Pollen-associated phytoprostanes inhibit dendritic cell interleukin-12 production and augment T helper type 2 cell polarization

Author:

Traidl-Hoffmann Claudia1,Mariani Valentina1,Hochrein Hubertus2,Karg Kathrin3,Wagner Hermann2,Ring Johannes4,Mueller Martin J.3,Jakob Thilo14,Behrendt Heidrun1

Affiliation:

1. ZAUM-Center for Allergy and Environment, Division of Environmental Dermatology and Allergy GSF/TUM

2. Institute of Medical Microbiology, Immunology and Hygiene

3. Julius-von-Sachs-Institute of Biosciences, Division of Pharmaceutical Biology, University of Würzburg, 97082 Würzburg, Germany

4. Department of Dermatology and Allergy Biederstein, Technische, Universität München, 80802 Munich, Germany

Abstract

Pollen grains induce allergies in susceptible individuals by release of allergens upon contact with mucosal membranes of the upper respiratory tract. We recently demonstrated that pollen not only function as allergen carriers but also as rich sources of bioactive lipids that attract cells involved in allergic inflammation such as neutrophils and eosinophils. Here we demonstrate that soluble factors from birch (Betula alba L.) pollen activate human dendritic cells (DCs) as documented by phenotypical and functional maturation and altered cytokine production. Betula alba L. aqueous pollen extracts (Bet.-APE) selectively inhibited interleukin (IL)-12 p70 production of lipopolysaccharide (LPS)- or CD40L-activated DC, whereas IL-6, IL-10, and TNFα remained unchanged. Presence of Bet.-APE during DC activation resulted in DC with increased T helper type 2 (Th2) cell and reduced Th1 cell polarizing capacity. Chemical analysis of Bet.-APE revealed the presence of phytoprostanes (dinor isoprostanes) with prostaglandin E1-, F1-, A1-, or B1-ring systems of which only E1-phytoprostanes dose dependently inhibited the LPS-induced IL-12 p70 release and augmented the Th2 cell polarizing capacity of DC. These results suggest that pollen-derived E1-phytoprostanes not only resemble endogenous prostaglandin E2 structurally but also functionally in that they act as regulators that modulate human DC function in a fashion that favors Th2 cell polarization.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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