Back to Search Start Over

Cell deformation at the air-liquid interface induces Ca2+-dependent ATP release from lung epithelial cells

Authors :
Ryszard Grygorczyk
Lalla Siham Cherkaoui
Ronaldo Ramsingh
Yves Berthiaume
Anna Solecki
Alexandra Grygorczyk
Source :
American Journal of Physiology-Lung Cellular and Molecular Physiology. 300:L587-L595
Publication Year :
2011
Publisher :
American Physiological Society, 2011.

Abstract

Extracellular nucleotides regulate mucociliary clearance in the airways and surfactant secretion in alveoli. Their release is exquisitely mechanosensitive and may be induced by stretch as well as airflow shear stress acting on lung epithelia. We hypothesized that, in addition, tension forces at the air-liquid interface (ALI) may contribute to mechanosensitive ATP release in the lungs. Local depletion of airway surface liquid, mucins, and surfactants, which normally protect epithelial surfaces, facilitate such release and trigger compensatory mucin and fluid secretion processes. In this study, human bronchial epithelial 16HBE14o−and alveolar A549 cells were subjected to tension forces at the ALI by passing an air bubble over the cell monolayer in a flow-through chamber, or by air exposure while tilting the cell culture dish. Such stimulation induced significant ATP release not involving cell lysis, as verified by ethidium bromide staining. Confocal fluorescence microscopy disclosed reversible cell deformation in the monolayer part in contact with the ALI. Fura 2 fluorescence imaging revealed transient intracellular Ca2+elevation evoked by the ALI, which did not entail nonspecific Ca2+influx from the extracellular space. ATP release was reduced by ∼40 to ∼90% from cells loaded with the Ca2+chelator BAPTA-AM and was completely abolished by N-ethylmalemide (1 mM). These experiments demonstrate that in close proximity to the ALI, surface tension forces are transmitted directly on cells, causing their mechanical deformation and Ca2+-dependent exocytotic ATP release. Such a signaling mechanism may contribute to the detection of local deficiency of airway surface liquid and surfactants on the lung surface.

Details

ISSN :
15221504 and 10400605
Volume :
300
Database :
OpenAIRE
Journal :
American Journal of Physiology-Lung Cellular and Molecular Physiology
Accession number :
edsair.doi.dedup.....afff5b83980dad10f4db31af4456a10b