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In vitro Coculture Assay to Assess Pathogen Induced Neutrophil Trans-epithelial Migration
Published on: January 6, 2014
Salmonella typhimurium attachment to human intestinal epithelial monolayers: transcellular signalling to
B A McCormick1, S P Colgan, C Delp-Archer
1Department of Pathology, Brigham and Women's Hospital, Boston, Massachusetts 02115.
Abstract:
In human intestinal disease induced by Salmonella typhimurium, transepithelial migration of neutrophils (PMN) rapidly follows attachment of the bacteria to the epithelial apical membrane. In this report, we model those interactions in vitro, using polarized monolayers of the human intestinal epithelial cell, T84, isolated human PMN, and S. typhimurium. We show that Salmonella attachment to T84 cell apical membranes did not alter monolayer integrity as assessed by transepithelial resistance and measurements of ion transport. However, when human neutrophils were subsequently placed on the basolateral surface of monolayers apically colonized by Salmonella, physiologically directed transepithelial PMN migration ensued. In contrast, attachment of a non-pathogenic Escherichia coli strain to the apical membrane of epithelial cells at comparable densities failed to stimulate a directed PMN transepithelial migration. Use of the n-formyl-peptide receptor antagonist N-t-BOC-1-methionyl-1-leucyl-1- phenylalanine (tBOC-MLP) indicated that the Salmonella-induced PMN transepithelial migration response was not attributable to the classical pathway by which bacteria induce directed migration of PMN. Moreover, the PMN transmigration response required Salmonella adhesion to the epithelial apical membrane and subsequent reciprocal protein synthesis in both bacteria and epithelial cells. Among the events stimulated by this interaction was the epithelial synthesis and polarized release of the potent PMN chemotactic peptide interleukin-8 (IL-8). However, IL-8 neutralization, transfer, and induction experiments indicated that this cytokine was not responsible for the elicited PMN transmigration. These data indicate that a novel transcellular pathway exists in which subepithelial PMN respond to lumenal pathogens across a functionally intact epithelium. Based on the known unique characteristics of the intestinal mucosa, we speculate that IL-8 may act in concert with an as yet unidentified transcellular chemotactic factor(s) (TCF) which directs PMN migration across the intestinal epithelium.
Insights
Salmonella typhimurium triggers neutrophil migration across intestinal cells via a novel pathway, not involving typical inflammatory signals like IL-8. This process requires bacterial attachment and host-pathogen protein synthesis for directed neutrophil transmigration.
Area of Science:
- Microbiology
- Immunology
- Gastroenterology
Background:
- Salmonella typhimurium infection causes intestinal disease characterized by neutrophil migration.
- Neutrophil transepithelial migration is crucial for host defense against enteric pathogens.
Purpose of the Study:
- To model and elucidate the mechanism of Salmonella-induced neutrophil transepithelial migration in vitro.
- To investigate the role of epithelial integrity, bacterial adhesion, and host-pathogen signaling in neutrophil transmigration.
Main Methods:
- Utilized polarized T84 human intestinal epithelial cell monolayers apically colonized with Salmonella typhimurium.
- Assessed monolayer integrity via transepithelial resistance and ion transport measurements.
- Investigated neutrophil migration by placing human neutrophils on the basolateral surface and using receptor antagonists and cytokine neutralization.
Main Results:
- Salmonella attachment did not compromise epithelial monolayer integrity.
- Apical Salmonella colonization induced directed transepithelial migration of neutrophils (PMN) from the basolateral side.
- This migration required Salmonella adhesion, reciprocal protein synthesis, and was independent of the classical n-formyl-peptide receptor pathway and IL-8 signaling.
Conclusions:
- A novel transcellular pathway mediates Salmonella-induced PMN transmigration across an intact intestinal epithelium.
- This pathway involves subepithelial neutrophils responding to luminal pathogens through mechanisms distinct from classical chemotaxis.
- Further research is needed to identify the transcellular chemotactic factors involved in this novel pathway.
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