Allergenic Shrimp Tropomyosin Distinguishes from a Non-Allergenic Chicken Homolog by Pronounced Intestinal Barrier Disruption and Downstream Th2 Responses in Epithelial and Dendritic Cell (Co)Culture

Publication date

2024-04-17

Authors

Zuurveld, M.ISNI 0000000492962759
Ogrodowczyk, Anna M
Benedé, Sara
Czolk, Rebecca
Lucia Bavaro, Simona
Randow, Stefanie
Markiewicz, Lidia H
Wróblewska, Barbara
Molina, Elena
Kuehn, Annette

Editors

Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

BACKGROUND: Tropomyosins (TM) from vertebrates are generally non-allergenic, while invertebrate homologs are potent pan-allergens. This study aims to compare the risk of sensitization between chicken TM and shrimp TM through affecting the intestinal epithelial barrier integrity and type 2 mucosal immune activation. METHODS: Epithelial activation and/or barrier effects upon exposure to 2-50 μg/mL chicken TM, shrimp TM or ovalbumin (OVA) as a control allergen, were studied using Caco-2, HT-29MTX, or HT-29 intestinal epithelial cells. Monocyte-derived dendritic cells (moDC), cocultured with HT-29 cells or moDC alone, were exposed to 50 μg/mL chicken TM or shrimp TM. Primed moDC were cocultured with naïve Th cells. Intestinal barrier integrity (TEER), gene expression, cytokine secretion and immune cell phenotypes were determined in these human in vitro models. RESULTS: Shrimp TM, but not chicken TM or OVA exposure, profoundly disrupted intestinal barrier integrity and increased alarmin genes expression in Caco-2 cells. Proinflammatory cytokine secretion in HT-29 cells was only enhanced upon shrimp TM or OVA, but not chicken TM, exposure. Shrimp TM enhanced the maturation of moDC and chemokine secretion in the presence or absence of HT-29 cells, while only in the absence of epithelial cells chicken TM activated moDC. Direct exposure of moDC to shrimp TM increased IL13 and TNFα secretion by Th cells cocultured with these primed moDC, while shrimp TM exposure via HT-29 cells cocultured with moDC sequentially increased IL13 expression and IL4 secretion in Th cells. CONCLUSIONS: Shrimp TM, but not chicken TM, disrupted the epithelial barrier while triggering type 2 mucosal immune activation, both of which are key events in allergic sensitization.

Keywords

Animals, Humans, Dendritic Cells/immunology, Coculture Techniques, Chickens, Caco-2 Cells, Tropomyosin/immunology, Allergens/immunology, Intestinal Mucosa/immunology, HT29 Cells, Th2 Cells/immunology, Cytokines/metabolism, Penaeidae/immunology, Epithelial Cells/metabolism, Ovalbumin

Citation

Zuurveld, M, Ogrodowczyk, A M, Benedé, S, Czolk, R, Lucia Bavaro, S, Randow, S, Markiewicz, L H, Wróblewska, B, Molina, E, Kuehn, A, Holzhauser, T & Willemsen, L E M 2024, 'Allergenic Shrimp Tropomyosin Distinguishes from a Non-Allergenic Chicken Homolog by Pronounced Intestinal Barrier Disruption and Downstream Th2 Responses in Epithelial and Dendritic Cell (Co)Culture', Nutrients, vol. 16, no. 8, 1192. https://doi.org/10.3390/nu16081192