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Updated: Feb 14, 2026

Analysis of Pulmonary Dendritic Cell Maturation and Migration during Allergic Airway Inflammation
Published on: July 23, 2012
Mer-mediated eosinophil efferocytosis regulates resolution of allergic airway inflammation
Jennifer M Felton1, Christopher D Lucas1, David A Dorward1
1MRC Centre for Inflammation Research, the Queen's Medical Research Institute, University of Edinburgh, Edinburgh, United Kingdom.
Background:
Eosinophils play a central role in propagation of allergic diseases, including asthma. Both recruitment and retention of eosinophils regulate pulmonary eosinophilia, but the question of whether alterations in apoptotic cell clearance by phagocytes contributes directly to resolution of allergic airway inflammation remains unexplored.
Objectives:
In this study we investigated the role of the receptor tyrosine kinase Mer in mediating apoptotic eosinophil clearance and allergic airway inflammation resolution in vivo to establish whether apoptotic cell clearance directly affects the resolution of allergic airway inflammation.
Methods:
Alveolar and bone marrow macrophages were used to study Mer-mediated phagocytosis of apoptotic eosinophils. Allergic airway inflammation resolution was modeled in mice by using ovalbumin. Fluorescently labeled apoptotic cells were administered intratracheally or eosinophil apoptosis was driven by administration of dexamethasone to determine apoptotic cell clearance in vivo.
Results:
Inhibition or absence of Mer impaired phagocytosis of apoptotic human and mouse eosinophils by macrophages. Mer-deficient mice showed delayed resolution of ovalbumin-induced allergic airway inflammation, together with increased airway responsiveness to aerosolized methacholine, increased bronchoalveolar lavage fluid protein levels, altered cytokine production, and an excess of uncleared dying eosinophils after dexamethasone treatment. Alveolar macrophage phagocytosis was significantly Mer dependent, with the absence of Mer attenuating apoptotic cell clearance in vivo to enhance inflammation in response to apoptotic cells.
Conclusions:
We demonstrate that Mer-mediated apoptotic cell clearance by phagocytes contributes to resolution of allergic airway inflammation, suggesting that augmenting apoptotic cell clearance is a potential therapeutic strategy for treating allergic airway inflammation.
Insights
Efficient clearance of apoptotic eosinophils by Mer-dependent phagocytes is crucial for resolving allergic airway inflammation. Augmenting this process may offer new therapeutic strategies for conditions like asthma.
Area of Science:
- Immunology
- Cell Biology
- Respiratory Medicine
Background:
- Eosinophils are central to allergic diseases like asthma.
- Pulmonary eosinophilia is regulated by eosinophil recruitment and retention.
- The role of apoptotic cell clearance in resolving allergic airway inflammation is not well understood.
Purpose of the Study:
- To investigate the role of receptor tyrosine kinase Mer in mediating apoptotic eosinophil clearance.
- To determine if Mer-mediated clearance directly impacts the resolution of allergic airway inflammation in vivo.
- To establish whether augmenting apoptotic cell clearance is a potential therapeutic strategy.
Main Methods:
- Utilized alveolar and bone marrow macrophages to study Mer-mediated phagocytosis of apoptotic eosinophils.
- Modeled allergic airway inflammation in mice using ovalbumin.
- Administered fluorescently labeled apoptotic cells intratracheally and induced eosinophil apoptosis with dexamethasone to assess in vivo clearance.
Main Results:
- Mer deficiency impaired macrophage phagocytosis of apoptotic eosinophils and delayed resolution of allergic airway inflammation in mice.
- Mer-deficient mice exhibited increased airway hyperresponsiveness, elevated protein levels in bronchoalveolar lavage fluid, altered cytokine profiles, and uncleared apoptotic eosinophils.
- Alveolar macrophage phagocytosis was Mer-dependent, with Mer absence attenuating clearance and enhancing inflammation.
Conclusions:
- Mer-mediated apoptotic cell clearance by phagocytes contributes to the resolution of allergic airway inflammation.
- Augmenting apoptotic cell clearance presents a potential therapeutic strategy for allergic airway inflammation.
- This study highlights the importance of efficient efferocytosis in managing allergic respiratory diseases.
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