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Intestinal Barrier Function: Molecular Regulation and Disease Pathogenesis

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Date 2009 Jun 30
PMID 19560575
Citations 639
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Abstract

The intestinal epithelium is a single-cell layer that constitutes the largest and most important barrier against the external environment. It acts as a selectively permeable barrier, permitting the absorption of nutrients, electrolytes, and water while maintaining an effective defense against intraluminal toxins, antigens, and enteric flora. The epithelium maintains its selective barrier function through the formation of complex protein-protein networks that mechanically link adjacent cells and seal the intercellular space. The protein networks connecting epithelial cells form 3 adhesive complexes: desmosomes, adherens junctions, and tight junctions. These complexes consist of transmembrane proteins that interact extracellularly with adjacent cells and intracellularly with adaptor proteins that link to the cytoskeleton. Over the past decade, there has been increasing recognition of an association between disrupted intestinal barrier function and the development of autoimmune and inflammatory diseases. In this review we summarize the evolving understanding of the molecular composition and regulation of intestinal barrier function. We discuss the interactions between innate and adaptive immunity and intestinal epithelial barrier function, as well as the effect of exogenous factors on intestinal barrier function. Finally, we summarize clinical and experimental evidence demonstrating intestinal epithelial barrier dysfunction as a major factor contributing to the predisposition to inflammatory diseases, including food allergy, inflammatory bowel diseases, and celiac disease.

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References
1.
Mankertz J, Waller J, Hillenbrand B, Tavalali S, Florian P, Schoneberg T . Gene expression of the tight junction protein occludin includes differential splicing and alternative promoter usage. Biochem Biophys Res Commun. 2002; 298(5):657-66. DOI: 10.1016/s0006-291x(02)02487-7. View

2.
Takeuchi K, Maiden L, Bjarnason I . Genetic aspects of intestinal permeability in inflammatory bowel disease. Novartis Found Symp. 2005; 263:151-8. View

3.
Wang W, Uzzau S, Goldblum S, Fasano A . Human zonulin, a potential modulator of intestinal tight junctions. J Cell Sci. 2000; 113 Pt 24:4435-40. DOI: 10.1242/jcs.113.24.4435. View

4.
Madara J, Trier J . Structural abnormalities of jejunal epithelial cell membranes in celiac sprue. Lab Invest. 1980; 43(3):254-61. View

5.
McDermott J, Bartram R, Knight P, Miller H, Garrod D, Grencis R . Mast cells disrupt epithelial barrier function during enteric nematode infection. Proc Natl Acad Sci U S A. 2003; 100(13):7761-6. PMC: 164661. DOI: 10.1073/pnas.1231488100. View