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Laminar Shear Stress

Arteriosclerosis Thrombosis and Vascular Biology · 1998 · Vol. 18(5) · pp. 677–685
Oren TraubBradford C. Berk

Abstract

Mechanical forces are important modulators of cellular function in many tissues and are particularly important in the cardiovascular system. The endothelium, by virtue of its unique location in the vessel wall, responds rapidly and sensitively to the mechanical conditions created by blood flow and the cardiac cycle. In this study, we examine data which suggest that steady laminar shear stress stimulates cellular responses that are essential for endothelial cell function and are atheroprotective. We explore the ability of shear stress to modulate atherogenesis via its effects on endothelial-mediated alterations in coagulation, leukocyte and monocyte migration, smooth muscle growth, lipoprotein uptake and metabolism, and endothelial cell survival. We also propose a model of signal transduction for the endothelial cell response to shear stress including possible mechanotransducers (integrins, caveolae, ion channels, and G proteins), intermediate signaling molecules (c-Src, ras, Raf, protein kinase C) and the mitogen activated protein kinases (ERK1/2, JNK, p38, BMK-1), and effector molecules (nitric oxide). The endothelial cell response to shear stress may also provide a mechanism by which risk factors such as hypertension, diabetes, hypercholesterolemia, and sedentary lifestyle act to promote atherosclerosis.

Caveolin-1 and cellular processesNitric Oxide and Endothelin EffectsCell Adhesion Molecules ResearchCell biologyEndothelial stem cellSignal transductionIntegrinEndotheliumCaveolaeEndothelial dysfunctionCell signalingChemistryBiology

MeSH terms

AnimalsArteriosclerosisEndothelium, VascularEnzyme ActivationHumansMitogensNitric OxideProtein KinasesStress, MechanicalSignal TransductionCalcium-Calmodulin-Dependent Protein KinasesMitogen-Activated Protein Kinase 1Mitogen-Activated Protein KinasesMitogen-Activated Protein Kinase 3
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Flow-induced release of endothelium-derived relaxing factor
American Journal of Physiology-Heart and Circulatory Physiology · 1986 · 1,366 citations
Role of calcium and calmodulin in flow-induced nitric oxide production in endothelial cells
American Journal of Physiology-Cell Physiology · 1994 · 520 citations
Regulation of endothelial cell nitric oxide synthase mRNA expression by shear stress
American Journal of Physiology-Cell Physiology · 1995 · 564 citations
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