Mechanical signal is important for regulating cellular activities, including proliferation, metabolism, matrix production, and orientation. Bioreactors with loading functions can be used to precondition cells in three-dimensional (3D) constructs so as to study the cellular responses to mechanical stimulation. However, full-scale bioreactor is not always an affordable option considering the high cost of equipments and the liter-sized medium with serum and growth factor supplements. In this study, a custom-built loading system was developed by coupling a conventional camera-equipped inverted research microscope with two micromanipulators. The system was programmed to deliver either cyclic compressive loading with different frequencies or stat...
AbstractCell-mediated contraction plays a critical role in many physiological and pathological proce...
Mechanical loading is an important cue for directing stem cell fate and engineered tissue formation ...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
Actin filament, one type of cytoskeletons, plays a central role in mediating cellular in responses t...
Poster Session - Track 1 Biomaterials, Tissue Engineering and Regenerative Medicine: P1.15The 4th Wo...
The potential of determining stem cell fate through mechanoregulation has been demonstrated recently...
Session 4: Matrix integrity and mechanobiologyConference Theme: The Extracellular Matrix NicheOral P...
Mechanical forces and 3D topological environment can be used to control differentiation of mesenchym...
The use of human mesenchymal stem cells (hMSCs) in tissue engineering is attractive due to their abi...
Mesenchymal stem cells are widely implicated as a cell source for tissue engineering of skeletal tis...
Mesenchymal stem cells (MSCs) are widely implicated as a cell source for tissue engineering of skele...
In this study mechatronic devices have been designed and developed that enable quantitative analysis...
Introduction: cell-based tissue engineering strategies using human mesenchymal stem cells (hMSCs) m...
\u3cp\u3eCollagen content and organization in developing collagenous tissues can be influenced by lo...
Stem cell research has yielded promising advances in regenerative medicine, but standard assays gene...
AbstractCell-mediated contraction plays a critical role in many physiological and pathological proce...
Mechanical loading is an important cue for directing stem cell fate and engineered tissue formation ...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
Actin filament, one type of cytoskeletons, plays a central role in mediating cellular in responses t...
Poster Session - Track 1 Biomaterials, Tissue Engineering and Regenerative Medicine: P1.15The 4th Wo...
The potential of determining stem cell fate through mechanoregulation has been demonstrated recently...
Session 4: Matrix integrity and mechanobiologyConference Theme: The Extracellular Matrix NicheOral P...
Mechanical forces and 3D topological environment can be used to control differentiation of mesenchym...
The use of human mesenchymal stem cells (hMSCs) in tissue engineering is attractive due to their abi...
Mesenchymal stem cells are widely implicated as a cell source for tissue engineering of skeletal tis...
Mesenchymal stem cells (MSCs) are widely implicated as a cell source for tissue engineering of skele...
In this study mechatronic devices have been designed and developed that enable quantitative analysis...
Introduction: cell-based tissue engineering strategies using human mesenchymal stem cells (hMSCs) m...
\u3cp\u3eCollagen content and organization in developing collagenous tissues can be influenced by lo...
Stem cell research has yielded promising advances in regenerative medicine, but standard assays gene...
AbstractCell-mediated contraction plays a critical role in many physiological and pathological proce...
Mechanical loading is an important cue for directing stem cell fate and engineered tissue formation ...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...