, Carsten Dittmar, Gunnar Hiller, Karsten Zimmermann, Ralf Metabolic Profiling as Well as Stable Isotope Assisted Metabolic and Proteomic Analysis of RAW 264.7 Macrophages Exposed to Ship Engine Aerosol Emissions: Different Effects of Heavy Fuel Oil and Refined Diesel Fuel |
title | Metabolic Profiling as Well as Stable Isotope Assisted Metabolic and Proteomic Analysis of RAW 264.7 Macrophages Exposed to Ship Engine Aerosol Emissions: Different Effects of Heavy Fuel Oil and Refined Diesel Fuel |
title_full | Metabolic Profiling as Well as Stable Isotope Assisted Metabolic and Proteomic Analysis of RAW 264.7 Macrophages Exposed to Ship Engine Aerosol Emissions: Different Effects of Heavy Fuel Oil and Refined Diesel Fuel |
title_fullStr | Metabolic Profiling as Well as Stable Isotope Assisted Metabolic and Proteomic Analysis of RAW 264.7 Macrophages Exposed to Ship Engine Aerosol Emissions: Different Effects of Heavy Fuel Oil and Refined Diesel Fuel |
title_full_unstemmed | Metabolic Profiling as Well as Stable Isotope Assisted Metabolic and Proteomic Analysis of RAW 264.7 Macrophages Exposed to Ship Engine Aerosol Emissions: Different Effects of Heavy Fuel Oil and Refined Diesel Fuel |
title_short | Metabolic Profiling as Well as Stable Isotope Assisted Metabolic and Proteomic Analysis of RAW 264.7 Macrophages Exposed to Ship Engine Aerosol Emissions: Different Effects of Heavy Fuel Oil and Refined Diesel Fuel |
title_sort | metabolic profiling as well as stable isotope assisted metabolic and proteomic analysis of raw 264.7 macrophages exposed to ship engine aerosol emissions: different effects of heavy fuel oil and refined diesel fuel |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4922672/ https://www.ncbi.nlm.nih.gov/pubmed/27348622 http://dx.doi.org/10.1371/journal.pone.0157964 |
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