Item does not contain fulltextIn this study we report on direct involvement of fluid shear stresses on the osteoblastic differentiation of marrow stromal cells. Rat bone marrow stromal cells were seeded in 3D porous titanium fiber mesh scaffolds and cultured for 16 days in a flow perfusion bioreactor with perfusing culture media of different viscosities while maintaining the fluid flow rate constant. This methodology allowed exposure of the cultured cells to increasing levels of mechanical stimulation, in the form of fluid shear stress, whereas chemotransport conditions for nutrient delivery and waste removal remained essentially constant. Under similar chemotransport for the cultured cells in the 3D porous scaffolds, increasing fluid shear...
Bone cells in vivo reside in a dynamic environment exposed to constant chemical and mechanical stimu...
In vitro flow-induced mechanical stimulation of developing bone tissue constructs has been shown to ...
Aim: To determine whether fluid flow-induced shear stress affects the differentiation of bone marrow...
In this study we report on direct involvement of fluid shear stresses on the osteoblastic differenti...
Item does not contain fulltextBone is a complex highly structured mechanically active 3D tissue comp...
This study instituted a unique approach to bone tissue engineering by combining effects of mechanica...
Better understanding of the factors that affect marrow stromal cell differentiation will allow resea...
Item does not contain fulltextThe objective of this study was to evaluate the effect of two cell cul...
Flow perfusion bioreactors have been extensively investigated as a promising culture method for bone...
In this study, we cultured marrow stromal cells on titanium fiber meshes in a flow perfusion bioreac...
Bone tissue engineering (BTE) experiments in vitro have shown that fluid-induced wall shear stress (...
Successful bone tissue engineering requires the understanding of cellular activity in three-dimensio...
Flow perfusion culture of scaffold/cell constructs has been shown to enhance the osteoblastic differ...
\u3cp\u3eSpinner flask bioreactors have often been employed for bone tissue engineering. However, th...
The advantages of longitudinal monitoring techniques are getting more attention in various tissue en...
Bone cells in vivo reside in a dynamic environment exposed to constant chemical and mechanical stimu...
In vitro flow-induced mechanical stimulation of developing bone tissue constructs has been shown to ...
Aim: To determine whether fluid flow-induced shear stress affects the differentiation of bone marrow...
In this study we report on direct involvement of fluid shear stresses on the osteoblastic differenti...
Item does not contain fulltextBone is a complex highly structured mechanically active 3D tissue comp...
This study instituted a unique approach to bone tissue engineering by combining effects of mechanica...
Better understanding of the factors that affect marrow stromal cell differentiation will allow resea...
Item does not contain fulltextThe objective of this study was to evaluate the effect of two cell cul...
Flow perfusion bioreactors have been extensively investigated as a promising culture method for bone...
In this study, we cultured marrow stromal cells on titanium fiber meshes in a flow perfusion bioreac...
Bone tissue engineering (BTE) experiments in vitro have shown that fluid-induced wall shear stress (...
Successful bone tissue engineering requires the understanding of cellular activity in three-dimensio...
Flow perfusion culture of scaffold/cell constructs has been shown to enhance the osteoblastic differ...
\u3cp\u3eSpinner flask bioreactors have often been employed for bone tissue engineering. However, th...
The advantages of longitudinal monitoring techniques are getting more attention in various tissue en...
Bone cells in vivo reside in a dynamic environment exposed to constant chemical and mechanical stimu...
In vitro flow-induced mechanical stimulation of developing bone tissue constructs has been shown to ...
Aim: To determine whether fluid flow-induced shear stress affects the differentiation of bone marrow...