Phenotypic modulation of smooth muscle cells (SMC) involves dramatic changes in expression and organization of contractile and cytoskeletal proteins, but little is known of how this process is regulated. The present study used a cell culture model to investigate the possible involvement of RhoA, a known regulator of the actin cytoskeleton. In rabbit aortic SMC seeded into primary culture at moderate density, Rho activation was high at two functionally distinct time-points, first as cells modulated to the "synthetic" phenotype, and again upon confluence and return to the "contractile" phenotype. Rho expression increased with time, such that maximal expression occurred upon return to the contractile state. Transient transfection of synthetic ...
AbstractPurposeConstrictive remodeling and new artery wall mass contribute to lumen narrowing in ath...
Although overactivation of RhoA is recognized as a common component of vascular disorders, the molec...
To investigate changes in the three-dimensional microfilament architecture of vascular smooth muscle...
The role of the small GTP-binding protein Rho in the process of smooth muscle cell (SMC) phenotypic ...
The role of the small GTP-binding protein Rho in the process of smooth muscle cell (SMC) phenotypic ...
This study determined the influence of Rho in regulating phenotype in early passage rabbit aortic sm...
Smooth muscle cells (SMC) exhibit a functional plasticity, modulating from the mature phenotype in w...
Cardiovascular disease (CVD) continues to be the primary cause of global mortality. Vascular smooth ...
The vascular smooth muscle cell is a highly specialized cell whose primary function is contraction a...
AbstractThe small GTPase Rho regulates several actomyosin-based cellular processes such as cell adhe...
Smooth muscle cells (SMCs) play an important role in vascular development and disease. Vascular SMCs...
AbstractWe recently reported that the first detectable expression of SMC-specific proteins during co...
Vascular tone is modulated by hormonal, neural and paracrine input for the proper regulation of bloo...
Evidence suggests that differential remodeling of alpha- and beta-actin may explain the unique prope...
Most animal cells use a combination of actin-myosin–based contraction and actin polymerization– base...
AbstractPurposeConstrictive remodeling and new artery wall mass contribute to lumen narrowing in ath...
Although overactivation of RhoA is recognized as a common component of vascular disorders, the molec...
To investigate changes in the three-dimensional microfilament architecture of vascular smooth muscle...
The role of the small GTP-binding protein Rho in the process of smooth muscle cell (SMC) phenotypic ...
The role of the small GTP-binding protein Rho in the process of smooth muscle cell (SMC) phenotypic ...
This study determined the influence of Rho in regulating phenotype in early passage rabbit aortic sm...
Smooth muscle cells (SMC) exhibit a functional plasticity, modulating from the mature phenotype in w...
Cardiovascular disease (CVD) continues to be the primary cause of global mortality. Vascular smooth ...
The vascular smooth muscle cell is a highly specialized cell whose primary function is contraction a...
AbstractThe small GTPase Rho regulates several actomyosin-based cellular processes such as cell adhe...
Smooth muscle cells (SMCs) play an important role in vascular development and disease. Vascular SMCs...
AbstractWe recently reported that the first detectable expression of SMC-specific proteins during co...
Vascular tone is modulated by hormonal, neural and paracrine input for the proper regulation of bloo...
Evidence suggests that differential remodeling of alpha- and beta-actin may explain the unique prope...
Most animal cells use a combination of actin-myosin–based contraction and actin polymerization– base...
AbstractPurposeConstrictive remodeling and new artery wall mass contribute to lumen narrowing in ath...
Although overactivation of RhoA is recognized as a common component of vascular disorders, the molec...
To investigate changes in the three-dimensional microfilament architecture of vascular smooth muscle...