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Outstanding animal studies in allergy I. From asthma to food allergy and anaphylaxis

PURPOSE OF REVIEW: Animal models published within the past 18 months on asthma, food allergy and anaphylaxis, all conditions of rising public health concern, were reviewed. RECENT FINDINGS: While domestic animals spontaneously develop asthma, food allergy and anaphylaxis, in animal models, divergent...

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Autores principales: Jensen-Jarolim, Erika, Pali-Schöll, Isabella, Roth-Walter, Franziska
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5424575/
https://www.ncbi.nlm.nih.gov/pubmed/28346234
http://dx.doi.org/10.1097/ACI.0000000000000363
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author Jensen-Jarolim, Erika
Pali-Schöll, Isabella
Roth-Walter, Franziska
author_facet Jensen-Jarolim, Erika
Pali-Schöll, Isabella
Roth-Walter, Franziska
author_sort Jensen-Jarolim, Erika
collection PubMed
description PURPOSE OF REVIEW: Animal models published within the past 18 months on asthma, food allergy and anaphylaxis, all conditions of rising public health concern, were reviewed. RECENT FINDINGS: While domestic animals spontaneously develop asthma, food allergy and anaphylaxis, in animal models, divergent sensitization and challenge routes, dosages, intervals and antigens are used to induce asthmatic, food allergic or anaphylactic phenotypes. This must be considered in the interpretation of results. Instead of model antigens, gradually relevant allergens such as house dust mite in asthma, and food allergens like peanut, apple and peach in food allergy research were used. Novel engineered mouse models such as a mouse with a T-cell receptor for house dust mite allergen Der p 1, or with transgenic human hFcγR genes, facilitated the investigation of single molecules of interest. Whole-body plethysmography has become a state-of-the-art in-vivo readout in asthma research. In food allergy and anaphylaxis research, novel techniques were developed allowing real-time monitoring of in-vivo effects following allergen challenge. Networks to share tissues were established as an effort to reduce animal experiments in allergy which cannot be replaced by in-vitro measures. SUMMARY: Natural and artificial animal models were used to explore the pathophysiology of asthma, food allergy and anaphylaxis and to improve prophylactic and therapeutic measures. Especially the novel mouse models mimicking molecular aspects of the complex immune network in asthma, food allergy and anaphylaxis will facilitate proof-of-concept studies under controlled conditions.
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spelling pubmed-54245752017-05-22 Outstanding animal studies in allergy I. From asthma to food allergy and anaphylaxis Jensen-Jarolim, Erika Pali-Schöll, Isabella Roth-Walter, Franziska Curr Opin Allergy Clin Immunol OUTCOME MEASURES: Edited by Henry Milgrom and R. Maximiliano Gómez PURPOSE OF REVIEW: Animal models published within the past 18 months on asthma, food allergy and anaphylaxis, all conditions of rising public health concern, were reviewed. RECENT FINDINGS: While domestic animals spontaneously develop asthma, food allergy and anaphylaxis, in animal models, divergent sensitization and challenge routes, dosages, intervals and antigens are used to induce asthmatic, food allergic or anaphylactic phenotypes. This must be considered in the interpretation of results. Instead of model antigens, gradually relevant allergens such as house dust mite in asthma, and food allergens like peanut, apple and peach in food allergy research were used. Novel engineered mouse models such as a mouse with a T-cell receptor for house dust mite allergen Der p 1, or with transgenic human hFcγR genes, facilitated the investigation of single molecules of interest. Whole-body plethysmography has become a state-of-the-art in-vivo readout in asthma research. In food allergy and anaphylaxis research, novel techniques were developed allowing real-time monitoring of in-vivo effects following allergen challenge. Networks to share tissues were established as an effort to reduce animal experiments in allergy which cannot be replaced by in-vitro measures. SUMMARY: Natural and artificial animal models were used to explore the pathophysiology of asthma, food allergy and anaphylaxis and to improve prophylactic and therapeutic measures. Especially the novel mouse models mimicking molecular aspects of the complex immune network in asthma, food allergy and anaphylaxis will facilitate proof-of-concept studies under controlled conditions. Lippincott Williams & Wilkins 2017-06 2017-04-25 /pmc/articles/PMC5424575/ /pubmed/28346234 http://dx.doi.org/10.1097/ACI.0000000000000363 Text en Copyright © 2017 The Author(s). Published by Wolters Kluwer Health, Inc. http://creativecommons.org/licenses/by/4.0 This is an open access article distributed under the Creative Commons Attribution License 4.0 (CCBY), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. http://creativecommons.org/licenses/by/4.0
spellingShingle OUTCOME MEASURES: Edited by Henry Milgrom and R. Maximiliano Gómez
Jensen-Jarolim, Erika
Pali-Schöll, Isabella
Roth-Walter, Franziska
Outstanding animal studies in allergy I. From asthma to food allergy and anaphylaxis
title Outstanding animal studies in allergy I. From asthma to food allergy and anaphylaxis
title_full Outstanding animal studies in allergy I. From asthma to food allergy and anaphylaxis
title_fullStr Outstanding animal studies in allergy I. From asthma to food allergy and anaphylaxis
title_full_unstemmed Outstanding animal studies in allergy I. From asthma to food allergy and anaphylaxis
title_short Outstanding animal studies in allergy I. From asthma to food allergy and anaphylaxis
title_sort outstanding animal studies in allergy i. from asthma to food allergy and anaphylaxis
topic OUTCOME MEASURES: Edited by Henry Milgrom and R. Maximiliano Gómez
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5424575/
https://www.ncbi.nlm.nih.gov/pubmed/28346234
http://dx.doi.org/10.1097/ACI.0000000000000363
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