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Updated: Jun 29, 2026

In vitro Coculture Assay to Assess Pathogen Induced Neutrophil Trans-epithelial Migration
Published on: January 6, 2014
Neutrophil-mediated activation of epithelial protease-activated receptors-1 and -2 regulates barrier function and
Alex C Chin1, Winston Y Lee, Asma Nusrat
1Epithelial Pathobiology Unit and Department of Pathology and Laboratory Medicine, Emory University, Atlanta, GA 30322, USA. achin@emory.edu
Abstract:
Neutrophil (PMN) infiltration and associated release of serine proteases contribute to epithelial injury during active phases of mucosal disorders such as inflammatory bowel disease. Previous studies have demonstrated that PMN contact with basolateral surfaces of intestinal epithelial cells in the presence of a chemoattractant results in disruption of barrier function even without transmigration. Similarly, serine protease-mediated activation of epithelial protease-activated receptors (PARs) has been shown to increase permeability. In this study, we assessed whether transmigrating PMNs can regulate barrier function through epithelial PAR activation. Transepithelial resistance (TER) decreased significantly after PMN contact with basolateral surfaces of T84 monolayers or after incubation with PMN elastase and proteinase-3, but not cathepsin G. Inhibition of PMN serine proteases, but not selective inhibition of elastase or cathepsin G, prevented the fall in TER induced by PMN contact and blocked PMN transepithelial migration. Basolateral, but not apical, PAR-1 and -2 activation with selective agonists also decreased TER. PAR-1 and -2 were localized intracellularly and in close proximity to lateral surfaces beneath tight junctions, and expression was increased in colonic mucosa from individuals with Crohn's disease. Combined, but not individual, transfection with small interfering RNAs targeted against epithelial PAR-1 and -2, prevented the fall in TER induced by PMN contact. Furthermore, basolateral PAR-1 and -2 activation induced phosphorylation of myosin L chain kinase and regulatory myosin L chain. Lastly, epithelial PAR-1 and -2 knockdown decreased the rate of PMN transepithelial migration. These results suggest that protease-mediated epithelial PAR-1 and -2 activation, by migrating PMNs, induces signaling events that increase epithelial permeability thereby facilitates PMN transepithelial migration.
Insights
Neutrophil serine proteases activate epithelial protease-activated receptors (PARs), increasing intestinal permeability and facilitating neutrophil migration in inflammatory bowel disease.
Area of Science:
- Gastroenterology
- Immunology
- Cell Biology
Background:
- Neutrophil (PMN) infiltration and serine protease release contribute to epithelial injury in inflammatory bowel disease.
- PMN interaction with intestinal epithelial cells disrupts barrier function, and serine proteases activate protease-activated receptors (PARs), increasing permeability.
Purpose of the Study:
- To investigate whether transmigrating neutrophils regulate intestinal barrier function via epithelial PAR activation.
Main Methods:
- Assessed transepithelial resistance (TER) in T84 monolayers after PMN contact or incubation with PMN proteases.
- Utilized selective inhibitors and small interfering RNAs (siRNAs) targeting PAR-1 and PAR-2.
- Examined PAR localization, expression in Crohn's disease mucosa, and downstream signaling pathways.
Main Results:
- PMN contact and specific serine proteases (elastase, proteinase-3) significantly decreased TER.
- Inhibition of PMN serine proteases blocked TER reduction and PMN migration.
- Basolateral PAR-1 and -2 activation decreased TER, localized to lateral surfaces, and increased in Crohn's disease mucosa.
- PAR-1 and -2 knockdown prevented TER decrease and reduced PMN migration.
Conclusions:
- Protease-mediated epithelial PAR-1 and -2 activation by migrating neutrophils increases intestinal permeability.
- This process involves myosin light chain kinase phosphorylation and facilitates neutrophil transepithelial migration.
- Targeting PAR-1 and -2 may offer therapeutic strategies for inflammatory bowel disease.
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