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Characterization of Immune Cells and Proinflammatory Mediators in the Pulmonary Environment
Published on: June 24, 2020
DAP12 expression in lung macrophages mediates ischemia/reperfusion injury by promoting neutrophil extravasation
Jessica H Spahn1, Wenjun Li1, Alejandro C Bribriesco1
1Department of Surgery, Washington University, St. Louis, MO 63110;
Abstract:
Neutrophils are critical mediators of innate immune responses and contribute to tissue injury. However, immune pathways that regulate neutrophil recruitment to injured tissues during noninfectious inflammation remain poorly understood. DAP12 is a cell membrane-associated protein that is expressed in myeloid cells and can either augment or dampen innate inflammatory responses during infections. To elucidate the role of DAP12 in pulmonary ischemia/reperfusion injury (IRI), we took advantage of a clinically relevant mouse model of transplant-mediated lung IRI. This technique allowed us to dissect the importance of DAP12 in tissue-resident cells and those that infiltrate injured tissue from the periphery during noninfectious inflammation. Macrophages in both mouse and human lungs that have been subjected to cold ischemic storage express DAP12. We found that donor, but not recipient, deficiency in DAP12 protected against pulmonary IRI. Analysis of the immune response showed that DAP12 promotes the survival of tissue-resident alveolar macrophages and contributes to local production of neutrophil chemoattractants. Intravital imaging demonstrated a transendothelial migration defect into DAP12-deficient lungs, which can be rescued by local administration of the neutrophil chemokine CXCL2. We have uncovered a previously unrecognized role for DAP12 expression in tissue-resident alveolar macrophages in mediating acute noninfectious tissue injury through regulation of neutrophil trafficking.
Insights
Donor DAP12 deficiency protects against lung injury by regulating immune cell trafficking. This study reveals DAP12’s role in tissue-resident macrophages during noninfectious inflammation.
Area of Science:
- Immunology
- Cell Biology
- Transplantation Science
Background:
- Neutrophils mediate innate immunity and tissue damage.
- Pathways regulating neutrophil recruitment in noninfectious inflammation are unclear.
- DAP12 (DNAX-activating protein 12) is involved in myeloid cell inflammatory responses.
Purpose of the Study:
- To investigate the role of DAP12 in pulmonary ischemia/reperfusion injury (IRI).
- To understand DAP12's function in tissue-resident versus infiltrating immune cells during noninfectious inflammation.
Main Methods:
- Utilized a mouse model of transplant-mediated lung IRI.
- Analyzed immune responses in DAP12-deficient and wild-type mice.
- Employed intravital imaging to observe neutrophil migration.
Main Results:
- Donor, but not recipient, DAP12 deficiency conferred protection against pulmonary IRI.
- DAP12 promotes survival of tissue-resident alveolar macrophages.
- DAP12 deficiency impaired neutrophil chemoattractant production and transendothelial migration.
Conclusions:
- DAP12 expression in tissue-resident alveolar macrophages is critical for mediating acute noninfectious lung injury.
- DAP12 regulates neutrophil trafficking to injured lung tissue.
- Targeting DAP12 may offer therapeutic strategies for noninfectious inflammatory lung injury.
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