Literature DB >> 25573790

Application of multiple levels of fluid shear stress to endothelial cells plated on polyacrylamide gels.

P A Galie1, A van Oosten, C S Chen, P A Janmey.   

Abstract

Measurements of endothelial cell response to fluid shear stress have previously been performed on unphysiologically rigid substrates. We describe the design and implementation of a microfluidic device that applies discrete levels of shear stress to cells plated on hydrogel-based substrates of physiologically-relevant stiffness. The setup allows for measurements of cell morphology and inflammatory response to the combined stimuli, and identifies mechanisms by which vascular stiffening leads to pathological responses to blood flow. We found that the magnitude of shear stress required to affect endothelial cell morphology and inflammatory response depended on substrate stiffness. Endothelial cells on 100 Pa substrates demonstrate a greater increase in cell area and cortical stiffness and decrease in NF-κB nuclear translocation in response to TNF-α treatment compared to controls than cells plated on 10 kPa substrates. The response of endothelial cells on soft substrates to shear stress depends on the presence of hyaluronan (HA). These results emphasize the importance of substrate stiffness on endothelial function, and elucidate a means by which vascular stiffening in aging and disease can impact the endothelium.

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Year:  2015        PMID: 25573790      PMCID: PMC4500630          DOI: 10.1039/c4lc01236d

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   6.799


  41 in total

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6.  Cell-cell mechanical communication through compliant substrates.

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8.  Fluid shear stress stimulates incorporation of hyaluronan into endothelial cell glycocalyx.

Authors:  Mirella Gouverneur; Jos A E Spaan; Hans Pannekoek; Ruud D Fontijn; Hans Vink
Journal:  Am J Physiol Heart Circ Physiol       Date:  2005-08-26       Impact factor: 4.733

9.  The role of endothelial glycocalyx components in mechanotransduction of fluid shear stress.

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  18 in total

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4.  Microfluidics for the study of mechanotransduction.

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5.  Stiff Substrates Increase Inflammation-Induced Endothelial Monolayer Tension and Permeability.

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6.  Hyaluronan Disrupts Cardiomyocyte Organization within 3D Fibrin-Based Hydrogels.

Authors:  Nesrine Bouhrira; Peter A Galie; Paul A Janmey
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Review 7.  Forces and mechanotransduction in 3D vascular biology.

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8.  Methods for Determining the Cellular Functions of Vimentin Intermediate Filaments.

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Review 10.  Integration of substrate- and flow-derived stresses in endothelial cell mechanobiology.

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Journal:  Commun Biol       Date:  2021-06-21
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