Mechanical stiffness and degradability are important material parameters in tissue engineering. The aim of this study was to address the hypothesis that these variables regulate the function of myoblasts cultured in 2-D and 3-D microenvironments. Development of cell-interactive alginate gels with tunable degradation rates and mechanical stiffness was established by a combination of partial oxidation and bimodal molecular weight distribution. Higher gel mechanical properties (13 to 45 kPa) increased myoblast adhesion, proliferation, and differentiation in a 2-D cell culture model. Primary mouse myoblasts were more highly responsive to this cue than the C2C12 myoblast cell line. Myoblasts were then encapsulated in gels varying in degradation ...
Viscoelasticity, stiffness, and degradation of tissue matrices regulate cell behavior, yet predictiv...
AbstractThis study adopts a combined computational and experimental approach to determine the mechan...
THESIS 11580Tissue engineering is a potential alternative to conventional surgical techniques for re...
Mechanical stiffness and degradability are important material parameters in tissue engineering. The ...
The loss or failure of human tissues or organs is a frequent and costly problem in terms of life and...
Muscle degenerative disorders, such as Duchenne muscular dystrophy, have a profound impact on the qu...
The biological responses of cells have been shown to be dependent on both biochemical and biophysica...
New strategies are being developed to grow tissues and organs for transplantation from cells and bio...
The mechanics of the cellular microenvironment can be as critical as biochemistry in directing cell ...
The mechanical properties of the extracellular matrix (ECM) can exert significant influence in deter...
Biologically relevant cell culture assays that can be adapted for high-throughput screening are very...
One of the goals of tissue engineering is to create technologies that will improve or replace biolog...
Cell culture systems for studying the combined effects of matrix proteins and mechanical forces on t...
Understanding the mechanisms of the fate of stem cells is one of the major cornerstones of regenerat...
Our improved understanding of cell mechano-sensing has been enabled by developments in biomaterials ...
Viscoelasticity, stiffness, and degradation of tissue matrices regulate cell behavior, yet predictiv...
AbstractThis study adopts a combined computational and experimental approach to determine the mechan...
THESIS 11580Tissue engineering is a potential alternative to conventional surgical techniques for re...
Mechanical stiffness and degradability are important material parameters in tissue engineering. The ...
The loss or failure of human tissues or organs is a frequent and costly problem in terms of life and...
Muscle degenerative disorders, such as Duchenne muscular dystrophy, have a profound impact on the qu...
The biological responses of cells have been shown to be dependent on both biochemical and biophysica...
New strategies are being developed to grow tissues and organs for transplantation from cells and bio...
The mechanics of the cellular microenvironment can be as critical as biochemistry in directing cell ...
The mechanical properties of the extracellular matrix (ECM) can exert significant influence in deter...
Biologically relevant cell culture assays that can be adapted for high-throughput screening are very...
One of the goals of tissue engineering is to create technologies that will improve or replace biolog...
Cell culture systems for studying the combined effects of matrix proteins and mechanical forces on t...
Understanding the mechanisms of the fate of stem cells is one of the major cornerstones of regenerat...
Our improved understanding of cell mechano-sensing has been enabled by developments in biomaterials ...
Viscoelasticity, stiffness, and degradation of tissue matrices regulate cell behavior, yet predictiv...
AbstractThis study adopts a combined computational and experimental approach to determine the mechan...
THESIS 11580Tissue engineering is a potential alternative to conventional surgical techniques for re...