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Allergic airway inflammation induces upregulation of the expression of IL-23R by macrophages and not in CD3 + T cells and CD11c.sup.+F4/80.sup.- dendritic cells of the lung
Ist Teil von
Cell and tissue research, 2022-07, Vol.389 (1), p.85
Ort / Verlag
Springer
Erscheinungsjahr
2022
Quelle
SpringerLink_现刊
Beschreibungen/Notizen
Interleukin 23 and the interleukin 23 receptor (IL-23-IL23R) are described as the major enhancing factors for Interleukin 17 (IL-17) in allergic airway inflammation. IL-17 is considered to induce neutrophilic inflammation in the lung, which is often observed in severe, steroid-resistant asthma-phenotypes. For that reason, understanding of IL-23 and IL-17 axis is very important for future therapy strategies, targeting neutrophil pathway of bronchial asthma. This study aimed to investigate the distribution and expression of IL-23R under physiological and inflammatory conditions. Therefore, a house dust mite (HDM) model of allergic airway inflammation was performed by treating mice with HDM intranasally. Immunofluorescence staining with panel of antibodies was performed in lung tissues to examine the macrophage, dendritic cell, and T cell subpopulations. The allergic airway inflammation was quantified by histopathological analysis, ELISA measurements, and airway function. HDM-treated mice exhibited a significant allergic airway inflammation including higher amounts of NE.sup.+ cells in lung parenchyma. We found only a small amount of IL-23R positives, out of total CD3.sup.+T cells, and no upregulation in HDM-treated animals. In contrast, the populations of F4/80.sup.+ macrophages and CD11c.sup.+F4/80.sup.- dendritic cells (DCs) with IL-23R expression were found to be higher. But HDM treatment leads to a significant increase of IL-23R.sup.+ macrophages, only. IL-23R was expressed by every examined macrophage subpopulation, whereas only M[phi]1 and hybrids between M[phi]1 and M[phi]2 phenotype and not M[phi]2 were found to upregulate IL-23R. Co-localization of IL-23R and IL-17 was only observed in F4/80.sup.+ macrophages, suggesting F4/80.sup.+ macrophages express IL-23R along with IL-17 in lung tissue. The study revealed that macrophages involving the IL-23 and IL-17 pathway may provide a potential interesting therapeutic target in neutrophilic bronchial asthma.