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PMID: 17944028 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Conjugated primary bile salts reduce permeability of endotoxin through intestinal epithelial cells and synergize with phosphatidylcholine in suppression of inflammatory cytokine production.

Critical care medicine ·Vol. 35 ·No. 10 ·2007-10-00 ·Pages 2367-74

Parlesak A, Schaeckeler S, Moser L, Bode C

Abstract

Endotoxemia was shown to be integral in the pathophysiology of obstructive jaundice. In the current study, the role of conjugated primary bile salts (CPBS) and phosphatidylcholine on the permeability of endotoxin through a layer of intestinal epithelial cells and the consequent activation of basolaterally cocultured human mononuclear leukocytes were measured. In a coculture model, a layer of differentiated, confluent Caco-2 cells was apically stimulated with growth-arrested, nonpathogenic Escherichia coli. Basic human cell culture laboratory. The effect of CPBS (0.5 mM and 1.5 mM), phosphatidylcholine (0.38 mM), and human bile (0.5% vol/vol) on the barrier function was assessed by the measurement of transepithelial electrical resistance, by endotoxin permeability through the intestinal epithelial cell layer, and by basolateral cytokine enzyme-linked immunosorbent assay measurement (tumor necrosis factor-[alpha], interleukins-6, -8, and -10). Micelles formed by CPBS were detected by dynamic light scattering. The association of endotoxin with CPBS micelles was tested by fluorescence resonance energy transfer. Apical addition of CPBS suppressed the permeability of endotoxins through the intestinal epithelial cell layer significantly. In parallel, apical supplementation of CPBS dose-dependently reduced the basolateral production of all cytokines measured. Apical phosphatidylcholine supplementation enhanced this effect significantly. CPBS formed micelles (diameter, 134 +/- 7 nm), which were able to bind endotoxin to their surface. CPBS can reduce the permeation of endotoxin through intestinal epithelial cell layers by binding it to micelles. Thereby, the inflammatory processes beyond the mucosal surface are suppressed, an effect that is enhanced by phosphatidylcholine.

MeSH Terms
Bile Acids and Salts/physiology Cells, Cultured Endotoxins/metabolism Humans Inflammation/immunology,metabolism Interleukin-10/biosynthesis Interleukin-6/biosynthesis Interleukin-8/biosynthesis Intestinal Mucosa/cytology,metabolism Permeability Phosphatidylcholines/physiology Tumor Necrosis Factor-alpha/biosynthesis
Chemicals
Bile Acids and Salts Endotoxins Interleukin-6 Interleukin-8 Phosphatidylcholines Tumor Necrosis Factor-alpha Interleukin-10
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Parlesak Alexandr
Nutritional Immunology Group, Biocentrum, Technical University of Denmark, Lyngby, Denmark. [email protected]
Schaeckeler Simone
Moser Lydia
Bode Christiane
Article Info
Journal
Critical care medicine
Abbr.
Crit Care Med
ISSN
0090-3493
Published
2007-10-00
Pages
2367-74
Language
English
Region
United States
NLM ID
0355501
Subset
IM
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