Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6371572 | Journal of Theoretical Biology | 2010 | 8 Pages |
Abstract
Fluid secreted by the airway epithelium is used to maintain the depth of the periciliary liquid (PCL) above the apical membrane of the epithelial cells lining the bronchial airways. Previous mathematical models have been published which separately consider the electrophysiology involved in regulating periciliary liquid depth, and the transmission of intracellular calcium waves in airway epithelial tissue. In this paper we present a mathematical model that combines these previous models and allows the effect of oscillations in intracellular calcium on fluid secretion by airway epithelial cells to be investigated. We show that an oscillatory calcium response produces different fluid secretion properties to that elicited by a tonic rise in intracellular calcium. These differences are shown to be due to saturation of the Ca2+ activated ion channels.
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Authors
N.J. Warren, M.H. Tawhai, E.J. Crampin,