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Advances in Mechanisms of Anaphylaxis in Wheat Allergy: Utility of Rodent Models

Overview
Journal Foods
Specialty Biotechnology
Date 2025 Mar 13
PMID 40077585
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Abstract

Wheat is a staple and nutritious food that is consumed globally. However, it is identified as a major allergenic food because of its capacity to trigger life-threatening systemic anaphylaxis. The specific mechanisms that underlie this systemic anaphylaxis in wheat allergy are incompletely understood. As a result, several rodent models have been developed to study anaphylaxis in wheat allergies. In this paper, we have conducted a comprehensive review of wheat-induced anaphylaxis using Google Scholar and PubMed databases with relevant keywords. The following objectives were addressed: (1) to determine the complexity of wheat-induced anaphylaxis; (2) to summarize the role of genetic susceptibility in wheat anaphylaxis; (3) to identify the environmental factors involved in the development of wheat anaphylaxis; (4) to map the current status of mechanisms involved in wheat anaphylaxis; (5) to identify the approaches, strengths, and limitations of rodent models of wheat anaphylaxis; and (6) to identify challenges and opportunities in this area of science. Our findings provide a comprehensive updated critical resource for the future research agenda in wheat allergy-associated anaphylaxis, particularly using rodent models as attractive pre-clinical tools.

References
1.
Morita E, Chinuki Y, Kohno K, Matsuo H . Cofactors of wheat-dependent exercise-induced anaphylaxis increase gastrointestinal gliadin absorption by an inhibition of prostaglandin production. Clin Exp Allergy. 2022; 53(3):359-361. DOI: 10.1111/cea.14265. View

2.
Li J, Fung I, Glessner J, Pandey R, Wei Z, Bakay M . Copy Number Variations in CTNNA3 and RBFOX1 Associate with Pediatric Food Allergy. J Immunol. 2015; 195(4):1599-607. DOI: 10.4049/jimmunol.1402310. View

3.
Kohno K, Takahashi H, Endo T, Matsuo H, Shiwaku K, Morita E . Characterization of a hypoallergenic wheat line lacking ω-5 gliadin. Allergol Int. 2016; 65(4):400-405. DOI: 10.1016/j.alit.2016.03.002. View

4.
Kozai H, Yano H, Matsuda T, Kato Y . Wheat-dependent exercise-induced anaphylaxis in mice is caused by gliadin and glutenin treatments. Immunol Lett. 2005; 102(1):83-90. DOI: 10.1016/j.imlet.2005.07.007. View

5.
Baek J, Shin Y, Chung I, Kim H, Yoo E, Yoon J . The link between serum vitamin D level, sensitization to food allergens, and the severity of atopic dermatitis in infancy. J Pediatr. 2014; 165(4):849-54.e1. DOI: 10.1016/j.jpeds.2014.06.058. View