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Secretory protein beta‐lactoglobulin in cattle stable dust may contribute to the allergy‐protective farm effect

BACKGROUND: Growing up on a cattle farm and consuming raw cow's milk protects against asthma and allergies. We expect a cattle‐specific protein as active component in this farm effect. METHODS: Dust was collected from cattle and poultry stables and from mattresses of households. Urine was obtai...

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Autores principales: Pali‐Schöll, Isabella, Bianchini, Rodolfo, Afify, Sheriene Moussa, Hofstetter, Gerlinde, Winkler, Simona, Ahlers, Stella, Altemeier, Theresa, Mayerhofer, Hanna, Hufnagl, Karin, Korath, Anna D. J., Pranger, Christina, Widhalm, Raimund, Hann, Stephan, Wittek, Thomas, Kasper‐Giebl, Anne, Pacios, Luis F., Roth‐Walter, Franziska, Vercelli, Donata, von Mutius, Erika, Jensen‐Jarolim, Erika
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8840802/
https://www.ncbi.nlm.nih.gov/pubmed/35169442
http://dx.doi.org/10.1002/clt2.12125
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author Pali‐Schöll, Isabella
Bianchini, Rodolfo
Afify, Sheriene Moussa
Hofstetter, Gerlinde
Winkler, Simona
Ahlers, Stella
Altemeier, Theresa
Mayerhofer, Hanna
Hufnagl, Karin
Korath, Anna D. J.
Pranger, Christina
Widhalm, Raimund
Hann, Stephan
Wittek, Thomas
Kasper‐Giebl, Anne
Pacios, Luis F.
Roth‐Walter, Franziska
Vercelli, Donata
von Mutius, Erika
Jensen‐Jarolim, Erika
author_facet Pali‐Schöll, Isabella
Bianchini, Rodolfo
Afify, Sheriene Moussa
Hofstetter, Gerlinde
Winkler, Simona
Ahlers, Stella
Altemeier, Theresa
Mayerhofer, Hanna
Hufnagl, Karin
Korath, Anna D. J.
Pranger, Christina
Widhalm, Raimund
Hann, Stephan
Wittek, Thomas
Kasper‐Giebl, Anne
Pacios, Luis F.
Roth‐Walter, Franziska
Vercelli, Donata
von Mutius, Erika
Jensen‐Jarolim, Erika
author_sort Pali‐Schöll, Isabella
collection PubMed
description BACKGROUND: Growing up on a cattle farm and consuming raw cow's milk protects against asthma and allergies. We expect a cattle‐specific protein as active component in this farm effect. METHODS: Dust was collected from cattle and poultry stables and from mattresses of households. Urine was obtained from cattle, and ambient aerosols were sampled. Samples were analysed for BLG by SDS PAGE/immunoblot and mass spectrometry, and for association with metals by SEC‐ICP‐MS. PBMC of healthy donors were incubated with BLG +/− zinc, and proliferation and cytokines determined. BALB/c mice were pre‐treated intranasally with stable dust extract containing BLG or depleted of BLG, and subsequent allergy response after sensitization was evaluated on antibody and symptom level. RESULTS: A major protein in dust from cattle farms and ambient air was identified as BLG. Urine from female and male cattle is a major source of BLG. In dust samples, BLG was associated with zinc. In vitro, zinc‐BLG provoked significantly lower proliferation of CD4(+) and CD8(+) cells while inducing significantly higher levels of IFN‐γ and IL‐6 than the apo‐BLG devoid of zinc. In vivo, pre‐treatment of mice with dust extract containing BLG resulted in lower allergy symptom scores to BLG and unrelated Bet v 1 than pre‐treatment with extract depleted of BLG. These in vitro and in vivo effects were independent of endotoxin. CONCLUSION: The lipocalin BLG is found in large amounts in cattle urine, accumulates in bovine dust samples and is aerosolized around farms. Its association with zinc favorably shapes the human cellular immune response towards Th1‐cytokines in vitro. BLG together with zinc in stable dust protects mice from allergic sensitization. BLG with its associated ligands may in an innate manner contribute to the allergy‐protective farm effect.
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spelling pubmed-88408022022-02-14 Secretory protein beta‐lactoglobulin in cattle stable dust may contribute to the allergy‐protective farm effect Pali‐Schöll, Isabella Bianchini, Rodolfo Afify, Sheriene Moussa Hofstetter, Gerlinde Winkler, Simona Ahlers, Stella Altemeier, Theresa Mayerhofer, Hanna Hufnagl, Karin Korath, Anna D. J. Pranger, Christina Widhalm, Raimund Hann, Stephan Wittek, Thomas Kasper‐Giebl, Anne Pacios, Luis F. Roth‐Walter, Franziska Vercelli, Donata von Mutius, Erika Jensen‐Jarolim, Erika Clin Transl Allergy Original Article BACKGROUND: Growing up on a cattle farm and consuming raw cow's milk protects against asthma and allergies. We expect a cattle‐specific protein as active component in this farm effect. METHODS: Dust was collected from cattle and poultry stables and from mattresses of households. Urine was obtained from cattle, and ambient aerosols were sampled. Samples were analysed for BLG by SDS PAGE/immunoblot and mass spectrometry, and for association with metals by SEC‐ICP‐MS. PBMC of healthy donors were incubated with BLG +/− zinc, and proliferation and cytokines determined. BALB/c mice were pre‐treated intranasally with stable dust extract containing BLG or depleted of BLG, and subsequent allergy response after sensitization was evaluated on antibody and symptom level. RESULTS: A major protein in dust from cattle farms and ambient air was identified as BLG. Urine from female and male cattle is a major source of BLG. In dust samples, BLG was associated with zinc. In vitro, zinc‐BLG provoked significantly lower proliferation of CD4(+) and CD8(+) cells while inducing significantly higher levels of IFN‐γ and IL‐6 than the apo‐BLG devoid of zinc. In vivo, pre‐treatment of mice with dust extract containing BLG resulted in lower allergy symptom scores to BLG and unrelated Bet v 1 than pre‐treatment with extract depleted of BLG. These in vitro and in vivo effects were independent of endotoxin. CONCLUSION: The lipocalin BLG is found in large amounts in cattle urine, accumulates in bovine dust samples and is aerosolized around farms. Its association with zinc favorably shapes the human cellular immune response towards Th1‐cytokines in vitro. BLG together with zinc in stable dust protects mice from allergic sensitization. BLG with its associated ligands may in an innate manner contribute to the allergy‐protective farm effect. John Wiley and Sons Inc. 2022-02-12 /pmc/articles/PMC8840802/ /pubmed/35169442 http://dx.doi.org/10.1002/clt2.12125 Text en © 2022 The Authors. Clinical and Translational Allergy published by John Wiley & Sons Ltd on behalf of European Academy of Allergy and Clinical Immunology. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Pali‐Schöll, Isabella
Bianchini, Rodolfo
Afify, Sheriene Moussa
Hofstetter, Gerlinde
Winkler, Simona
Ahlers, Stella
Altemeier, Theresa
Mayerhofer, Hanna
Hufnagl, Karin
Korath, Anna D. J.
Pranger, Christina
Widhalm, Raimund
Hann, Stephan
Wittek, Thomas
Kasper‐Giebl, Anne
Pacios, Luis F.
Roth‐Walter, Franziska
Vercelli, Donata
von Mutius, Erika
Jensen‐Jarolim, Erika
Secretory protein beta‐lactoglobulin in cattle stable dust may contribute to the allergy‐protective farm effect
title Secretory protein beta‐lactoglobulin in cattle stable dust may contribute to the allergy‐protective farm effect
title_full Secretory protein beta‐lactoglobulin in cattle stable dust may contribute to the allergy‐protective farm effect
title_fullStr Secretory protein beta‐lactoglobulin in cattle stable dust may contribute to the allergy‐protective farm effect
title_full_unstemmed Secretory protein beta‐lactoglobulin in cattle stable dust may contribute to the allergy‐protective farm effect
title_short Secretory protein beta‐lactoglobulin in cattle stable dust may contribute to the allergy‐protective farm effect
title_sort secretory protein beta‐lactoglobulin in cattle stable dust may contribute to the allergy‐protective farm effect
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8840802/
https://www.ncbi.nlm.nih.gov/pubmed/35169442
http://dx.doi.org/10.1002/clt2.12125
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