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Alcohol-associated intestinal dysbiosis impairs pulmonary host defense against Klebsiella pneumoniae
Chronic alcohol consumption perturbs the normal intestinal microbial communities (dysbiosis). To investigate the relationship between alcohol-mediated dysbiosis and pulmonary host defense we developed a fecal adoptive transfer model, which allows us to investigate the impact of alcohol-induced gut d...
Autores principales: | , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5481032/ https://www.ncbi.nlm.nih.gov/pubmed/28604843 http://dx.doi.org/10.1371/journal.ppat.1006426 |
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author | Samuelson, Derrick R. Shellito, Judd E. Maffei, Vincent J. Tague, Eric D. Campagna, Shawn R. Blanchard, Eugene E. Luo, Meng Taylor, Christopher M. Ronis, Martin J. J. Molina, Patricia E. Welsh, David A. |
author_facet | Samuelson, Derrick R. Shellito, Judd E. Maffei, Vincent J. Tague, Eric D. Campagna, Shawn R. Blanchard, Eugene E. Luo, Meng Taylor, Christopher M. Ronis, Martin J. J. Molina, Patricia E. Welsh, David A. |
author_sort | Samuelson, Derrick R. |
collection | PubMed |
description | Chronic alcohol consumption perturbs the normal intestinal microbial communities (dysbiosis). To investigate the relationship between alcohol-mediated dysbiosis and pulmonary host defense we developed a fecal adoptive transfer model, which allows us to investigate the impact of alcohol-induced gut dysbiosis on host immune response to an infectious challenge at a distal organ, independent of prevailing alcohol use. Male C57BL/6 mice were treated with a cocktail of antibiotics (ampicillin, gentamicin, neomycin, vancomycin, and metronidazole) via daily gavage for two weeks. A separate group of animals was fed a chronic alcohol (or isocaloric dextrose pair-fed controls) liquid diet for 10 days. Microbiota-depleted mice were recolonized with intestinal microbiota from alcohol-fed or pair-fed (control) animals. Following recolonization groups of mice were sacrificed prior to and 48 hrs. post respiratory infection with Klebsiella pneumoniae. Klebsiella lung burden, lung immunology and inflammation, as well as intestinal immunology, inflammation, and barrier damage were examined. Results showed that alcohol-associated susceptibility to K. pneumoniae is, in part, mediated by gut dysbiosis, as alcohol-naïve animals recolonized with a microbiota isolated from alcohol-fed mice had an increased respiratory burden of K. pneumoniae compared to mice recolonized with a control microbiota. The increased susceptibility in alcohol-dysbiosis recolonized animals was associated with an increase in pulmonary inflammatory cytokines, and a decrease in the number of CD4+ and CD8+ T-cells in the lung following Klebsiella infection but an increase in T-cell counts in the intestinal tract following Klebsiella infection, suggesting intestinal T-cell sequestration as a factor in impaired lung host defense. Mice recolonized with an alcohol-dysbiotic microbiota also had increased intestinal damage as measured by increased levels of serum intestinal fatty acid binding protein. Collectively, these results suggest that alterations in the intestinal immune response as a consequence of alcohol-induced dysbiosis contribute to increased host susceptibility to Klebsiella pneumonia. |
format | Online Article Text |
id | pubmed-5481032 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-54810322017-07-06 Alcohol-associated intestinal dysbiosis impairs pulmonary host defense against Klebsiella pneumoniae Samuelson, Derrick R. Shellito, Judd E. Maffei, Vincent J. Tague, Eric D. Campagna, Shawn R. Blanchard, Eugene E. Luo, Meng Taylor, Christopher M. Ronis, Martin J. J. Molina, Patricia E. Welsh, David A. PLoS Pathog Research Article Chronic alcohol consumption perturbs the normal intestinal microbial communities (dysbiosis). To investigate the relationship between alcohol-mediated dysbiosis and pulmonary host defense we developed a fecal adoptive transfer model, which allows us to investigate the impact of alcohol-induced gut dysbiosis on host immune response to an infectious challenge at a distal organ, independent of prevailing alcohol use. Male C57BL/6 mice were treated with a cocktail of antibiotics (ampicillin, gentamicin, neomycin, vancomycin, and metronidazole) via daily gavage for two weeks. A separate group of animals was fed a chronic alcohol (or isocaloric dextrose pair-fed controls) liquid diet for 10 days. Microbiota-depleted mice were recolonized with intestinal microbiota from alcohol-fed or pair-fed (control) animals. Following recolonization groups of mice were sacrificed prior to and 48 hrs. post respiratory infection with Klebsiella pneumoniae. Klebsiella lung burden, lung immunology and inflammation, as well as intestinal immunology, inflammation, and barrier damage were examined. Results showed that alcohol-associated susceptibility to K. pneumoniae is, in part, mediated by gut dysbiosis, as alcohol-naïve animals recolonized with a microbiota isolated from alcohol-fed mice had an increased respiratory burden of K. pneumoniae compared to mice recolonized with a control microbiota. The increased susceptibility in alcohol-dysbiosis recolonized animals was associated with an increase in pulmonary inflammatory cytokines, and a decrease in the number of CD4+ and CD8+ T-cells in the lung following Klebsiella infection but an increase in T-cell counts in the intestinal tract following Klebsiella infection, suggesting intestinal T-cell sequestration as a factor in impaired lung host defense. Mice recolonized with an alcohol-dysbiotic microbiota also had increased intestinal damage as measured by increased levels of serum intestinal fatty acid binding protein. Collectively, these results suggest that alterations in the intestinal immune response as a consequence of alcohol-induced dysbiosis contribute to increased host susceptibility to Klebsiella pneumonia. Public Library of Science 2017-06-12 /pmc/articles/PMC5481032/ /pubmed/28604843 http://dx.doi.org/10.1371/journal.ppat.1006426 Text en © 2017 Samuelson 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 Samuelson, Derrick R. Shellito, Judd E. Maffei, Vincent J. Tague, Eric D. Campagna, Shawn R. Blanchard, Eugene E. Luo, Meng Taylor, Christopher M. Ronis, Martin J. J. Molina, Patricia E. Welsh, David A. Alcohol-associated intestinal dysbiosis impairs pulmonary host defense against Klebsiella pneumoniae |
title | Alcohol-associated intestinal dysbiosis impairs pulmonary host defense against Klebsiella pneumoniae |
title_full | Alcohol-associated intestinal dysbiosis impairs pulmonary host defense against Klebsiella pneumoniae |
title_fullStr | Alcohol-associated intestinal dysbiosis impairs pulmonary host defense against Klebsiella pneumoniae |
title_full_unstemmed | Alcohol-associated intestinal dysbiosis impairs pulmonary host defense against Klebsiella pneumoniae |
title_short | Alcohol-associated intestinal dysbiosis impairs pulmonary host defense against Klebsiella pneumoniae |
title_sort | alcohol-associated intestinal dysbiosis impairs pulmonary host defense against klebsiella pneumoniae |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5481032/ https://www.ncbi.nlm.nih.gov/pubmed/28604843 http://dx.doi.org/10.1371/journal.ppat.1006426 |
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