In bone tissue engineering, the design of in vitro models able to recreate both the chemical composition, the structural architecture, and the overall mechanical environment of the native tissue is still often neglected. In this study, we apply a bioreactor system where human bone-marrow hMSCs are seeded in human femoral head-derived decellularized bone scaffolds and subjected to dynamic culture, i.e., shear stress induced by continuous cell culture medium perfusion at 1.7 mL/min flow rate and compressive stress by 10% uniaxial load at 1 Hz for 1 h per day. In silico modeling revealed that continuous medium flow generates a mean shear stress of 8.5 mPa sensed by hMSCs seeded on 3D bone scaffolds. Experimentally, both dynamic conditions impr...
Bone tissue engineering (BTE) experiments in vitro have shown that fluid-induced wall shear stress (...
Mechanical stimulation in terms of fluid flow and mechanical strain can enhance the osteogenesis. Bi...
Volumetric 3D bioprinting is a light-based technique, which enables custom fabrication of complex ob...
In bone tissue engineering, the design of in vitro models able to recreate both the chemical composi...
\u3cp\u3eSpinner flask bioreactors have often been employed for bone tissue engineering. However, th...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Aim: To determine whether fluid flow-induced shear stress affects the differentiation of bone marrow...
Bone cells in vivo reside in a dynamic environment exposed to constant chemical and mechanical stimu...
The development of stable tissue-engineered autologous bone grafts in the field of regenerative medi...
In vitro tissue engineering is a method for developing living and functional tissues external to the...
Bone tissue engineering aims to generate clinically applicable bone graft substitutes in an effort t...
The advantages of longitudinal monitoring techniques are getting more attention in various tissue en...
Mounting evidence indicated that human mesenchymal stem cells (hMSCs) are responsive not only to bio...
Successful bone tissue engineering requires the understanding of cellular activity in three-dimensio...
Mechanical loading plays a major role in bone remodeling and fracture healing. Mimicking the concept...
Bone tissue engineering (BTE) experiments in vitro have shown that fluid-induced wall shear stress (...
Mechanical stimulation in terms of fluid flow and mechanical strain can enhance the osteogenesis. Bi...
Volumetric 3D bioprinting is a light-based technique, which enables custom fabrication of complex ob...
In bone tissue engineering, the design of in vitro models able to recreate both the chemical composi...
\u3cp\u3eSpinner flask bioreactors have often been employed for bone tissue engineering. However, th...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
Aim: To determine whether fluid flow-induced shear stress affects the differentiation of bone marrow...
Bone cells in vivo reside in a dynamic environment exposed to constant chemical and mechanical stimu...
The development of stable tissue-engineered autologous bone grafts in the field of regenerative medi...
In vitro tissue engineering is a method for developing living and functional tissues external to the...
Bone tissue engineering aims to generate clinically applicable bone graft substitutes in an effort t...
The advantages of longitudinal monitoring techniques are getting more attention in various tissue en...
Mounting evidence indicated that human mesenchymal stem cells (hMSCs) are responsive not only to bio...
Successful bone tissue engineering requires the understanding of cellular activity in three-dimensio...
Mechanical loading plays a major role in bone remodeling and fracture healing. Mimicking the concept...
Bone tissue engineering (BTE) experiments in vitro have shown that fluid-induced wall shear stress (...
Mechanical stimulation in terms of fluid flow and mechanical strain can enhance the osteogenesis. Bi...
Volumetric 3D bioprinting is a light-based technique, which enables custom fabrication of complex ob...