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The TLR5 ligand flagellin promotes asthma by priming allergic responses to indoor allergens

Allergic asthma is a complex disease characterized by eosinophilic pulmonary inflammation, mucus production and reversible airway obstruction(1). Exposure to indoor allergens is a clear risk factor for asthma, but this disease is also associated with high household levels of total and Gram-negative...

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Autores principales: Wilson, Rhonda H., Maruoka, Shuichiro, Whitehead, Gregory S., Foley, Julie F., Flake, Gordon P., Sever, Michelle L., Zeldin, Darryl C., Kraft, Monica, Garantziotis, Stavros, Nakano, Hideki, Cook, Donald N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3493750/
https://www.ncbi.nlm.nih.gov/pubmed/23064463
http://dx.doi.org/10.1038/nm.2920
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author Wilson, Rhonda H.
Maruoka, Shuichiro
Whitehead, Gregory S.
Foley, Julie F.
Flake, Gordon P.
Sever, Michelle L.
Zeldin, Darryl C.
Kraft, Monica
Garantziotis, Stavros
Nakano, Hideki
Cook, Donald N.
author_facet Wilson, Rhonda H.
Maruoka, Shuichiro
Whitehead, Gregory S.
Foley, Julie F.
Flake, Gordon P.
Sever, Michelle L.
Zeldin, Darryl C.
Kraft, Monica
Garantziotis, Stavros
Nakano, Hideki
Cook, Donald N.
author_sort Wilson, Rhonda H.
collection PubMed
description Allergic asthma is a complex disease characterized by eosinophilic pulmonary inflammation, mucus production and reversible airway obstruction(1). Exposure to indoor allergens is a clear risk factor for asthma, but this disease is also associated with high household levels of total and Gram-negative bacteria(2). The ability of bacterial products to act as adjuvants(3) suggests they might promote asthma by priming allergic sensitization to inhaled allergens. In support of this idea, house dust extracts (HDEs) can activate antigen presenting dendritic cells (DC) in vitro and promote allergic sensitization to inhaled innocuous proteinsin vivo(4). It is unknown which microbial products provide most of the adjuvant activity in HDEs. A screen of microbial products for their adjuvant activity in the airway revealed that the bacterial protein, flagellin (FLA) stimulated strong allergic responses to an innocuous inhaled protein. Moreover, toll-like receptor (TLR)5, the mammalian receptor for FLA(5,6), was required for priming strong allergic responses to natural indoor allergens present in HDEs. In addition, the incidence of human asthma was associated with high serum levels of FLA-specific antibodies. Together, these findings suggest that household FLA promotes the development of allergic asthma by TLR5-dependent priming of allergic responses to indoor allergens.
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spelling pubmed-34937502013-05-01 The TLR5 ligand flagellin promotes asthma by priming allergic responses to indoor allergens Wilson, Rhonda H. Maruoka, Shuichiro Whitehead, Gregory S. Foley, Julie F. Flake, Gordon P. Sever, Michelle L. Zeldin, Darryl C. Kraft, Monica Garantziotis, Stavros Nakano, Hideki Cook, Donald N. Nat Med Article Allergic asthma is a complex disease characterized by eosinophilic pulmonary inflammation, mucus production and reversible airway obstruction(1). Exposure to indoor allergens is a clear risk factor for asthma, but this disease is also associated with high household levels of total and Gram-negative bacteria(2). The ability of bacterial products to act as adjuvants(3) suggests they might promote asthma by priming allergic sensitization to inhaled allergens. In support of this idea, house dust extracts (HDEs) can activate antigen presenting dendritic cells (DC) in vitro and promote allergic sensitization to inhaled innocuous proteinsin vivo(4). It is unknown which microbial products provide most of the adjuvant activity in HDEs. A screen of microbial products for their adjuvant activity in the airway revealed that the bacterial protein, flagellin (FLA) stimulated strong allergic responses to an innocuous inhaled protein. Moreover, toll-like receptor (TLR)5, the mammalian receptor for FLA(5,6), was required for priming strong allergic responses to natural indoor allergens present in HDEs. In addition, the incidence of human asthma was associated with high serum levels of FLA-specific antibodies. Together, these findings suggest that household FLA promotes the development of allergic asthma by TLR5-dependent priming of allergic responses to indoor allergens. 2012-10-14 2012-11 /pmc/articles/PMC3493750/ /pubmed/23064463 http://dx.doi.org/10.1038/nm.2920 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Wilson, Rhonda H.
Maruoka, Shuichiro
Whitehead, Gregory S.
Foley, Julie F.
Flake, Gordon P.
Sever, Michelle L.
Zeldin, Darryl C.
Kraft, Monica
Garantziotis, Stavros
Nakano, Hideki
Cook, Donald N.
The TLR5 ligand flagellin promotes asthma by priming allergic responses to indoor allergens
title The TLR5 ligand flagellin promotes asthma by priming allergic responses to indoor allergens
title_full The TLR5 ligand flagellin promotes asthma by priming allergic responses to indoor allergens
title_fullStr The TLR5 ligand flagellin promotes asthma by priming allergic responses to indoor allergens
title_full_unstemmed The TLR5 ligand flagellin promotes asthma by priming allergic responses to indoor allergens
title_short The TLR5 ligand flagellin promotes asthma by priming allergic responses to indoor allergens
title_sort tlr5 ligand flagellin promotes asthma by priming allergic responses to indoor allergens
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3493750/
https://www.ncbi.nlm.nih.gov/pubmed/23064463
http://dx.doi.org/10.1038/nm.2920
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