Mechanical cues are employed to promote stem cell differentiation and functional tissue formation in tissue engineering and regenerative medicine. We have developed a Magnetic Force Bioreactor (MFB) that delivers highly targeted local forces to cells at a pico-newton level, utilizing magnetic micro- and nano-particles to target cell surface receptors. In this study, we investigated the effects of magnetically targeting and actuating specific two mechanical-sensitive cell membrane receptors—platelet-derived growth factor receptor α (PDGFRα) and integrin ανβ3. It was found that a higher mineral-to-matrix ratio was obtained after three weeks of magneto-mechanical stimulation coupled with osteogenic medium culture by initially targeting PDGFRα ...
The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is ...
Tissue-engineering strategies for the treatment of osteoarthritis would benefit from the ability to ...
Magnetic materials and magnetic stimulation have gained increasing attention in tissue engineering (...
Mechanical cues are employed to promote stem cell differentiation and functional tissue formation in...
Abstract: Mechanical cues are employed to promote stem cell differentiation and functional tissue fo...
Mechanical cues play important roles in controlling cell function and have implications fo1' generat...
Targeting and differentiating stem cells at sites of injury and repair is an exciting and promising ...
© AlphaMed Press. Bone requires dynamic mechanical stimulation to form and maintain functional tissu...
The study and application ofmechanical forces to the cells ofthe body, has been proposed as a means ...
Chondrogenic commitments of mesenchymal stem cells (MSCs) require 3D cellular organization. Furtherm...
Cells can sense physical cues in the surrounding microenvironment and react by changing their functi...
The use of magnetic nanoparticles (MNPs) towards the musculoskeletal tissues has been the focus of m...
Mechanical stimulus is of upmost importance in tissues developmental and regeneration processes as ...
There is currently an interest in "active" implantable biomedical devices that include mechanical st...
Magnetic nanoparticles are promising new tools for therapeutic applications, such as magnetic nanopa...
The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is ...
Tissue-engineering strategies for the treatment of osteoarthritis would benefit from the ability to ...
Magnetic materials and magnetic stimulation have gained increasing attention in tissue engineering (...
Mechanical cues are employed to promote stem cell differentiation and functional tissue formation in...
Abstract: Mechanical cues are employed to promote stem cell differentiation and functional tissue fo...
Mechanical cues play important roles in controlling cell function and have implications fo1' generat...
Targeting and differentiating stem cells at sites of injury and repair is an exciting and promising ...
© AlphaMed Press. Bone requires dynamic mechanical stimulation to form and maintain functional tissu...
The study and application ofmechanical forces to the cells ofthe body, has been proposed as a means ...
Chondrogenic commitments of mesenchymal stem cells (MSCs) require 3D cellular organization. Furtherm...
Cells can sense physical cues in the surrounding microenvironment and react by changing their functi...
The use of magnetic nanoparticles (MNPs) towards the musculoskeletal tissues has been the focus of m...
Mechanical stimulus is of upmost importance in tissues developmental and regeneration processes as ...
There is currently an interest in "active" implantable biomedical devices that include mechanical st...
Magnetic nanoparticles are promising new tools for therapeutic applications, such as magnetic nanopa...
The role of biomechanical stimuli, or mechanotransduction, in normal bone homeostasis and repair is ...
Tissue-engineering strategies for the treatment of osteoarthritis would benefit from the ability to ...
Magnetic materials and magnetic stimulation have gained increasing attention in tissue engineering (...