Characterization of mouse alveolar epithelial cell monolayers

L DeMaio, W Tseng, Z Balverde… - … of Physiology-Lung …, 2009 - journals.physiology.org
L DeMaio, W Tseng, Z Balverde, JR Alvarez, KJ Kim, DG Kelley, RM Senior, ED Crandall…
American Journal of Physiology-Lung Cellular and Molecular …, 2009journals.physiology.org
We investigated the influence of extracellular matrix on transport properties of mouse
alveolar epithelial cell (AEC) monolayers (MAECM) and transdifferentiation of isolated
mouse alveolar epithelial type II (AT2) cells into an alveolar epithelial type I (AT1) cell-like
phenotype. Primary mouse AT2 cells plated on laminin 5-coated polycarbonate filters
formed monolayers with transepithelial resistance (RT) and equivalent short-circuit current (I
EQ) of 1.8 kΩ· cm2 and 5.3 μA/cm2, respectively, after 8 days in culture. Amiloride (10 μM) …
We investigated the influence of extracellular matrix on transport properties of mouse alveolar epithelial cell (AEC) monolayers (MAECM) and transdifferentiation of isolated mouse alveolar epithelial type II (AT2) cells into an alveolar epithelial type I (AT1) cell-like phenotype. Primary mouse AT2 cells plated on laminin 5-coated polycarbonate filters formed monolayers with transepithelial resistance (RT) and equivalent short-circuit current (IEQ) of 1.8 kΩ·cm2 and 5.3 μA/cm2, respectively, after 8 days in culture. Amiloride (10 μM), ouabain (0.1 mM), and pimozide (10 μM) decreased MAECM IEQ to 40%, 10%, and 65% of its initial value, respectively. Sequential addition of pimozide and amiloride, in either order, revealed that their inhibitory effects are additive, suggesting that cyclic nucleotide-gated channels contribute to amiloride-insensitive active ion transport across MAECM. Ussing chamber measurements of unidirectional ion fluxes across MAECM under short-circuit conditions indicated that net absorption of Na+ in the apical-to-basolateral direction is comparable to net ion flux calculated from the observed short-circuit current: 0.38 and 0.33 μeq·cm−2·h−1, respectively. Between days 1 and 9 in culture, AEC demonstrated increased expression of aquaporin-5 protein, an AT1 cell marker, and decreased expression of pro-surfactant protein-C protein, an AT2 cell marker, consistent with transition to an AT1 cell-like phenotype. These results demonstrate that AT1 cell-like MAECM grown on laminin 5-coated polycarbonate filters exhibit active and passive transport properties that likely reflect the properties of intact mouse alveolar epithelium. This mouse in vitro model will enhance the study of AEC derived from mutant strains of mice and help define important structure-function correlations.
American Physiological Society