The spatial presentation of mechanical information is a key parameter for cell behavior. We have developed a method of polymerization control in which the differential diffusion distance of unreacted cross-linker and monomer into a prepolymerized hydrogel sink results in a tunable stiffness gradient at the cell–matrix interface. This simple, low-cost, robust method was used to produce polyacrylamide hydrogels with stiffness gradients of 0.5, 1.7, 2.9, 4.5, 6.8, and 8.2 kPa/mm, spanning the in vivo physiological and pathological mechanical landscape. Importantly, three of these gradients were found to be nondurotactic for human adipose-derived stem cells (hASCs), allowing the presentation of a continuous range of stiffnesses in a single well...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Cells are continually exposed to forces from their microenvironment, i.e., the forces exerted by the...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
Stiffness gradient hydrogels are a useful platform for studying mechanical interactions between cell...
<div><p>Many fundamental cell processes, such as angiogenesis, neurogenesis and cancer metastasis, a...
Recent studies have found discordant mechanosensitive outcomes when comparing 2D and 3D, highlightin...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Cells are continually exposed to forces from their microenvironment, i.e., the forces exerted by the...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
The spatial presentation of mechanical information is a key parameter for cell behavior. We have dev...
Stiffness gradient hydrogels are a useful platform for studying mechanical interactions between cell...
<div><p>Many fundamental cell processes, such as angiogenesis, neurogenesis and cancer metastasis, a...
Recent studies have found discordant mechanosensitive outcomes when comparing 2D and 3D, highlightin...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Cells are continually exposed to forces from their microenvironment, i.e., the forces exerted by the...