Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing the concentration of either protein or cross-linking molecules fail to control important parameters such as pore size, ligand density, and molecular diffusivity. Alternatively, ECM stiffness can be modulated independently from protein concentration by mechanically loading the ECM. We have developed a novel device for generating stiffness gradients in naturally derived ECMs, where stiffness is tuned by inducing strain, while local mechanical properties are directly determined by laser tweezers based active microrheology (AMR). Hydrogel substrates polymerized within 35 mm diameter Petri dishes are strained non-uniformly by the precise rotation o...
Hydrogels are commonly used as extracellular matrix mimetics for applications in tissue engineering ...
Cells are continually exposed to forces from their microenvironment, i.e., the forces exerted by the...
Cells are continually exposed to forces from their microenvironment, i.e., the forces exerted by the...
Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing t...
Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing t...
Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing t...
Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing t...
Fibrin hydrogels are used as a model system for studying cell-ECM biophysical interactions. Bulk mec...
While tissue stiffness is thought to play a role in regulation of cellular behavior, for the most pa...
Understanding complex interactions between a cell and its extracellular matrix (ECM) lies at the cor...
Understanding complex interactions between a cell and its extracellular matrix (ECM) lies at the cor...
How biological fibrous materials respond to forces and changes at the cellular scale is important fo...
How biological fibrous materials respond to forces and changes at the cellular scale is important fo...
Hydrogels are commonly used as extracellular matrix mimetics for applications in tissue engineering ...
Micromechanical environmental factors have significant impact on the determination of cell fate. Flu...
Hydrogels are commonly used as extracellular matrix mimetics for applications in tissue engineering ...
Cells are continually exposed to forces from their microenvironment, i.e., the forces exerted by the...
Cells are continually exposed to forces from their microenvironment, i.e., the forces exerted by the...
Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing t...
Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing t...
Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing t...
Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing t...
Fibrin hydrogels are used as a model system for studying cell-ECM biophysical interactions. Bulk mec...
While tissue stiffness is thought to play a role in regulation of cellular behavior, for the most pa...
Understanding complex interactions between a cell and its extracellular matrix (ECM) lies at the cor...
Understanding complex interactions between a cell and its extracellular matrix (ECM) lies at the cor...
How biological fibrous materials respond to forces and changes at the cellular scale is important fo...
How biological fibrous materials respond to forces and changes at the cellular scale is important fo...
Hydrogels are commonly used as extracellular matrix mimetics for applications in tissue engineering ...
Micromechanical environmental factors have significant impact on the determination of cell fate. Flu...
Hydrogels are commonly used as extracellular matrix mimetics for applications in tissue engineering ...
Cells are continually exposed to forces from their microenvironment, i.e., the forces exerted by the...
Cells are continually exposed to forces from their microenvironment, i.e., the forces exerted by the...