Introduction Cell structure and migration is impacted by the mechanical properties and geometry of the cell adhesive environment. Most studies to date investigating the effects of 3D environments on cells have not controlled geometry at the single-cell level, making it difficult to understand the influence of 3D environmental cues on single cells. Here, we developed microwell platforms to investigate the effects of 2D vs 3D geometries on single-cell F-actin and nuclear organization. Methods We used microfabrication techniques to fabricate three polyacrylamide platforms: 3D microwells with a 3D adhesive environment ( 3D/3D ), 3D microwells with 2D adhesive areas at the bottom only ( 3D/2D ), and flat 2D gels with 2D patterned adhesive areas ...
The formation and orientation of the mitotic spindle is a critical feature of mitosis. The morpholog...
Matrix nanotopography plays an important role in regulating cell behaviors by providing spatial as w...
Culturing cells in three-dimensional (3D) environments has been shown to significantly influence cel...
Introduction Cell structure and migration is impacted by the mechanical properties and geometry of t...
IntroductionCell structure and migration is impacted by the mechanical properties and geometry of th...
IntroductionCell structure and migration is impacted by the mechanical properties and geometry of th...
IntroductionCell structure and migration is impacted by the mechanical properties and geometry of th...
Various physical parameters, including substrate rigidity, size of adhesive islands and micro-and na...
Biophysical properties of the cellular microenvironment, including stiffness and geometry, have been...
Background Various physical parameters, including substrate rigidity, size of adhesive islands an...
The formation and orientation of the mitotic spindle is a critical feature of mitosis. The morpholog...
The formation and orientation of the mitotic spindle is a critical feature of mitosis. The morpholog...
Our improved understanding of cell mechano-sensing has been enabled by developments in biomaterials ...
The formation and orientation of the mitotic spindle is a critical feature of mitosis. The morpholog...
Our improved understanding of cell mechano-sensing has been enabled by developments in biomaterials ...
The formation and orientation of the mitotic spindle is a critical feature of mitosis. The morpholog...
Matrix nanotopography plays an important role in regulating cell behaviors by providing spatial as w...
Culturing cells in three-dimensional (3D) environments has been shown to significantly influence cel...
Introduction Cell structure and migration is impacted by the mechanical properties and geometry of t...
IntroductionCell structure and migration is impacted by the mechanical properties and geometry of th...
IntroductionCell structure and migration is impacted by the mechanical properties and geometry of th...
IntroductionCell structure and migration is impacted by the mechanical properties and geometry of th...
Various physical parameters, including substrate rigidity, size of adhesive islands and micro-and na...
Biophysical properties of the cellular microenvironment, including stiffness and geometry, have been...
Background Various physical parameters, including substrate rigidity, size of adhesive islands an...
The formation and orientation of the mitotic spindle is a critical feature of mitosis. The morpholog...
The formation and orientation of the mitotic spindle is a critical feature of mitosis. The morpholog...
Our improved understanding of cell mechano-sensing has been enabled by developments in biomaterials ...
The formation and orientation of the mitotic spindle is a critical feature of mitosis. The morpholog...
Our improved understanding of cell mechano-sensing has been enabled by developments in biomaterials ...
The formation and orientation of the mitotic spindle is a critical feature of mitosis. The morpholog...
Matrix nanotopography plays an important role in regulating cell behaviors by providing spatial as w...
Culturing cells in three-dimensional (3D) environments has been shown to significantly influence cel...