Published June 1987 | Version v1
Journal article

Correlation of permeability with the structure of the endothelial layer of pulmonary artery intimal explants

  • 1. Vanderbilt Univ. Medical Center, Nashville, TN (USA)

Description

Changes in vascular permeability are associated with structural damage to endothelial cells. These functional and structural changes can be produced experimentally and examined by using intimal explants from bovine pulmonary artery. Correlation of functional with structural changes allows the authors to dissect the mechanisms responsible for endothelial damage. They have shown that incubation of intimal explants with histamine causes transient formation of interendothelial dilations and an increased rate of equilibration of tritiated water and [14C]sucrose across the intimal explant. Exposure to endotoxin also causes interendothial dilations but the endothelial damage is more severe than that with histamine, and in vivo experiments show a more prolonged increase in pulmonary vascular permeability. Leukocyte migration has also been suggested to result in a decreased barrier function of the endothelial layer. Experiments with the endothelial layer of intimal explants and separated bovine leukocytes suggest that transendothelial migration may depend on the chemotactic stimulus. Migration toward lymphocyte-conditioned medium does result in increased equilibration of [14C]sucrose. Finally, a theoretical model has been used to examine the permeability changes seen for the intimal explants exposed to histamine. The model consists of two compartments with radioactive tracers diffusing across a filter of known permeability. Such a model gives good agreement with data obtained in intact sheep, indicating that mathematical models allow quantitative estimates of barrier function in intimal explants that compare favorably with in vivo data

Additional details

Publishing Information

Journal Title
Fed. Proc., Fed. Am. Soc. Exp. Biol.
Journal Volume
46
Journal Issue
8
Series
Fed. Proc., Fed. Am. Soc. Exp. Biol.
Journal Page Range
2516
ISSN
0014-9446
CODEN
FEPRA