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Updated: May 16, 2026

Inducing Acute Lung Injury in Mice by Direct Intratracheal Lipopolysaccharide Instillation
Published on: July 6, 2019
ADAM15 deficiency attenuates pulmonary hyperpermeability and acute lung injury in lipopolysaccharide-treated mice
Chongxiu Sun1, Richard S Beard, Danielle L McLean
1Department of Molecular Pharmacology and Physiology, University of South Florida Morsani College of Medicine, Tampa, FL 33612, USA.
Abstract:
ADAM15 is a disintegrin and metalloprotease recently implicated in cancer and chronic immune disorders. We have recently characterized ADAM15 as a mediator of endothelial barrier dysfunction. Whether this molecule contributes to acute inflammation has not been evaluated. The purpose of this study was to investigate the role of ADAM15 in mediating pulmonary microvascular leakage during acute inflammatory injury. Immunofluorescent staining and Western blotting revealed that the endothelium was the main source of ADAM15 in lung tissue. In a mouse model of acute lung injury induced by lipopolysaccharide (LPS), upregulation of ADAM15 was observed in association with pulmonary edema and neutrophil infiltration. The LPS-induced inflammatory injury, as demonstrated by bronchoalveolar lavage neutrophil count, lung wet-to-dry weight ratio, and myeloperoxidase activity, was significantly attenuated in Adam15(-/-) mice. Studies with primary cell culture demonstrated abundant ADAM15 expression in endothelial cells (ECs) of mouse lung but not in neutrophils. Deficiency of ADAM15 in ECs had no obvious effect on basal permeability but significantly attenuated hyperpermeability response to LPS as evidenced by albumin flux assay and measurements of transendothelial electrical resistance, respectively. ADAM15 deficiency also reduced neutrophil chemotactic transmigration across endothelial barriers in the presence or absence of formyl-methionyl-leucyl-phenylalanine (fMLP). Rescue expression of ADAM15 in Adam15(-/-) ECs restored neutrophil transendothelial migration. These data indicate that ADAM15 upregulation contributes to inflammatory lung injury by promoting endothelial hyperpermeability and neutrophil transmigration.
Insights
ADAM15 (a disintegrin and metalloprotease) contributes to acute lung injury by increasing endothelial barrier dysfunction and neutrophil migration. Reducing ADAM15 levels ameliorates inflammatory lung damage.
Area of Science:
- Molecular Biology
- Immunology
- Pathology
Background:
- ADAM15 (a disintegrin and metalloprotease) is implicated in cancer and chronic immune disorders.
- ADAM15 mediates endothelial barrier dysfunction.
- The role of ADAM15 in acute inflammation is not well understood.
Purpose of the Study:
- To investigate the role of ADAM15 in mediating pulmonary microvascular leakage during acute inflammatory injury.
- To determine if ADAM15 contributes to lipopolysaccharide (LPS)-induced acute lung injury.
Main Methods:
- Immunofluorescent staining and Western blotting to detect ADAM15 expression in lung tissue.
- A mouse model of LPS-induced acute lung injury.
- Primary endothelial cell (EC) cultures to assess permeability and neutrophil transmigration.
- Analysis of bronchoalveolar lavage, lung wet-to-dry weight ratio, and myeloperoxidase activity.
Main Results:
- ADAM15 is primarily expressed by lung endothelium and upregulated during LPS-induced acute lung injury.
- Adam15(-/-) mice exhibited significantly attenuated lung injury, edema, and neutrophil infiltration.
- ADAM15 deficiency in ECs reduced LPS-induced hyperpermeability and neutrophil transmigration.
- Rescue expression of ADAM15 in ECs restored neutrophil migration.
Conclusions:
- ADAM15 upregulation contributes to inflammatory lung injury.
- ADAM15 promotes endothelial hyperpermeability and neutrophil transmigration, key features of acute lung injury.
- Targeting ADAM15 may offer a therapeutic strategy for acute inflammatory lung conditions.

