Three-dimensional changes of the cytoskeleton of vascular endothelial cells exposed to sustained hydrostatic pressure.

Abstract:

:The three-dimensional changes in the cytoskeleton and in cell proliferation of bovine pulmonary artery endothelial cells when exposed to sustained hydrostatic pressure were investigated in vitro using laser scanning confocal microscopy. Subconfluent endothelial cells on rigid substrates were exposed to 1.5, 5 and 10 cm H2O pressure under hydrostatic heads of culture medium for up to seven days. Confocal microscopic images were taken at distances of 0.4 micron through the thickness of the sample and visualised in multiplanar, stereopair and 90 degrees rotation formats. The results of the study provide evidence of: increased proliferation after exposure to 10 cm H2O pressure for five and seven days; cell bilayering after exposure to 1.5 and 5 cm H2O pressure and trilayering after exposure to 10 cm H2O pressure for seven days; and F-actin filament reorganisation into centrally located, parallel, stress fibres in confluent cells, into peripheral bands in subconfluent, multilayered cells, and into multilayers in the plane perpendicular to the applied force.

journal_name

Med Biol Eng Comput

authors

Salwen SA,Szarowski DH,Turner JN,Bizios R

doi

10.1007/BF02523225

keywords:

subject

Has Abstract

pub_date

1998-07-01 00:00:00

pages

520-7

issue

4

eissn

0140-0118

issn

1741-0444

journal_volume

36

pub_type

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