C5aR1 activation in mice controls inflammatory eosinophil recruitment and functions in allergic asthma

Author:

Wiese Anna V.1,Duhn Jannis1,Korkmaz Rabia Ülkü1,Quell Katharina M.1,Osman Ibrahim1,Ender Fanny1,Schröder Torsten12,Lewkowich Ian34ORCID,Hogan Simon5ORCID,Huber‐Lang Markus6,Gumprecht Franziska7,König Peter78,Köhl Jörg1348ORCID,Laumonnier Yves128ORCID

Affiliation:

1. Institute for Systemic Inflammation Research University of Lübeck Lübeck Germany

2. Institute of Nutritional Medicine University Hospital of Schleswig‐Holstein & University of Lübeck Lübeck Germany

3. Division of Immunobiology Cincinnati Children's Hospital Medical Center Cincinnati Ohio USA

4. Department of Pediatrics University of Cincinnati College of Medicine Cincinnati Ohio USA

5. Mary H. Weiser Food Allergy Center, Experimental Pathology, Department of Pathology, Michigan Medicine University of Michigan Ann Arbor Michigan USA

6. Institute of Clinical and Experimental Trauma‐Immunology (ITI) University of Ulm Ulm Germany

7. Institute for Anatomy University of Lübeck Lübeck Germany

8. Airway Research Center North, Member of the German Center for Lung Research (DZL) Lübeck Germany

Abstract

AbstractBackgroundPulmonary eosinophils comprise at least two distinct populations of resident eosinophils (rEOS) and inflammatory eosinophils (iEOS), the latter recruited in response to pulmonary inflammation. Here, we determined the impact of complement activation on rEOS and iEOS trafficking and function in two models of pulmonary inflammation.MethodsBALB/c wild‐type and C5ar1−/− mice were exposed to different allergens or IL‐33. Eosinophil populations in the airways, lung, or mediastinal lymph nodes (mLN) were characterized by FACS or immunohistochemistry. rEOS and iEOS functions were determined in vivo and in vitro.ResultsHDM and IL‐33 exposure induced a strong accumulation of iEOS but not rEOS in the airways, lungs, and mLNs. rEOS and iEOS expressed C3/C5 and C5aR1, which were significantly higher in iEOS. Initial pulmonary trafficking of iEOS was markedly reduced in C5ar1−/− mice and associated with less IL‐5 production from ILC2 cells. Functionally, adoptively transferred pulmonary iEOS from WT but not from C5ar1−/− mice‐induced airway hyperresponsiveness (AHR), which was associated with significantly reduced C5ar1−/− iEOS degranulation. Pulmonary iEOS but not rEOS were frequently associated with T cells in lung tissue. After HDM or IL‐33 exposure, iEOS but not rEOS were found in mLNs, which were significantly reduced in C5ar1−/− mice. C5ar1−/− iEOS expressed less costimulatory molecules, associated with a decreased potency to drive antigen‐specific T cell proliferation and differentiation into memory T cells.ConclusionsWe uncovered novel roles for C5aR1 in iEOS trafficking and activation, which affects key aspects of allergic inflammation such as AHR, ILC2, and T cell activation.

Publisher

Wiley

Subject

Immunology,Immunology and Allergy

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The immunoregulatory potential of eosinophil subsets;Immunology & Cell Biology;2024-09-13

2. The role of mitochondria in eosinophil function: implications for severe asthma pathogenesis;Frontiers in Cell and Developmental Biology;2024-03-01

3. Complement‐mediated immune mechanisms in allergy;European Journal of Immunology;2023-07-09

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