Cargando…

Lipopolysaccharide-Induced Middle Ear Inflammation Disrupts the cochlear Intra-Strial Fluid–Blood Barrier through Down-Regulation of Tight Junction Proteins

Middle ear infection (or inflammation) is the most common pathological condition that causes fluid to accumulate in the middle ear, disrupting cochlear homeostasis. Lipopolysaccharide, a product of bacteriolysis, activates macrophages and causes release of inflammatory cytokines. Many studies have s...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Jinhui, Chen, Songlin, Hou, Zhiqiang, Cai, Jing, Dong, Mingmin, Shi, Xiaorui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4376743/
https://www.ncbi.nlm.nih.gov/pubmed/25815897
http://dx.doi.org/10.1371/journal.pone.0122572
_version_ 1782363780255055872
author Zhang, Jinhui
Chen, Songlin
Hou, Zhiqiang
Cai, Jing
Dong, Mingmin
Shi, Xiaorui
author_facet Zhang, Jinhui
Chen, Songlin
Hou, Zhiqiang
Cai, Jing
Dong, Mingmin
Shi, Xiaorui
author_sort Zhang, Jinhui
collection PubMed
description Middle ear infection (or inflammation) is the most common pathological condition that causes fluid to accumulate in the middle ear, disrupting cochlear homeostasis. Lipopolysaccharide, a product of bacteriolysis, activates macrophages and causes release of inflammatory cytokines. Many studies have shown that lipopolysaccharides cause functional and structural changes in the inner ear similar to that of inflammation. However, it is specifically not known how lipopolysaccharides affect the blood-labyrinth barrier in the stria vascularis (intra-strial fluid–blood barrier), nor what the underlying mechanisms are. In this study, we used a cell culture-based in vitro model and animal-based in vivo model, combined with immunohistochemistry and a vascular leakage assay, to investigate lipopolysaccharide effects on the integrity of the mouse intra-strial fluid–blood barrier. Our results show lipopolysaccharide-induced local infection significantly affects intra-strial fluid–blood barrier component cells. Pericytes and perivascular-resident macrophage-like melanocytes are particularly affected, and the morphological and functional changes in these cells are accompanied by substantial changes in barrier integrity. Significant vascular leakage is found in the lipopolysaccharide treated-animals. Consistent with the findings from the in vivo animal model, the permeability of the endothelial cell monolayer to FITC-albumin was significantly higher in the lipopolysaccharide-treated monolayer than in an untreated endothelial cell monolayer. Further study has shown the lipopolysaccharide-induced inflammation to have a major effect on the expression of tight junctions in the blood barrier. Lipopolysaccharide was also shown to cause high frequency hearing loss, corroborated by previous reports from other laboratories. Our findings show lipopolysaccharide-evoked middle ear infection disrupts inner ear fluid balance, and its particular effects on the intra-strial fluid–blood barrier, essential for cochlear homeostasis. The barrier is degraded as the expression of tight junction-associated proteins such as zona occludens 1, occludin, and vascular endothelial cadherin are down-regulated.
format Online
Article
Text
id pubmed-4376743
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-43767432015-04-04 Lipopolysaccharide-Induced Middle Ear Inflammation Disrupts the cochlear Intra-Strial Fluid–Blood Barrier through Down-Regulation of Tight Junction Proteins Zhang, Jinhui Chen, Songlin Hou, Zhiqiang Cai, Jing Dong, Mingmin Shi, Xiaorui PLoS One Research Article Middle ear infection (or inflammation) is the most common pathological condition that causes fluid to accumulate in the middle ear, disrupting cochlear homeostasis. Lipopolysaccharide, a product of bacteriolysis, activates macrophages and causes release of inflammatory cytokines. Many studies have shown that lipopolysaccharides cause functional and structural changes in the inner ear similar to that of inflammation. However, it is specifically not known how lipopolysaccharides affect the blood-labyrinth barrier in the stria vascularis (intra-strial fluid–blood barrier), nor what the underlying mechanisms are. In this study, we used a cell culture-based in vitro model and animal-based in vivo model, combined with immunohistochemistry and a vascular leakage assay, to investigate lipopolysaccharide effects on the integrity of the mouse intra-strial fluid–blood barrier. Our results show lipopolysaccharide-induced local infection significantly affects intra-strial fluid–blood barrier component cells. Pericytes and perivascular-resident macrophage-like melanocytes are particularly affected, and the morphological and functional changes in these cells are accompanied by substantial changes in barrier integrity. Significant vascular leakage is found in the lipopolysaccharide treated-animals. Consistent with the findings from the in vivo animal model, the permeability of the endothelial cell monolayer to FITC-albumin was significantly higher in the lipopolysaccharide-treated monolayer than in an untreated endothelial cell monolayer. Further study has shown the lipopolysaccharide-induced inflammation to have a major effect on the expression of tight junctions in the blood barrier. Lipopolysaccharide was also shown to cause high frequency hearing loss, corroborated by previous reports from other laboratories. Our findings show lipopolysaccharide-evoked middle ear infection disrupts inner ear fluid balance, and its particular effects on the intra-strial fluid–blood barrier, essential for cochlear homeostasis. The barrier is degraded as the expression of tight junction-associated proteins such as zona occludens 1, occludin, and vascular endothelial cadherin are down-regulated. Public Library of Science 2015-03-27 /pmc/articles/PMC4376743/ /pubmed/25815897 http://dx.doi.org/10.1371/journal.pone.0122572 Text en © 2015 Zhang 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
Zhang, Jinhui
Chen, Songlin
Hou, Zhiqiang
Cai, Jing
Dong, Mingmin
Shi, Xiaorui
Lipopolysaccharide-Induced Middle Ear Inflammation Disrupts the cochlear Intra-Strial Fluid–Blood Barrier through Down-Regulation of Tight Junction Proteins
title Lipopolysaccharide-Induced Middle Ear Inflammation Disrupts the cochlear Intra-Strial Fluid–Blood Barrier through Down-Regulation of Tight Junction Proteins
title_full Lipopolysaccharide-Induced Middle Ear Inflammation Disrupts the cochlear Intra-Strial Fluid–Blood Barrier through Down-Regulation of Tight Junction Proteins
title_fullStr Lipopolysaccharide-Induced Middle Ear Inflammation Disrupts the cochlear Intra-Strial Fluid–Blood Barrier through Down-Regulation of Tight Junction Proteins
title_full_unstemmed Lipopolysaccharide-Induced Middle Ear Inflammation Disrupts the cochlear Intra-Strial Fluid–Blood Barrier through Down-Regulation of Tight Junction Proteins
title_short Lipopolysaccharide-Induced Middle Ear Inflammation Disrupts the cochlear Intra-Strial Fluid–Blood Barrier through Down-Regulation of Tight Junction Proteins
title_sort lipopolysaccharide-induced middle ear inflammation disrupts the cochlear intra-strial fluid–blood barrier through down-regulation of tight junction proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4376743/
https://www.ncbi.nlm.nih.gov/pubmed/25815897
http://dx.doi.org/10.1371/journal.pone.0122572
work_keys_str_mv AT zhangjinhui lipopolysaccharideinducedmiddleearinflammationdisruptsthecochlearintrastrialfluidbloodbarrierthroughdownregulationoftightjunctionproteins
AT chensonglin lipopolysaccharideinducedmiddleearinflammationdisruptsthecochlearintrastrialfluidbloodbarrierthroughdownregulationoftightjunctionproteins
AT houzhiqiang lipopolysaccharideinducedmiddleearinflammationdisruptsthecochlearintrastrialfluidbloodbarrierthroughdownregulationoftightjunctionproteins
AT caijing lipopolysaccharideinducedmiddleearinflammationdisruptsthecochlearintrastrialfluidbloodbarrierthroughdownregulationoftightjunctionproteins
AT dongmingmin lipopolysaccharideinducedmiddleearinflammationdisruptsthecochlearintrastrialfluidbloodbarrierthroughdownregulationoftightjunctionproteins
AT shixiaorui lipopolysaccharideinducedmiddleearinflammationdisruptsthecochlearintrastrialfluidbloodbarrierthroughdownregulationoftightjunctionproteins