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Title

Dynamic Imaging Reveals Coordinate Effects of Cyclic Stretch and Substrate Stiffness on Endothelial Integrity.

Authors

Dan, Arkaprava; Huang, Ryan; Leckband, Deborah

Abstract

We describe an equibiaxial cell stretcher and hybrid, elastic membrane platform designed for dynamic imaging of cells on substrates with physiological stiffness undergoing cyclic stretch. Studies enabled by this device revealed that both substrate stiffness and cyclic stretch coordinately protect pulmonary endothelial monolayers against thrombin-induced disruption. The fluorescence imaging possible with the designed hybrid membranes further revealed similarities and differences in actin and cell dynamics during monolayer recovery. The improved live-cell imaging capabilities of this platform, when used in conjunction with fluorescent probes, will have broad applications for investigations of the impact of biochemical stimuli and mechanotransduction mechanisms on mechanically perturbed tissues.

Subjects

ENDOTHELIAL cells; PULMONARY endothelium; ACTIN; ELASTICITY; STIFFNESS (Mechanics)

Publication

Annals of Biomedical Engineering, 2016, Vol 44, Issue 12, p3655

ISSN

0090-6964

Publication type

Academic Journal

DOI

10.1007/s10439-016-1677-4

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