Literature DB >> 15240713

Microbial DNA induces a host defense reaction of human respiratory epithelial cells.

Juliane Platz1, Christoph Beisswenger, Alexander Dalpke, Rembert Koczulla, Olaf Pinkenburg, Claus Vogelmeier, Robert Bals.   

Abstract

Epithelial cells represent the initial site of bacterial colonization in the respiratory tract. TLR9 has been identified in B cells and CD 123(+) dendritic cells and found to be involved in the recognition of microbial DNA. It was the aim of the study to investigate the role of TLR9 in the host defense reactions of the respiratory epithelium. Respiratory epithelial cell lines (IHAEo(-), Calu-3) or fully differentiated primary human cells as air-liquid interface cultures were stimulated with bacterial DNA or synthetic oligonucleotides containing CpG motifs (CpG oligodeoxynucleotides). Expression of TLR9, cytokines, and human beta-defensin 2 was determined by quantitative RT-PCR or by ELISA. We found that TLR9 is expressed by respiratory epithelial cell lines and fully differentiated primary epithelial cells at low levels. Stimulation of the above-mentioned cells with bacterial DNA or CpG oligodeoxynucleotide resulted in an inflammatory reaction characterized by a dose-dependent up-regulation of cytokines (IL-6, IL-8) and human beta-defensin 2. Up-regulation of NF-kappaB in epithelial cells in response to the CpG motif containing DNA was inhibited by overexpression of a dominant negative form of MyD88. These results provide clear evidence that the human respiratory epithelium is capable of detecting microbial DNA by TLR9. The respiratory epithelium has an important function in triggering innate immune responses and therefore represents an interesting target for anti-inflammatory therapy.

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Year:  2004        PMID: 15240713     DOI: 10.4049/jimmunol.173.2.1219

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  37 in total

1.  Nonclassical pathway of Pseudomonas aeruginosa DNA-induced interleukin-8 secretion in cystic fibrosis airway epithelial cells.

Authors:  Mónica A Delgado; Jens F Poschet; Vojo Deretic
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Review 2.  Innate immunity in the lungs.

Authors:  Thomas R Martin; Charles W Frevert
Journal:  Proc Am Thorac Soc       Date:  2005

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Authors:  David Schneberger; Danyse Lewis; Sarah Caldwell; Baljit Singh
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Review 4.  Host defense peptides in the oral cavity and the lung: similarities and differences.

Authors:  G Diamond; N Beckloff; L K Ryan
Journal:  J Dent Res       Date:  2008-10       Impact factor: 6.116

Review 5.  Innate immunity in the respiratory epithelium.

Authors:  Dane Parker; Alice Prince
Journal:  Am J Respir Cell Mol Biol       Date:  2011-02-17       Impact factor: 6.914

6.  Toll-like receptor expression and induction of type I and type III interferons in primary airway epithelial cells.

Authors:  Ioannis Ioannidis; Fang Ye; Beth McNally; Meredith Willette; Emilio Flaño
Journal:  J Virol       Date:  2013-01-09       Impact factor: 5.103

7.  Altered expression of genes associated with innate immunity and inflammation in recalcitrant rhinosinusitis with polyps.

Authors:  Andrew P Lane; Quynh Ai Truong-Tran; Robert P Schleimer
Journal:  Am J Rhinol       Date:  2006 Mar-Apr

Review 8.  The roles of antimicrobial peptides in innate host defense.

Authors:  Gill Diamond; Nicholas Beckloff; Aaron Weinberg; Kevin O Kisich
Journal:  Curr Pharm Des       Date:  2009       Impact factor: 3.116

9.  Expression of Toll-like receptor 9 in mouse and human lungs.

Authors:  David Schneberger; Sarah Caldwell; Rani Kanthan; Baljit Singh
Journal:  J Anat       Date:  2013-03-22       Impact factor: 2.610

10.  Inhibition of Toll-like receptor 2-mediated interleukin-8 production in Cystic Fibrosis airway epithelial cells via the alpha7-nicotinic acetylcholine receptor.

Authors:  Catherine M Greene; Hugh Ramsay; Robert J Wells; Shane J O'Neill; Noel G McElvaney
Journal:  Mediators Inflamm       Date:  2010-03-31       Impact factor: 4.711

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