Structural Mechanisms in the Abolishment of VEGF-induced Microvascular Hyperpermeability by cAMP

Author:

Fu Bingmei M.1,Shen Shang2,Chen Bin2

Affiliation:

1. Department of Biomedical Engineering, The City College of the City University of New York, 138th St. at Convent Ave., New York, NY 10031 and Department of Mechanical Engineering, University of Nevada, Las Vegas, 4505 Maryland Parkway, Box 454027, Las Vegas, NV 89154

2. Department of Mechanical Engineering, University of Nevada, Las Vegas, 4505 Maryland Parkway, Box 454027, Las Vegas, NV 89154

Abstract

To investigate the structural mechanisms by which elevation of the intraendothelial cAMP levels abolishes or attenuates the transient increase in microvascular permeability by vascular endothelial growth factor (VEGF), we examined cAMP effect on VEGF-induced hyperpermeability to small solute sodium fluorescein (Stokes radius=0.45nm) Psodiumfluorescein, intermediate-sized solute α-lactalbumin (Stokes radius=2.01nm) Pα-lactalbumin, and large solute albumin (BSA, Stokes radius=3.5nm) PBSA on individually perfused microvessels of frog mesenteries. After 20min pretreatment of 2mM cAMP analog, 8-bromo-cAMP, the initial increase by 1nM VEGF was completely abolished in Psodiumfluorescein (from a peak increase of 2.6±0.37 times control with VEGF alone to 0.96±0.07 times control with VEGF and cAMP), in Pα-lactalbumin (from a peak increase of 2.7±0.33 times control with VEGF alone to 0.76±0.07 times control with VEGF and cAMP), and in PBSA (from a peak increase of 6.5±1.0 times control with VEGF alone to 0.97±0.08 times control with VEGF and cAMP). Based on these measured data, the prediction from our mathematical models suggested that the increase in the number of tight junction strands in the cleft between endothelial cells forming the microvessel wall is one of the mechanisms for the abolishment of VEGF-induced hyperpermeability by cAMP.

Publisher

ASME International

Subject

Physiology (medical),Biomedical Engineering

Reference49 articles.

1. Angiogenic Factors;Folkman;Science

2. The Chronic Effect of Vascular Endothelial Growth Factor on Individually Perfused Frog Mesenteric Microvessels;Bates;J. Physiol. (London)

3. Vascular Endothelial Growth Factor Increases Hydraulic Conductivity of Isolated Perfused Microvessels;Bates;Am. J. Physiol.

4. Regulation of Microvascular Permeability by Vascular Endothelial Growth Factors;Bates;Vasc. Pharmacol.

5. Vascular Endothelial Growth Factor and Microvascular Permeability;Bates;Microcirculation (Philadelphia)

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