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Cell-cell interactions mediate the response of vascular smooth muscle cells to substrate stiffness.


ABSTRACT: The vessel wall experiences progressive stiffening with age and the development of cardiovascular disease, which alters the micromechanical environment experienced by resident vascular smooth muscle cells (VSMCs). In vitro studies have shown that VSMCs are sensitive to substrate stiffness, but the exact molecular mechanisms of their response to stiffness remains unknown. Studies have also shown that cell-cell interactions can affect mechanotransduction at the cell-substrate interface. Using flexible substrates, we show that the expression of proteins associated with cell-matrix adhesion and cytoskeletal tension is regulated by substrate stiffness, and that an increase in cell density selectively attenuates some of these effects. We also show that cell-cell interactions exert a strong effect on cell morphology in a substrate-stiffness dependent manner. Collectively, the data suggest that as VSMCs form cell-cell contacts, substrate stiffness becomes a less potent regulator of focal adhesion signaling. This study provides insight into the mechanisms by which VSMCs respond to the mechanical environment of the blood vessel wall, and point to cell-cell interactions as critical mediators of VSMC response to vascular injury.

SUBMITTER: Sazonova OV 

PROVIDER: S-EPMC3145282 | biostudies-literature | 2011 Aug

REPOSITORIES: biostudies-literature

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Cell-cell interactions mediate the response of vascular smooth muscle cells to substrate stiffness.

Sazonova Olga V OV   Lee Kristen L KL   Isenberg Brett C BC   Rich Celeste B CB   Nugent Matthew A MA   Wong Joyce Y JY  

Biophysical journal 20110801 3


The vessel wall experiences progressive stiffening with age and the development of cardiovascular disease, which alters the micromechanical environment experienced by resident vascular smooth muscle cells (VSMCs). In vitro studies have shown that VSMCs are sensitive to substrate stiffness, but the exact molecular mechanisms of their response to stiffness remains unknown. Studies have also shown that cell-cell interactions can affect mechanotransduction at the cell-substrate interface. Using flex  ...[more]

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