Key result
Acute application of shear stress increased endothelial permeability to macromolecules, whereas chronic application significantly reduced it via a PI3K-NO-cGMP-dependent mechanism.
p-value: p=0.0004
Chronic application of shear stress reduces endothelial permeability to macromolecules by a PI3K-NO-cGMP-dependent mechanism, potentially explaining the atheroprotective effects of shear stress.
Chronic shear may protect endothelium in models; leaves open translation to human atheroprotection.
Endothelial properties are affected by mechanical stresses. Several studies have shown that an acute application of shear stress increases the permeability of endothelial monolayers in culture. We investigated whether more prolonged application of shear has the opposite effect. Porcine aortic endothelial cells were cultured on Transwell filters to assess monolayer permeability to albumin. The medium above the cells was swirled using an orbital shaker; resultant shears were computed to lie within the physiological range. Acute application of shear increased permeability, but chronic application reduced it. The effect of chronic but not acute shear was reversed by inhibiting nitric oxide (NO) synthesis. The effect of chronic shear was also reversed by inhibiting phosphatidylinositol 3-OH kinase (PI3K) and soluble guanylyl cyclase. None of these interventions affected permeability under static conditions, and inhibition of cyclooxygenase was without effect. Chronic shear decreased mitosis rates by a fraction comparable to the reduction in permeability, but this effect was not reversed by inhibiting NO synthesis. We conclude that chronic application of shear stress reduces endothelial permeability to macromolecules by a PI3K-NO-cGMP-dependent mechanism. Since atherosclerosis can be triggered by excessive entry of plasma macromolecules into the arterial wall, the phenomenon may help explain the atheroprotective effects of shear and NO.
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Warboys et al. (2010) studied Endothelial permeability. Shear stress (acute vs chronic) vs. Static conditions was evaluated on Endothelial monolayer permeability to albumin (p=0.0004). Acute application of shear stress increased endothelial permeability to macromolecules, whereas chronic application significantly reduced it via a PI3K-NO-cGMP-dependent mechanism.
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