Key result
Nonuniform fluid shear stress induced smooth muscle cell density gradients and alignment, processes that are mediated by PDGF-beta receptor and Src.
PDGF-beta receptor and Src mediate nonuniform shear-induced formation of cell density gradients and alignment of smooth muscle cells in the neointima.
Nonuniform shear may modulate SMC behavior via PDGF-beta/Src in animal models; leaves open relevance to human neointimal hyperplasia.
Blood vessels are subject to fluid shear stress, a hemodynamic factor that inhibits the mitogenic activities of vascular cells. The presence of nonuniform shear stress has been shown to exert graded suppression of cell proliferation and induces the formation of cell density gradients, which in turn regulate the direction of smooth muscle cell (SMC) migration and alignment. Here, we investigated the role of platelet-derived growth factor (PDGF)-beta receptor and Src in the regulation of such processes. In experimental models with vascular polymer implants, SMCs migrated from the vessel media into the neointima of the implant under defined fluid shear stress. In a nonuniform shear model, blood shear stress suppressed the expression of PDGF-beta receptor and the phosphorylation of Src in a shear level-dependent manner, resulting in the formation of mitogen gradients, which were consistent with the gradient of cell density as well as the alignment of SMCs. In contrast, uniform shear stress in a control model elicited an even influence on the activity of mitogenic molecules without modulating the uniformity of cell density and did not significantly influence the direction of SMC alignment. The suppression of the PDGF-beta receptor tyrosine kinase and Src with pharmacological substances diminished the gradients of mitogens and cell density and reduced the influence of nonuniform shear stress on SMC alignment. These observations suggest that PDGF-beta receptor and Src possibly serve as mediating factors in nonuniform shear-induced formation of cell density gradients and alignment of SMCs in the neointima of vascular polymer implants.
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Liu et al. (2003) studied Vascular smooth muscle cell response to shear stress. Nonuniform fluid shear stress and pharmacological suppression of PDGF-beta receptor and Src vs. Uniform shear stress was evaluated on Cell density gradients and alignment of smooth muscle cells. Nonuniform fluid shear stress induced smooth muscle cell density gradients and alignment, processes that are mediated by PDGF-beta receptor and Src.
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