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Dynamic Changes in Mucus Thickness and Ion Secretion during Citrobacter rodentium Infection and Clearance

Citrobacter rodentium is an attaching and effacing pathogen used as a murine model for enteropathogenic Escherichia coli. The mucus layers are a complex matrix of molecules, and mucus swelling, hydration and permeability are affected by many factors, including ion composition. Here, we used the C. r...

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Autores principales: Gustafsson, Jenny K., Navabi, Nazanin, Rodriguez-Piñeiro, Ana M., Alomran, Ala H. A., Premaratne, Pushpa, Fernandez, Harvey R., Banerjee, Debashish, Sjövall, Henrik, Hansson, Gunnar C., Lindén, Sara K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3875541/
https://www.ncbi.nlm.nih.gov/pubmed/24386378
http://dx.doi.org/10.1371/journal.pone.0084430
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author Gustafsson, Jenny K.
Navabi, Nazanin
Rodriguez-Piñeiro, Ana M.
Alomran, Ala H. A.
Premaratne, Pushpa
Fernandez, Harvey R.
Banerjee, Debashish
Sjövall, Henrik
Hansson, Gunnar C.
Lindén, Sara K.
author_facet Gustafsson, Jenny K.
Navabi, Nazanin
Rodriguez-Piñeiro, Ana M.
Alomran, Ala H. A.
Premaratne, Pushpa
Fernandez, Harvey R.
Banerjee, Debashish
Sjövall, Henrik
Hansson, Gunnar C.
Lindén, Sara K.
author_sort Gustafsson, Jenny K.
collection PubMed
description Citrobacter rodentium is an attaching and effacing pathogen used as a murine model for enteropathogenic Escherichia coli. The mucus layers are a complex matrix of molecules, and mucus swelling, hydration and permeability are affected by many factors, including ion composition. Here, we used the C. rodentium model to investigate mucus dynamics during infection. By measuring the mucus layer thickness in tissue explants during infection, we demonstrated that the thickness changes dynamically during the course of infection and that its thickest stage coincides with the start of a decrease of bacterial density at day 14 after infection. Although quantitative PCR analysis demonstrated that mucin mRNA increases during early infection, the increased mucus layer thickness late in infection was not explained by increased mRNA levels. Proteomic analysis of mucus did not demonstrate the appearance of additional mucins, but revealed an increased number of proteins involved in defense responses. Ussing chamber-based electrical measurements demonstrated that ion secretion was dynamically altered during the infection phases. Furthermore, the bicarbonate ion channel Bestrophin-2 mRNA nominally increased, whereas the Cftr mRNA decreased during the late infection clearance phase. Microscopy of Muc2 immunostained tissues suggested that the inner striated mucus layer present in the healthy colon was scarce during the time point of most severe infection (10 days post infection), but then expanded, albeit with a less structured appearance, during the expulsion phase. Together with previously published literature, the data implies a model for clearance where a change in secretion allows reformation of the mucus layer, displacing the pathogen to the outer mucus layer, where it is then outcompeted by the returning commensal flora. In conclusion, mucus and ion secretion are dynamically altered during the C. rodentium infection cycle.
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spelling pubmed-38755412014-01-02 Dynamic Changes in Mucus Thickness and Ion Secretion during Citrobacter rodentium Infection and Clearance Gustafsson, Jenny K. Navabi, Nazanin Rodriguez-Piñeiro, Ana M. Alomran, Ala H. A. Premaratne, Pushpa Fernandez, Harvey R. Banerjee, Debashish Sjövall, Henrik Hansson, Gunnar C. Lindén, Sara K. PLoS One Research Article Citrobacter rodentium is an attaching and effacing pathogen used as a murine model for enteropathogenic Escherichia coli. The mucus layers are a complex matrix of molecules, and mucus swelling, hydration and permeability are affected by many factors, including ion composition. Here, we used the C. rodentium model to investigate mucus dynamics during infection. By measuring the mucus layer thickness in tissue explants during infection, we demonstrated that the thickness changes dynamically during the course of infection and that its thickest stage coincides with the start of a decrease of bacterial density at day 14 after infection. Although quantitative PCR analysis demonstrated that mucin mRNA increases during early infection, the increased mucus layer thickness late in infection was not explained by increased mRNA levels. Proteomic analysis of mucus did not demonstrate the appearance of additional mucins, but revealed an increased number of proteins involved in defense responses. Ussing chamber-based electrical measurements demonstrated that ion secretion was dynamically altered during the infection phases. Furthermore, the bicarbonate ion channel Bestrophin-2 mRNA nominally increased, whereas the Cftr mRNA decreased during the late infection clearance phase. Microscopy of Muc2 immunostained tissues suggested that the inner striated mucus layer present in the healthy colon was scarce during the time point of most severe infection (10 days post infection), but then expanded, albeit with a less structured appearance, during the expulsion phase. Together with previously published literature, the data implies a model for clearance where a change in secretion allows reformation of the mucus layer, displacing the pathogen to the outer mucus layer, where it is then outcompeted by the returning commensal flora. In conclusion, mucus and ion secretion are dynamically altered during the C. rodentium infection cycle. Public Library of Science 2013-12-30 /pmc/articles/PMC3875541/ /pubmed/24386378 http://dx.doi.org/10.1371/journal.pone.0084430 Text en © 2013 Gustafsson 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Gustafsson, Jenny K.
Navabi, Nazanin
Rodriguez-Piñeiro, Ana M.
Alomran, Ala H. A.
Premaratne, Pushpa
Fernandez, Harvey R.
Banerjee, Debashish
Sjövall, Henrik
Hansson, Gunnar C.
Lindén, Sara K.
Dynamic Changes in Mucus Thickness and Ion Secretion during Citrobacter rodentium Infection and Clearance
title Dynamic Changes in Mucus Thickness and Ion Secretion during Citrobacter rodentium Infection and Clearance
title_full Dynamic Changes in Mucus Thickness and Ion Secretion during Citrobacter rodentium Infection and Clearance
title_fullStr Dynamic Changes in Mucus Thickness and Ion Secretion during Citrobacter rodentium Infection and Clearance
title_full_unstemmed Dynamic Changes in Mucus Thickness and Ion Secretion during Citrobacter rodentium Infection and Clearance
title_short Dynamic Changes in Mucus Thickness and Ion Secretion during Citrobacter rodentium Infection and Clearance
title_sort dynamic changes in mucus thickness and ion secretion during citrobacter rodentium infection and clearance
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3875541/
https://www.ncbi.nlm.nih.gov/pubmed/24386378
http://dx.doi.org/10.1371/journal.pone.0084430
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