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.

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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