Related Experiment Video
Updated: Mar 24, 2026

Murine Model of Epicutaneously-Induced Immunomodulation
Published on: June 24, 2025
Suppressive effects of primed eosinophils on single epicutaneous sensitization through regulation of dermal dendritic
Jing-Yi Lin1,2, Yng-Cun Ta3, I-Lin Liu4
1Department of Dermatology, Chang Gung Memorial Hospital, Keelung, Taiwan.
Abstract:
Eosinophils are multifunctional innate immune cells involved in many aspects of innate and adaptive immunity. Epicutaneous sensitization with protein allergen is an important sensitization route for atopic dermatitis. In this study, using a murine single protein-patch model, we show that eosinophils of a primed status accumulate in draining lymph nodes following single epicutaneous sensitization. Further, depletion of eosinophils results in enhancement of the induced Th1/Th2 immune responses, whereas IL-5-induced hypereosinophilia suppresses these responses. Mechanistically, primed eosinophils cause a reduction in the numbers and activation status of dermal dendritic cells in draining lymph nodes. Collectively, these results demonstrate that primed eosinophils exert suppressive effects on single epicutaneous sensitization through regulation of dermal dendritic cells. Thus, these findings highlight the critical roles of eosinophils in the pathogenesis of atopic dermatitis with important clinical implications for the prevention of allergen sensitization.
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