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Updated: Jul 19, 2026

Analyzing the Functions of Mast Cells In Vivo Using 'Mast Cell Knock-in' Mice
Published on: May 27, 2015
IgE-activated mast cells in combination with pro-inflammatory factors induce Th2-promoting dendritic cells
Toshio Kitawaki1, Norimitsu Kadowaki, Naoshi Sugimoto
1Department of Hematology and Oncology, Graduate School of Medicine, Kyoto University, 54 Shogoin Kawara-cho, Sakyo-ku, Kyoto 606-8507, Japan.
Insights
Mast cells (MCs) activation influences dendritic cell (DC) maturation and T-cell responses. This interaction, particularly in allergic conditions like atopic dermatitis, promotes T(h)2 polarization, suggesting therapeutic targets.
Area of Science:
- Immunology
- Cell Biology
- Allergy Research
Background:
- Dendritic cells (DCs) and mast cells (MCs) are found together in tissues where antigens enter, like skin and mucosa.
- Activated mast cells can influence the function of nearby dendritic cells.
Purpose of the Study:
- To investigate the impact of activated mast cells on dendritic cell maturation and function.
- To understand how mast cell products affect T-cell responses mediated by dendritic cells.
- To explore the role of DC-MC interactions in allergic diseases.
Main Methods:
- Co-culturing human monocyte-derived DCs with activated cord blood-derived MCs.
- Stimulating MCs via FcepsilonRI cross-linking.
- Analyzing DC maturation markers and cytokine production (IL-12p70).
- Assessing CD4(+) T-cell polarization.
- Examining DC-MC proximity in atopic dermatitis lesions.
Main Results:
- Activated MCs promoted DC maturation and suppressed IL-12p70 production.
- Co-culture with activated MCs induced T(h)2 polarization in DCs, especially with pro-inflammatory factors.
- Histamine played a role, but multiple MC-derived factors and cell contact were crucial for optimal T(h)2-promoting DCs.
- DCs and MCs were found closely associated in atopic dermatitis lesions.
Conclusions:
- The interaction between IgE-activated MCs and DCs in inflammatory environments amplifies T(h)2 responses in allergies.
- Disrupting DC-MC interactions could be a therapeutic strategy for allergic diseases.
Abstract:
Dendritic cells (DCs) and mast cells (MCs) co-localize in peripheral tissues of antigen entry, i.e. skin and mucosa. Due to the proximity of these two cell types, activation of MCs may affect DC functions. Here, we co-cultured human monocyte-derived DCs with cord blood-derived MCs activated by cross-linking of FcepsilonRI to elucidate the net effect of the whole MC products on DCs. Activated MCs induced maturation of DCs, and potently suppressed IL-12p70 production by the DCs. Whereas co-culture of DCs with activated MCs alone did not significantly influence the type of CD4(+) T cell responses induced by the DCs, DCs co-cultured with activated MCs in the presence of pro-inflammatory or T(h)1-inducing factors caused T(h)2 polarization. Although histamine was involved in the induction of DC maturation and T(h)2 polarization by activated MCs, a combinatorial effect of various MC-derived factors, including those acting in a cell contact-dependent manner, was required for the optimal induction of T(h)2-promoting DCs. Furthermore, we demonstrated that clusters of DCs are located closely with MCs in lesions of atopic dermatitis. Collectively, this study suggests that the interaction between DCs and IgE-activated MCs in a pro-inflammatory or even T(h)1-prone environment is instrumental in maintaining and augmenting T(h)2 responses in allergy, and that disruption of the DC-MC interaction may constitute an effective strategy to treat ongoing allergic diseases.
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