Gastrointestinal consequences of lipopolysaccharide-induced lung inflammation

Inflamm Res. 2023 Jan;72(1):57-74. doi: 10.1007/s00011-022-01657-0. Epub 2022 Nov 2.

Abstract

Background: Respiratory inflammation is the body's response to lung infection, trauma or hypersensitivity and is often accompanied by comorbidities, including gastrointestinal (GI) symptoms. Why respiratory inflammation is accompanied by GI dysfunction remains unclear. Here, we investigate the effect of lipopolysaccharide (LPS)-induced lung inflammation on intestinal barrier integrity, tight-junctions, enteric neurons and inflammatory marker expression.

Methods: Female C57bl/6 mice (6-8 weeks) were intratracheally administered LPS (5 µg) or sterile saline, and assessed after either 24 or 72 h. Total and differential cell counts in bronchoalveolar lavage fluid (BALF) were used to evaluate lung inflammation. Intestinal barrier integrity was assessed via cross sectional immunohistochemistry of tight junction markers claudin-1, claudin-4 and EpCAM. Changes in the enteric nervous system (ENS) and inflammation in the intestine were quantified immunohistochemically using neuronal markers Hu + and nNOS, glial markers GFAP and S100β and pan leukocyte marker CD45.

Results: Intratracheal LPS significantly increased the number of neutrophils in BALF at 24 and 72 h. These changes were associated with an increase in CD45 + cells in the ileal mucosa at 24 and 72 h, increased goblet cell expression at 24 h, and increased expression of EpCAM at 72 h. LPS had no effect on the expression of GFAP, S100β, nor the number of Hu + neurons or proportion of nNOS neurons in the myenteric plexus.

Conclusions: Intratracheal LPS administration induces inflammation in the ileum that is associated with enhanced expression of EpCAM, decreased claudin-4 expression and increased goblet cell density, these changes may contribute to systemic inflammation that is known to accompany many inflammatory diseases of the lung.

Keywords: Enteric neurons; Gastrointestinal inflammation; Gut-lung axis; Intestinal barrier; Lung inflammation.

MeSH terms

  • Animals
  • Claudin-4 / metabolism
  • Cross-Sectional Studies
  • Epithelial Cell Adhesion Molecule / metabolism
  • Female
  • Ileum* / pathology
  • Inflammation* / chemically induced
  • Inflammation* / metabolism
  • Lipopolysaccharides / metabolism
  • Lung / metabolism
  • Mice
  • Pneumonia* / chemically induced

Substances

  • Claudin-4
  • Epithelial Cell Adhesion Molecule
  • Lipopolysaccharides