Ethyl Caffeate Can Inhibit Aryl Hydrocarbon Receptor (AhR) Signaling and AhR-Mediated Potentiation of Mast Cell Activation

Author:

Nguyen Phuc-Tan1ORCID,Nakamura Yuki1ORCID,Tran Nguyen Quoc Vuong1ORCID,Ishimaru Kayoko1ORCID,Nguyen Thuy-An1,Kobayashi Yoshiaki1,Watanabe-Saito Fumie2,Okuda Tohru2,Nakano Nobuhiro3ORCID,Nakao Atsuhito134

Affiliation:

1. Department of Immunology, Faculty of Medicine, University of Yamanashi, Yamanashi 409-3898, Japan

2. The Institute of Enology and Viticulture, University of Yamanashi, Yamanashi 400-0005, Japan

3. Atopy Research Center, Juntendo University School of Medicine, Tokyo 113-8421, Japan

4. Yamanashi GLIA Center, University of Yamanashi, Yamanashi 409-3898, Japan

Abstract

Ethyl caffeate (EC) is a natural phenolic compound that is present in several medicinal plants used to treat inflammatory disorders. However, its anti-inflammatory mechanisms are not fully understood. Here, we report that EC inhibits aryl hydrocarbon receptor (AhR) signaling and that this is associated with its anti-allergic activity. EC inhibited AhR activation, induced by the AhR ligands FICZ and DHNA in AhR signaling-reporter cells and mouse bone marrow-derived mast cells (BMMCs), as assessed by AhR target gene expressions such as CYP1A1. EC also inhibited the FICZ-induced downregulation of AhR expression and DHNA-induced IL-6 production in BMMCs. Furthermore, the pretreatment of mice with orally administered EC inhibited DHNA-induced CYP1A1 expression in the intestine. Notably, both EC and CH-223191, a well-established AhR antagonist, inhibited IgE-mediated degranulation in BMMCs grown in a cell culture medium containing significant amounts of AhR ligands. Furthermore, oral administration of EC or CH-223191 to mice inhibited the PCA reaction associated with the suppression of constitutive CYP1A1 expression within the skin. Collectively, EC inhibited AhR signaling and AhR-mediated potentiation of mast cell activation due to the intrinsic AhR activity in both the culture medium and normal mouse skin. Given the AhR control of inflammation, these findings suggest a novel mechanism for the anti-inflammatory activity of EC.

Funder

Ministry of Education, Culture, Sports, Science and Technology, Japan

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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