Hyperpermeability of pulmonary endothelial monolayer: Protective role of phosphodiesterase isoenzymes 3 and 4
- 1 January 2004
- journal article
- research article
- Published by Springer Nature in Lung
- Vol. 174 (3) , 181-194
- https://doi.org/10.1007/bf00173310
Abstract
The regulation of endothelial permeability is poorly understood. An increase in endothelial permeability in the pulmonary microvasculature, however, is critical in noncardiogenic pulmonary edema and other diffuse inflammatory reactions. In the present study thrombin and Escherichia coli hemolysin (HlyA), a membrane-perturbing bacterial exotoxin, were used to alter hydraulic permeability of porcine pulmonary artery and human endothelial cell monolayers. We also investigated the pharmacological approach of adenylyl cyclase activation/phosphodiesterase (PDE) inhibition to block endothelial hyperpermeability. Thrombin (1–5 units/ml) and H1yA (0.5–3 hemolytic units/ml) dose and time dependently (>15 min) increased endothelial permeability. Forskolin, cholera toxin, and prostaglandin E1, which all stimulate adenylyl cyclase activity, abrogated this effect. One MM dibutyryl CAMP, a cell membrane-permeable CAMP analogue, was similarly active. Endothelial hyperpermeability was also reduced dose dependently by inhibitors of different PDE isoenzymes (motapizone, rolipram, and zardaverine, which block PDE3 and/or PDE4). The effectiveness of PDE inhibitors was increased in the presence of adenylyl cyclase activators. Analysis of cyclic nucleotide hydrolyzing PDE activity in lysates of human umbilical vein endothelial cells showed high activities of PDE isoenzymes 2, 3, and 4. Consistent with the functional data PDE3 and PDE4 were the major cAMP hydrolysis enzymes in intact endothelial cells. We conclude that the hyperpermeability of pulmonary endothelial monolayers, evoked by thrombin or H1yA, can be blocked by the simultaneous activation of adenylyl cyclase and inhibition of PDEs, especially of PDE3 and PDE4. The demonstration of PDE isoenzymes 2–4 in human endothelial cells will help optimize this therapeutic approach.Keywords
This publication has 36 references indexed in Scilit:
- Hydrogen Peroxide-Induced Increase in Lung Endothelial and Epithelial Permeability-Effect of Adenylate Cyclase Stimulation and Phosphodiesterase InhibitionMicrovascular Research, 1995
- Pore-forming bacterial toxins potently induce release of nitric oxide in porcine endothelial cells.The Journal of Experimental Medicine, 1993
- Anti-arrhythmic effects of selective inhibition of myocardial phosphodiesterase IIThe Lancet, 1993
- Isometric contraction by fibroblasts and endothelial cells in tissue culture: a quantitative studyThe Journal of cell biology, 1992
- Escherichia coli hemolysin is a potent inductor of phosphoinositide hydrolysis and related metabolic responses in human neutrophils.Journal of Clinical Investigation, 1991
- Phosphodiesterase inhibitors: new opportunities for the treatment of asthma.Thorax, 1991
- Adenosine diphosphate-ribosylation of G-actin by botulinum C2 toxin increases endothelial permeability in vitro.Journal of Clinical Investigation, 1991
- Effects of Escherichia coli hemolysin on human monocytes. Cytocidal action and stimulation of interleukin 1 release.Journal of Clinical Investigation, 1990
- Thromboxane-mediated hypertension and vascular leakage evoked by low doses of Escherichia coli hemolysin in rabbit lungs.Journal of Clinical Investigation, 1989
- Culture of Human Endothelial Cells Derived from Umbilical Veins. IDENTIFICATION BY MORPHOLOGIC AND IMMUNOLOGIC CRITERIAJournal of Clinical Investigation, 1973