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Inducing Acute Lung Injury in Mice by Direct Intratracheal Lipopolysaccharide Instillation
Published on: July 6, 2019
MLCK210 gene knockout or kinase inhibition preserves lung function following endotoxin-induced lung injury in mice
Janet L Rossi1, Anastasia V Velentza, David M Steinhorn
1Center for Drug Discovery and Chemical Biology, Department of Pediatrics, Northwestern University Feinberg School of Medicine, Northwestern Univ., 303 E. Chicago Ave., Ward 8-196, Chicago, IL 60611, USA. j-rossi@northwestern.edu
Abstract:
Barrier dysfunction, involving the endothelium or epithelium, is implicated in the pathophysiology of many disease states, including acute and ventilator-associated lung injury. Evidence from cell culture, in vivo and clinical studies, has identified myosin light chain kinase as a drug discovery target for such diseases. Here, we measured disease-relevant end points to test the hypothesis that inhibition of myosin light chain kinase is a potential therapeutic target for treatment of barrier dysfunction resulting from acute lung injury. We used a combined gene knockout and chemical biology approach with an in vivo intact lung injury model. We showed that inhibition of myosin light chain kinase protects lung function, preserves oxygenation, prevents acidosis, and enhances survival after endotoxin exposure with subsequent mechanical ventilation. This protective effect provided by the small molecule inhibitor of myosin light chain kinase is present when the inhibitor is administered during a clinically relevant injury paradigm after endotoxin exposure. Treatment with inhibitor confers additional protection against acute lung injury to that provided by a standard protective mode of ventilation. These results support the hypothesis that myosin light chain kinase is a potential therapeutic target for acute lung injury and provide clinical end points of arterial blood gases and pulmonary compliance that facilitate the direct extrapolation of these studies to measures used in critical care medicine.
Insights
Inhibiting myosin light chain kinase (MLCK) protects lung function and improves survival in acute lung injury models. This finding supports MLCK as a therapeutic target for lung barrier dysfunction.
Area of Science:
- Pulmonary Medicine
- Pharmacology
- Cell Biology
Background:
- Barrier dysfunction in endothelium or epithelium contributes to acute lung injury (ALI) and ventilator-associated lung injury.
- Myosin light chain kinase (MLCK) has been identified as a potential drug discovery target for diseases involving barrier dysfunction.
Purpose of the Study:
- To test the hypothesis that inhibiting MLCK is a viable therapeutic strategy for treating barrier dysfunction in acute lung injury.
Main Methods:
- Utilized a gene knockout and chemical biology approach in an in vivo lung injury model.
- Administered a small molecule inhibitor of MLCK during a clinically relevant injury paradigm.
Main Results:
- MLCK inhibition protected lung function, improved oxygenation, prevented acidosis, and enhanced survival following endotoxin exposure and mechanical ventilation.
- Treatment with the MLCK inhibitor provided additional protection beyond standard protective ventilation strategies.
Conclusions:
- Myosin light chain kinase is a promising therapeutic target for acute lung injury.
- Clinical endpoints such as arterial blood gases and pulmonary compliance can be used to evaluate MLCK inhibition in critical care settings.

