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Environmentally relevant metal and transition metal ions enhance Fc epsilon RI-mediated mast cell activation.

Upon contact with allergen, sensitized mast cells release highly active proinflammatory mediators. Allergen-mediated mast cell activation is an important mechanism in the pathogenesis of atopic asthma. Asthmatic patients are especially susceptible to air pollution. Epidemiologic studies found a posi...

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Autores principales: Walczak-Drzewiecka, Aurelia, Wyczólkowska, Janina, Dastych, Jaroslaw
Formato: Texto
Lenguaje:English
Publicado: 2003
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1241479/
https://www.ncbi.nlm.nih.gov/pubmed/12727598
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author Walczak-Drzewiecka, Aurelia
Wyczólkowska, Janina
Dastych, Jaroslaw
author_facet Walczak-Drzewiecka, Aurelia
Wyczólkowska, Janina
Dastych, Jaroslaw
author_sort Walczak-Drzewiecka, Aurelia
collection PubMed
description Upon contact with allergen, sensitized mast cells release highly active proinflammatory mediators. Allergen-mediated mast cell activation is an important mechanism in the pathogenesis of atopic asthma. Asthmatic patients are especially susceptible to air pollution. Epidemiologic studies found a positive correlation between severity of symptoms among asthmatic patients and the level of particulate matter (PM) in the air. Among the constituents of PM are metals and transition metals, which could mediate some of its adverse effects on human health. We sought to determine the effect of metal and transition metal ions on allergen-mediated mast cell activation. We observed that several metal and transition metal ions activated mast cells and enhanced allergen-mediated mast cell activation. Thus, Al(3+), Cd(2+), and Sr(2+) induced release of granule-associated N-acetyl-ss-d-hexosaminidase, and Al(3+) and Ni(2+) enhanced antigen-mediated release. Metal and transition metal ions also induced significant secretion of interleukin (IL)-4 and increased antigen-mediated IL-4 secretion in mast cells. These effects of metal and transition metal ions on mast cells were observed at concentrations that do not result in direct cytotoxicity and might be relevant for environmental exposure. Thus, metals and transition metals could increase the level of allergen-mediated mast cell activation, which might be one of the mechanisms mediating exacerbation of allergen-driven asthma symptoms by air pollution.
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spelling pubmed-12414792005-11-08 Environmentally relevant metal and transition metal ions enhance Fc epsilon RI-mediated mast cell activation. Walczak-Drzewiecka, Aurelia Wyczólkowska, Janina Dastych, Jaroslaw Environ Health Perspect Research Article Upon contact with allergen, sensitized mast cells release highly active proinflammatory mediators. Allergen-mediated mast cell activation is an important mechanism in the pathogenesis of atopic asthma. Asthmatic patients are especially susceptible to air pollution. Epidemiologic studies found a positive correlation between severity of symptoms among asthmatic patients and the level of particulate matter (PM) in the air. Among the constituents of PM are metals and transition metals, which could mediate some of its adverse effects on human health. We sought to determine the effect of metal and transition metal ions on allergen-mediated mast cell activation. We observed that several metal and transition metal ions activated mast cells and enhanced allergen-mediated mast cell activation. Thus, Al(3+), Cd(2+), and Sr(2+) induced release of granule-associated N-acetyl-ss-d-hexosaminidase, and Al(3+) and Ni(2+) enhanced antigen-mediated release. Metal and transition metal ions also induced significant secretion of interleukin (IL)-4 and increased antigen-mediated IL-4 secretion in mast cells. These effects of metal and transition metal ions on mast cells were observed at concentrations that do not result in direct cytotoxicity and might be relevant for environmental exposure. Thus, metals and transition metals could increase the level of allergen-mediated mast cell activation, which might be one of the mechanisms mediating exacerbation of allergen-driven asthma symptoms by air pollution. 2003-05 /pmc/articles/PMC1241479/ /pubmed/12727598 Text en
spellingShingle Research Article
Walczak-Drzewiecka, Aurelia
Wyczólkowska, Janina
Dastych, Jaroslaw
Environmentally relevant metal and transition metal ions enhance Fc epsilon RI-mediated mast cell activation.
title Environmentally relevant metal and transition metal ions enhance Fc epsilon RI-mediated mast cell activation.
title_full Environmentally relevant metal and transition metal ions enhance Fc epsilon RI-mediated mast cell activation.
title_fullStr Environmentally relevant metal and transition metal ions enhance Fc epsilon RI-mediated mast cell activation.
title_full_unstemmed Environmentally relevant metal and transition metal ions enhance Fc epsilon RI-mediated mast cell activation.
title_short Environmentally relevant metal and transition metal ions enhance Fc epsilon RI-mediated mast cell activation.
title_sort environmentally relevant metal and transition metal ions enhance fc epsilon ri-mediated mast cell activation.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1241479/
https://www.ncbi.nlm.nih.gov/pubmed/12727598
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