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The pulmonary inflammatory response to multiwalled carbon nanotubes is influenced by gender and glutathione synthesis

Inhalation of multiwalled carbon nanotubes (MWCNTs) during their manufacture or incorporation into various commercial products may cause lung inflammation, fibrosis, and oxidative stress in exposed workers. Some workers may be more susceptible to these effects because of differences in their ability...

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Autores principales: Cartwright, Megan M., Schmuck, Stefanie C., Corredor, Charlie, Wang, Bingbing, Scoville, David K., Chisholm, Claire R., Wilkerson, Hui-Wen, Afsharinejad, Zahra, Bammler, Theodor K., Posner, Jonathan D., Shutthanandan, Vaithiyalingam, Baer, Donald R., Mitra, Somenath, Altemeier, William A., Kavanagh, Terrance J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5013253/
https://www.ncbi.nlm.nih.gov/pubmed/27596734
http://dx.doi.org/10.1016/j.redox.2016.08.009
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author Cartwright, Megan M.
Schmuck, Stefanie C.
Corredor, Charlie
Wang, Bingbing
Scoville, David K.
Chisholm, Claire R.
Wilkerson, Hui-Wen
Afsharinejad, Zahra
Bammler, Theodor K.
Posner, Jonathan D.
Shutthanandan, Vaithiyalingam
Baer, Donald R.
Mitra, Somenath
Altemeier, William A.
Kavanagh, Terrance J.
author_facet Cartwright, Megan M.
Schmuck, Stefanie C.
Corredor, Charlie
Wang, Bingbing
Scoville, David K.
Chisholm, Claire R.
Wilkerson, Hui-Wen
Afsharinejad, Zahra
Bammler, Theodor K.
Posner, Jonathan D.
Shutthanandan, Vaithiyalingam
Baer, Donald R.
Mitra, Somenath
Altemeier, William A.
Kavanagh, Terrance J.
author_sort Cartwright, Megan M.
collection PubMed
description Inhalation of multiwalled carbon nanotubes (MWCNTs) during their manufacture or incorporation into various commercial products may cause lung inflammation, fibrosis, and oxidative stress in exposed workers. Some workers may be more susceptible to these effects because of differences in their ability to synthesize the major antioxidant and immune system modulator glutathione (GSH). Accordingly, in this study we examined the influence of GSH synthesis and gender on MWCNT-induced lung inflammation in C57BL/6 mice. GSH synthesis was impaired through genetic manipulation of Gclm, the modifier subunit of glutamate cysteine ligase, the rate-limiting enzyme in GSH synthesis. Twenty-four hours after aspirating 25 µg of MWCNTs, all male mice developed neutrophilia in their lungs, regardless of Gclm genotype. However, female mice with moderate (Gclm heterozygous) and severe (Gclm null) GSH deficiencies developed significantly less neutrophilia. We found no indications of MWCNT-induced oxidative stress as reflected in the GSH content of lung tissue and epithelial lining fluid, 3-nitrotyrosine formation, or altered mRNA or protein expression of several redox-responsive enzymes. Our results indicate that GSH-deficient female mice are rendered uniquely susceptible to an attenuated neutrophil response. If the same effects occur in humans, GSH-deficient women manufacturing MWCNTs may be at greater risk for impaired neutrophil-dependent clearance of MWCNTs from the lung. In contrast, men may have effective neutrophil-dependent clearance, but may be at risk for lung neutrophilia regardless of their GSH levels.
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spelling pubmed-50132532016-09-14 The pulmonary inflammatory response to multiwalled carbon nanotubes is influenced by gender and glutathione synthesis Cartwright, Megan M. Schmuck, Stefanie C. Corredor, Charlie Wang, Bingbing Scoville, David K. Chisholm, Claire R. Wilkerson, Hui-Wen Afsharinejad, Zahra Bammler, Theodor K. Posner, Jonathan D. Shutthanandan, Vaithiyalingam Baer, Donald R. Mitra, Somenath Altemeier, William A. Kavanagh, Terrance J. Redox Biol Research Paper Inhalation of multiwalled carbon nanotubes (MWCNTs) during their manufacture or incorporation into various commercial products may cause lung inflammation, fibrosis, and oxidative stress in exposed workers. Some workers may be more susceptible to these effects because of differences in their ability to synthesize the major antioxidant and immune system modulator glutathione (GSH). Accordingly, in this study we examined the influence of GSH synthesis and gender on MWCNT-induced lung inflammation in C57BL/6 mice. GSH synthesis was impaired through genetic manipulation of Gclm, the modifier subunit of glutamate cysteine ligase, the rate-limiting enzyme in GSH synthesis. Twenty-four hours after aspirating 25 µg of MWCNTs, all male mice developed neutrophilia in their lungs, regardless of Gclm genotype. However, female mice with moderate (Gclm heterozygous) and severe (Gclm null) GSH deficiencies developed significantly less neutrophilia. We found no indications of MWCNT-induced oxidative stress as reflected in the GSH content of lung tissue and epithelial lining fluid, 3-nitrotyrosine formation, or altered mRNA or protein expression of several redox-responsive enzymes. Our results indicate that GSH-deficient female mice are rendered uniquely susceptible to an attenuated neutrophil response. If the same effects occur in humans, GSH-deficient women manufacturing MWCNTs may be at greater risk for impaired neutrophil-dependent clearance of MWCNTs from the lung. In contrast, men may have effective neutrophil-dependent clearance, but may be at risk for lung neutrophilia regardless of their GSH levels. Elsevier 2016-08-21 /pmc/articles/PMC5013253/ /pubmed/27596734 http://dx.doi.org/10.1016/j.redox.2016.08.009 Text en © 2016 Published by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Cartwright, Megan M.
Schmuck, Stefanie C.
Corredor, Charlie
Wang, Bingbing
Scoville, David K.
Chisholm, Claire R.
Wilkerson, Hui-Wen
Afsharinejad, Zahra
Bammler, Theodor K.
Posner, Jonathan D.
Shutthanandan, Vaithiyalingam
Baer, Donald R.
Mitra, Somenath
Altemeier, William A.
Kavanagh, Terrance J.
The pulmonary inflammatory response to multiwalled carbon nanotubes is influenced by gender and glutathione synthesis
title The pulmonary inflammatory response to multiwalled carbon nanotubes is influenced by gender and glutathione synthesis
title_full The pulmonary inflammatory response to multiwalled carbon nanotubes is influenced by gender and glutathione synthesis
title_fullStr The pulmonary inflammatory response to multiwalled carbon nanotubes is influenced by gender and glutathione synthesis
title_full_unstemmed The pulmonary inflammatory response to multiwalled carbon nanotubes is influenced by gender and glutathione synthesis
title_short The pulmonary inflammatory response to multiwalled carbon nanotubes is influenced by gender and glutathione synthesis
title_sort pulmonary inflammatory response to multiwalled carbon nanotubes is influenced by gender and glutathione synthesis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5013253/
https://www.ncbi.nlm.nih.gov/pubmed/27596734
http://dx.doi.org/10.1016/j.redox.2016.08.009
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