Acidic bile salts modulate the squamous epithelial barrier function by modulating tight junction proteins

Am J Physiol Gastrointest Liver Physiol. 2011 Aug;301(2):G203-9. doi: 10.1152/ajpgi.00096.2011. Epub 2011 May 26.

Abstract

Experimental models for esophageal epithelium in vitro either suffer from poor differentiation or complicated culture systems. An air-liquid interface system with normal human bronchial epithelial cells can serve as a model of esophageal-like squamous epithelial cell layers. Here, we explore the influence of bile acids on barrier function and tight junction (TJ) proteins. The cells were treated with taurocholic acid (TCA), glycocholic acid (GCA), or deoxycholic acid (DCA) at different pH values, or with pepsin. Barrier function was measured by transepithelial electrical resistance (TEER) and the diffusion of paracellular tracers (permeability). The expression of TJ proteins, including claudin-1 and claudin-4, was examined by Western blotting of 1% Nonidet P-40-soluble and -insoluble fractions. TCA and GCA dose-dependently decreased TEER and increased paracellular permeability at pH 3 after 1 h. TCA (4 mM) or GCA (4 mM) did not change TEER and permeability at pH 7.4 or pH 4. The combination of TCA and GCA at pH 3 significantly decreased TEER and increased permeability at lower concentrations (2 mM). Pepsin (4 mg/ml, pH 3) did not have any effect on barrier function. DCA significantly decreased the TEER and increased permeability at pH 6, a weakly acidic condition. TCA (4 mM) and GCA (4 mM) significantly decreased the insoluble fractions of claudin-1 and claudin-4 at pH 3. In conclusion, acidic bile salts disrupted the squamous epithelial barrier function partly by modulating the amounts of claudin-1 and claudin-4. These results provide new insights for understanding the role of TJ proteins in esophagitis.

MeSH terms

  • Bronchi / cytology
  • Cell Line
  • Claudin-1
  • Claudin-4
  • Deoxycholic Acid / pharmacology*
  • Electric Impedance
  • Epithelial Cells / drug effects
  • Epithelial Cells / metabolism
  • Epithelial Cells / physiology
  • Epithelium / drug effects*
  • Epithelium / metabolism*
  • Epithelium / physiology
  • Esophagus / cytology
  • Esophagus / physiology
  • Glycocholic Acid / pharmacology*
  • Humans
  • Hydrogen-Ion Concentration
  • Membrane Proteins / metabolism*
  • Models, Biological
  • Pepsin A / pharmacology
  • Permeability / drug effects
  • Respiratory Mucosa / cytology
  • Taurocholic Acid / pharmacology*
  • Tight Junctions / drug effects*
  • Tight Junctions / metabolism

Substances

  • CLDN1 protein, human
  • CLDN4 protein, human
  • Claudin-1
  • Claudin-4
  • Membrane Proteins
  • Deoxycholic Acid
  • Taurocholic Acid
  • Pepsin A
  • Glycocholic Acid