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The Microbiome Activates CD4 T-cell–mediated Immunity to Compensate for Increased Intestinal Permeability

BACKGROUND & AIMS: Despite a prominent association, chronic intestinal barrier loss is insufficient to induce disease in human subjects or experimental animals. We hypothesized that compensatory mucosal immune activation might protect individuals with increased intestinal permeability from disea...

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Autores principales: Edelblum, Karen L., Sharon, Gil, Singh, Gurminder, Odenwald, Matthew A., Sailer, Anne, Cao, Severine, Ravens, Sarina, Thomsen, Irene, El Bissati, Kamal, McLeod, Rima, Dong, Chen, Gurbuxani, Sandeep, Prinz, Immo, Mazmanian, Sarkis K., Turner, Jerrold R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5540699/
https://www.ncbi.nlm.nih.gov/pubmed/28795125
http://dx.doi.org/10.1016/j.jcmgh.2017.06.001
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author Edelblum, Karen L.
Sharon, Gil
Singh, Gurminder
Odenwald, Matthew A.
Sailer, Anne
Cao, Severine
Ravens, Sarina
Thomsen, Irene
El Bissati, Kamal
McLeod, Rima
Dong, Chen
Gurbuxani, Sandeep
Prinz, Immo
Mazmanian, Sarkis K.
Turner, Jerrold R.
author_facet Edelblum, Karen L.
Sharon, Gil
Singh, Gurminder
Odenwald, Matthew A.
Sailer, Anne
Cao, Severine
Ravens, Sarina
Thomsen, Irene
El Bissati, Kamal
McLeod, Rima
Dong, Chen
Gurbuxani, Sandeep
Prinz, Immo
Mazmanian, Sarkis K.
Turner, Jerrold R.
author_sort Edelblum, Karen L.
collection PubMed
description BACKGROUND & AIMS: Despite a prominent association, chronic intestinal barrier loss is insufficient to induce disease in human subjects or experimental animals. We hypothesized that compensatory mucosal immune activation might protect individuals with increased intestinal permeability from disease. We used a model in which intestinal barrier loss is triggered by intestinal epithelial-specific expression of constitutively active myosin light chain kinase (CA-MLCK). Here we asked whether constitutive tight junction barrier loss impacts susceptibility to enteric pathogens. METHODS: Acute or chronic Toxoplasma gondii or Salmonella typhimurium infection was assessed in CA-MLCK transgenic or wild-type mice. Germ-free mice or those lacking specific immune cell populations were used to investigate the effect of microbial-activated immunity on pathogen translocation in the context of increased intestinal permeability. RESULTS: Acute T gondii and S typhimurium translocation across the epithelial barrier was reduced in CA-MLCK mice. This protection was due to enhanced mucosal immune activation that required CD4(+) T cells and interleukin 17A but not immunoglobulin A. The protective mucosal immune activation in CA-MLCK mice depended on segmented filamentous bacteria (SFB), because protection against early S typhimurium invasion was lost in germ-free CA-MLCK mice but could be restored by conventionalization with SFB-containing, not SFB-deficient, microbiota. In contrast, chronic S typhimurium infection was more severe in CA-MLCK mice, suggesting that despite activation of protective mucosal immunity, barrier defects ultimately result in enhanced disease progression. CONCLUSIONS: Increased epithelial tight junction permeability synergizes with commensal bacteria to promote intestinal CD4(+) T-cell expansion and interleukin 17A production that limits enteric pathogen invasion.
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spelling pubmed-55406992017-08-09 The Microbiome Activates CD4 T-cell–mediated Immunity to Compensate for Increased Intestinal Permeability Edelblum, Karen L. Sharon, Gil Singh, Gurminder Odenwald, Matthew A. Sailer, Anne Cao, Severine Ravens, Sarina Thomsen, Irene El Bissati, Kamal McLeod, Rima Dong, Chen Gurbuxani, Sandeep Prinz, Immo Mazmanian, Sarkis K. Turner, Jerrold R. Cell Mol Gastroenterol Hepatol Original Research BACKGROUND & AIMS: Despite a prominent association, chronic intestinal barrier loss is insufficient to induce disease in human subjects or experimental animals. We hypothesized that compensatory mucosal immune activation might protect individuals with increased intestinal permeability from disease. We used a model in which intestinal barrier loss is triggered by intestinal epithelial-specific expression of constitutively active myosin light chain kinase (CA-MLCK). Here we asked whether constitutive tight junction barrier loss impacts susceptibility to enteric pathogens. METHODS: Acute or chronic Toxoplasma gondii or Salmonella typhimurium infection was assessed in CA-MLCK transgenic or wild-type mice. Germ-free mice or those lacking specific immune cell populations were used to investigate the effect of microbial-activated immunity on pathogen translocation in the context of increased intestinal permeability. RESULTS: Acute T gondii and S typhimurium translocation across the epithelial barrier was reduced in CA-MLCK mice. This protection was due to enhanced mucosal immune activation that required CD4(+) T cells and interleukin 17A but not immunoglobulin A. The protective mucosal immune activation in CA-MLCK mice depended on segmented filamentous bacteria (SFB), because protection against early S typhimurium invasion was lost in germ-free CA-MLCK mice but could be restored by conventionalization with SFB-containing, not SFB-deficient, microbiota. In contrast, chronic S typhimurium infection was more severe in CA-MLCK mice, suggesting that despite activation of protective mucosal immunity, barrier defects ultimately result in enhanced disease progression. CONCLUSIONS: Increased epithelial tight junction permeability synergizes with commensal bacteria to promote intestinal CD4(+) T-cell expansion and interleukin 17A production that limits enteric pathogen invasion. Elsevier 2017-06-10 /pmc/articles/PMC5540699/ /pubmed/28795125 http://dx.doi.org/10.1016/j.jcmgh.2017.06.001 Text en © 2017 The Authors 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 Original Research
Edelblum, Karen L.
Sharon, Gil
Singh, Gurminder
Odenwald, Matthew A.
Sailer, Anne
Cao, Severine
Ravens, Sarina
Thomsen, Irene
El Bissati, Kamal
McLeod, Rima
Dong, Chen
Gurbuxani, Sandeep
Prinz, Immo
Mazmanian, Sarkis K.
Turner, Jerrold R.
The Microbiome Activates CD4 T-cell–mediated Immunity to Compensate for Increased Intestinal Permeability
title The Microbiome Activates CD4 T-cell–mediated Immunity to Compensate for Increased Intestinal Permeability
title_full The Microbiome Activates CD4 T-cell–mediated Immunity to Compensate for Increased Intestinal Permeability
title_fullStr The Microbiome Activates CD4 T-cell–mediated Immunity to Compensate for Increased Intestinal Permeability
title_full_unstemmed The Microbiome Activates CD4 T-cell–mediated Immunity to Compensate for Increased Intestinal Permeability
title_short The Microbiome Activates CD4 T-cell–mediated Immunity to Compensate for Increased Intestinal Permeability
title_sort microbiome activates cd4 t-cell–mediated immunity to compensate for increased intestinal permeability
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5540699/
https://www.ncbi.nlm.nih.gov/pubmed/28795125
http://dx.doi.org/10.1016/j.jcmgh.2017.06.001
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