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Updated: Aug 7, 2026

Real-time Imaging of Endothelial Cell-cell Junctions During Neutrophil Transmigration Under Physiological Flow
Published on: August 14, 2014
Regulation of lung neutrophil recruitment by VE-cadherin
Janie Orrington-Myers1, Xiaopei Gao, Panos Kouklis
1Department of Pharmacology, University of Illinois College of Medicine, Chicago, IL 60612, USA.
Abstract:
Lung inflammatory disease is characterized by increased polymorphonuclear leukocyte (PMN) infiltration and vascular permeability. PMN infiltration into tissue involves signaling between endothelial cells and migrating PMNs, which leads to alterations in the organization of adherens junctions (AJs). We addressed the possible role of the protein constituents of AJs, endothelium-specific vascular-endothelial (VE)-cadherin, in the migration of PMNs. Studies were made using VE-cadherin mutant constructs lacking the extracellular domain (DeltaEXD) or, additionally, lacking the COOH-terminus beta-catenin-binding domain (DeltaEXDDeltabeta). Either construct was transduced in pulmonary microvessel endothelia of mice using cationic liposome-encapuslated cDNA constructs injected intravenously. Optimal expression of constructs was seen by Western blot analysis within 24 h. Vessel wall liquid permeability measured as the lung microvessel capillary filtration coefficient increased threefold in DeltaEXD-transduced lungs, indicating patency of interendothelial junctions, whereas the control DeltaEXDDeltabeta construct was ineffective. To study lung tissue PMN recruitment, we challenged mice intraperitoneally with LPS (3 mg/kg) for 6 h and measured PMN numbers by bronchoalveolar lavage and their accumulation morphometrically in lung tissue. DeltaEXD expression markedly reduced the PMN sequestration and migration seen in nontransfected (control wild type) or DeltaEXDDeltabeta-transfected (negative control) mice challenged with LPS. In addition, DeltaEXD transfection suppressed LPS-induced activation of NF-kappaB and consequent ICAM-1 expression. These results suggest that disassembly of VE-cadherin junctions serves as a negative signal for limiting transendothelial PMN migration secondary to decreased ICAM-1 expression in the mouse model of LPS-induced sepsis.
Insights
Vascular-endothelial cadherin (VE-cadherin) disassembly limits inflammatory cell migration in the lungs. This study shows VE-cadherin plays a key role in regulating polymorphonuclear leukocyte (PMN) infiltration during lung inflammation.
Area of Science:
- Immunology
- Cell Biology
- Pulmonary Medicine
Background:
- Lung inflammatory diseases involve increased polymorphonuclear leukocyte (PMN) infiltration and vascular permeability.
- Adherens junctions (AJs) in endothelial cells are crucial for regulating cell migration and vascular integrity.
- Vascular-endothelial cadherin (VE-cadherin) is a key protein component of endothelial AJs.
Purpose of the Study:
- To investigate the role of VE-cadherin in PMN migration across the pulmonary endothelium.
- To determine if manipulating VE-cadherin function affects vascular permeability and PMN recruitment in a mouse model of lung inflammation.
Main Methods:
- Transduction of mouse pulmonary microvessel endothelia with VE-cadherin constructs (DeltaEXD, DeltaEXDDeltabeta) using cationic liposomes.
- Measurement of lung microvessel capillary filtration coefficient to assess vascular permeability.
- Induction of lung inflammation using lipopolysaccharide (LPS) and quantification of PMN infiltration via bronchoalveolar lavage and morphometry.
- Analysis of NF-kappaB activation and ICAM-1 expression.
Main Results:
- Expression of DeltaEXD VE-cadherin construct increased lung microvessel permeability, indicating junctional patency.
- DeltaEXD expression significantly reduced PMN sequestration and migration in LPS-challenged mice.
- DeltaEXD transfection suppressed LPS-induced NF-kappaB activation and subsequent ICAM-1 expression.
Conclusions:
- Disassembly of VE-cadherin junctions acts as a negative signal to limit transendothelial PMN migration.
- VE-cadherin's role in regulating PMN migration is linked to the suppression of NF-kappaB activation and ICAM-1 expression.
- Targeting VE-cadherin may offer a therapeutic strategy for managing lung inflammatory diseases characterized by excessive PMN infiltration.
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