Successful bone tissue engineering requires the understanding of cellular activity in three-dimensional (3D) architectures and how it compares to two-dimensional (2D) architecture. We developed a perfusion culture system that utilizes fluid flow to mechanically load a cell-seeded 3D scaffold. This study compared the gene expression of osteoblastic cells in 2D and 3D cultures, and the effects of mechanical loading on gene expression in 2D and 3D cultures. MC3T3-E1 osteoblastlike cells were seeded onto 2D glass slides and 3D calcium phosphate scaffolds and cultured statically or mechanically loaded with fluid flow. Gene expression of OPN and FGF-2 was upregulated at 24 h and 48 h in 3D compared with 2D static cultures, while collagen 1 gene e...
Healthy bone healing is a remarkable, mechanically sensitive, scar-free process that leads rapidly t...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Mechanical loading plays a major role in bone remodeling and fracture healing. Mimicking the concept...
Bone is a dynamic environment where osteocytes, osteoblasts, and mesenchymal stem/progenitor cells p...
Item does not contain fulltextBone is a complex highly structured mechanically active 3D tissue comp...
Item does not contain fulltextIn this study we report on direct involvement of fluid shear stresses ...
An engineered three dimensional (3D) in vitro cell culture system was designed with the goal of indu...
In bone tissue engineering, the design of in vitro models able to recreate both the chemical composi...
In bone tissue engineering, the design of in vitro models able to recreate both the chemical composi...
Volumetric 3D bioprinting is a light-based technique, which enables custom fabrication of complex ob...
International audienceBone tissue engineering consists of culturing osteoblastic cells onto syntheti...
In mechanotransduction studies, flow-induced shear stress (FSS) is often applied to two-dimensional ...
Recent studies have shown that mechanical stimulation, by means of flow perfusion and mechanical com...
The advantages of longitudinal monitoring techniques are getting more attention in various tissue en...
In vitro flow-induced mechanical stimulation of developing bone tissue constructs has been shown to ...
Healthy bone healing is a remarkable, mechanically sensitive, scar-free process that leads rapidly t...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Mechanical loading plays a major role in bone remodeling and fracture healing. Mimicking the concept...
Bone is a dynamic environment where osteocytes, osteoblasts, and mesenchymal stem/progenitor cells p...
Item does not contain fulltextBone is a complex highly structured mechanically active 3D tissue comp...
Item does not contain fulltextIn this study we report on direct involvement of fluid shear stresses ...
An engineered three dimensional (3D) in vitro cell culture system was designed with the goal of indu...
In bone tissue engineering, the design of in vitro models able to recreate both the chemical composi...
In bone tissue engineering, the design of in vitro models able to recreate both the chemical composi...
Volumetric 3D bioprinting is a light-based technique, which enables custom fabrication of complex ob...
International audienceBone tissue engineering consists of culturing osteoblastic cells onto syntheti...
In mechanotransduction studies, flow-induced shear stress (FSS) is often applied to two-dimensional ...
Recent studies have shown that mechanical stimulation, by means of flow perfusion and mechanical com...
The advantages of longitudinal monitoring techniques are getting more attention in various tissue en...
In vitro flow-induced mechanical stimulation of developing bone tissue constructs has been shown to ...
Healthy bone healing is a remarkable, mechanically sensitive, scar-free process that leads rapidly t...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Mechanical loading plays a major role in bone remodeling and fracture healing. Mimicking the concept...