The role of PPARγ in carbon nanotube-elicited granulomatous lung inflammation

<p>Abstract</p> <p>Background</p> <p>Although granulomatous inflammation is a central feature of many disease processes, cellular mechanisms of granuloma formation and persistence are poorly understood. Carbon nanoparticles, which can be products of manufacture or the e...

Full description

Bibliographic Details
Main Authors: Huizar Isham, Malur Anagha, Patel Janki, McPeek Matthew, Dobbs Larry, Wingard Christopher, Barna Barbara P, Thomassen Mary Jane
Format: Article
Language:English
Published: BMC 2013-01-01
Series:Respiratory Research
Online Access:http://respiratory-research.com/content/14/1/7
id doaj-79593257a97a45a7939f1034cfaa67db
record_format Article
spelling doaj-79593257a97a45a7939f1034cfaa67db2020-11-25T00:21:07ZengBMCRespiratory Research1465-99212013-01-01141710.1186/1465-9921-14-7The role of PPARγ in carbon nanotube-elicited granulomatous lung inflammationHuizar IshamMalur AnaghaPatel JankiMcPeek MatthewDobbs LarryWingard ChristopherBarna Barbara PThomassen Mary Jane<p>Abstract</p> <p>Background</p> <p>Although granulomatous inflammation is a central feature of many disease processes, cellular mechanisms of granuloma formation and persistence are poorly understood. Carbon nanoparticles, which can be products of manufacture or the environment, have been associated with granulomatous disease. This paper utilizes a previously described carbon nanoparticle granuloma model to address the issue of whether peroxisome proliferator-activated receptor gamma (PPARγ), a nuclear transcription factor and negative regulator of inflammatory cytokines might play a role in granulomatous lung disease. PPARγ is constitutively expressed in alveolar macrophages from healthy individuals but is depressed in alveolar macrophages of patients with sarcoidosis, a prototypical granulomatous disease. Our previous study of macrophage-specific PPARγ KO mice had revealed an intrinsically inflammatory pulmonary environment with an elevated pro-inflammatory cytokines profile as compared to wild-type mice. Based on such observations we hypothesized that PPARγ expression would be repressed in alveolar macrophages from animals bearing granulomas induced by MWCNT instillation.</p> <p>Methods</p> <p>Wild-type C57Bl/6 and macrophage-specific PPARγ KO mice received oropharyngeal instillations of multiwall carbon nanotubes (MWCNT) (100 μg). Bronchoalveolar lavage (BAL) cells, BAL fluids, and lung tissues were obtained 60 days post-instillation for analysis of granuloma histology and pro-inflammatory cytokines (osteopontin, CCL2, and interferon gamma [IFN-γ] mRNA and protein expression.</p> <p>Results</p> <p>In wild-type mice, alveolar macrophage PPARγ expression and activity were significantly reduced in granuloma-bearing animals 60 days after MWCNT instillation. In macrophage-specific PPARγ KO mice, granuloma formation was more extensive than in wild-type at 60 days after MWCNT instillation. PPARγ KO mice also demonstrated elevated pro-inflammatory cytokine expression in lung tissue, laser-microdissected lung granulomas, and BAL cells/fluids, at 60 days post MWCNT exposure.</p> <p>Conclusions</p> <p>Overall, data indicate that PPARγ deficiency promotes inflammation and granuloma formation, suggesting that PPARγ functions as a negative regulator of chronic granulomatous inflammation.</p> http://respiratory-research.com/content/14/1/7
collection DOAJ
language English
format Article
sources DOAJ
author Huizar Isham
Malur Anagha
Patel Janki
McPeek Matthew
Dobbs Larry
Wingard Christopher
Barna Barbara P
Thomassen Mary Jane
spellingShingle Huizar Isham
Malur Anagha
Patel Janki
McPeek Matthew
Dobbs Larry
Wingard Christopher
Barna Barbara P
Thomassen Mary Jane
The role of PPARγ in carbon nanotube-elicited granulomatous lung inflammation
Respiratory Research
author_facet Huizar Isham
Malur Anagha
Patel Janki
McPeek Matthew
Dobbs Larry
Wingard Christopher
Barna Barbara P
Thomassen Mary Jane
author_sort Huizar Isham
title The role of PPARγ in carbon nanotube-elicited granulomatous lung inflammation
title_short The role of PPARγ in carbon nanotube-elicited granulomatous lung inflammation
title_full The role of PPARγ in carbon nanotube-elicited granulomatous lung inflammation
title_fullStr The role of PPARγ in carbon nanotube-elicited granulomatous lung inflammation
title_full_unstemmed The role of PPARγ in carbon nanotube-elicited granulomatous lung inflammation
title_sort role of pparγ in carbon nanotube-elicited granulomatous lung inflammation
publisher BMC
series Respiratory Research
issn 1465-9921
publishDate 2013-01-01
description <p>Abstract</p> <p>Background</p> <p>Although granulomatous inflammation is a central feature of many disease processes, cellular mechanisms of granuloma formation and persistence are poorly understood. Carbon nanoparticles, which can be products of manufacture or the environment, have been associated with granulomatous disease. This paper utilizes a previously described carbon nanoparticle granuloma model to address the issue of whether peroxisome proliferator-activated receptor gamma (PPARγ), a nuclear transcription factor and negative regulator of inflammatory cytokines might play a role in granulomatous lung disease. PPARγ is constitutively expressed in alveolar macrophages from healthy individuals but is depressed in alveolar macrophages of patients with sarcoidosis, a prototypical granulomatous disease. Our previous study of macrophage-specific PPARγ KO mice had revealed an intrinsically inflammatory pulmonary environment with an elevated pro-inflammatory cytokines profile as compared to wild-type mice. Based on such observations we hypothesized that PPARγ expression would be repressed in alveolar macrophages from animals bearing granulomas induced by MWCNT instillation.</p> <p>Methods</p> <p>Wild-type C57Bl/6 and macrophage-specific PPARγ KO mice received oropharyngeal instillations of multiwall carbon nanotubes (MWCNT) (100 μg). Bronchoalveolar lavage (BAL) cells, BAL fluids, and lung tissues were obtained 60 days post-instillation for analysis of granuloma histology and pro-inflammatory cytokines (osteopontin, CCL2, and interferon gamma [IFN-γ] mRNA and protein expression.</p> <p>Results</p> <p>In wild-type mice, alveolar macrophage PPARγ expression and activity were significantly reduced in granuloma-bearing animals 60 days after MWCNT instillation. In macrophage-specific PPARγ KO mice, granuloma formation was more extensive than in wild-type at 60 days after MWCNT instillation. PPARγ KO mice also demonstrated elevated pro-inflammatory cytokine expression in lung tissue, laser-microdissected lung granulomas, and BAL cells/fluids, at 60 days post MWCNT exposure.</p> <p>Conclusions</p> <p>Overall, data indicate that PPARγ deficiency promotes inflammation and granuloma formation, suggesting that PPARγ functions as a negative regulator of chronic granulomatous inflammation.</p>
url http://respiratory-research.com/content/14/1/7
work_keys_str_mv AT huizarisham theroleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT maluranagha theroleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT pateljanki theroleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT mcpeekmatthew theroleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT dobbslarry theroleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT wingardchristopher theroleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT barnabarbarap theroleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT thomassenmaryjane theroleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT huizarisham roleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT maluranagha roleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT pateljanki roleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT mcpeekmatthew roleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT dobbslarry roleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT wingardchristopher roleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT barnabarbarap roleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
AT thomassenmaryjane roleofppargincarbonnanotubeelicitedgranulomatouslunginflammation
_version_ 1725363853126008832