Journal of Epithelial Biology & Pharmacology

2008, 1 : 1-7
Published online 2008 May 9. DOI: 10.2174/1875044300801010001
Publisher ID: JEBP-1-1

Electrolyte and Fluid Transport in Mesothelial Cells

Hong-Long Ji and Hong-Guang Nie
Department of Biochemistry, University of Texas Health Science Center at Tyler, 11937 US Highway 271, BMR 604, Tyler, TX 75708, USA.

ABSTRACT

Mesothelial cells are specialized epithelial cells, which line the pleural, pericardial, and peritoneal cavities. Accumulating evidence suggests that the monolayer of mesothelial cells is permeable to electrolyte and fluid, and thereby govern both fluid secretion and re-absorption in the serosal cavities. Disorders in these salt and fluid transport systems may be fundamental in the pathogenesis of pleural effusion, pericardial effusion, and ascites. In this review, we discuss the location, physiological function, and regulation of active transport (Na+-K+-ATPase) systems, cation and anion channels (Na+, K+, Cl-, and Ca2+ channels), antiport (exchangers) systems, and symport (co-transporters) systems, and water channels (aquaporins). These secretive and absorptive pathways across mesothelial monolayer cells for electrolytes and fluid may provide pivotal therapeutical targets for novel clinical intervention in edematous diseases of serous cavities.

Keywords:

mesothelioma, ion channel, permeability.