Cell contractility regulates epithelial tissue geometry development and homeostasis. The underlying mechanobiological regulation circuits are poorly understood and experimentally challenging. We developed an elastomeric pillar cage (EPC) array to quantify cell contractility as a mechanoresponse of epithelial microtissues to substrate stiffness and topography. The spatially confined EPC geometry consisted of 24 circularly arranged slender pillars (1.2 MPa, height: 50 µm; diameter: 10 µm, distance: 5 µm). These high-aspect-ratio pillars were confined at both ends by planar substrates with different stiffness (0.15–1.2 MPa). Analytical modeling and finite elements simulation retrieved cell forces from pillar displacements. For evaluation, high...
This thesis describes a comprehensive study of understanding the mechanism of rigidity sensing by qu...
Cell migration is a key process underlying embryogenesis, wound healing, and cancer progression. The...
ABSTRACT We report the use of micromolded elastomeric micropost arrays to modulate substrate rigidit...
Cell contractility regulates epithelial tissue geometry development and homeostasis. The underlying ...
Traction forces exerted by adherent cells on their surroundings play an important role in diverse ph...
AbstractThe traction forces developed by cells depend strongly on the substrate rigidity. In this le...
Epithelial cell layers on soft elastic substrates or pillar arrays are commonly used as model system...
Forces and the mechanical properties surrounding eukaryotic cells have been increasingly shown to pl...
Cells test the rigidity of the extracellular matrix by applying forces to it through integrin adhesi...
This thesis describes a study of the effect of environmental cues including physical attribute of th...
Mechanical forces are responsible for facilitating various biological functions. Single cells are th...
A recent goal of tissue engineering has been to develop tissue-equivalent constructs to aid in wound...
This thesis describes a study of the effect of environmental cues including physical attribute of th...
International audienceIn tissues, cell microenvironment geometry and mechanics strongly impact on ce...
Purpose: The importance of mechanical forces and microenvironment in guiding cellular behavior has b...
This thesis describes a comprehensive study of understanding the mechanism of rigidity sensing by qu...
Cell migration is a key process underlying embryogenesis, wound healing, and cancer progression. The...
ABSTRACT We report the use of micromolded elastomeric micropost arrays to modulate substrate rigidit...
Cell contractility regulates epithelial tissue geometry development and homeostasis. The underlying ...
Traction forces exerted by adherent cells on their surroundings play an important role in diverse ph...
AbstractThe traction forces developed by cells depend strongly on the substrate rigidity. In this le...
Epithelial cell layers on soft elastic substrates or pillar arrays are commonly used as model system...
Forces and the mechanical properties surrounding eukaryotic cells have been increasingly shown to pl...
Cells test the rigidity of the extracellular matrix by applying forces to it through integrin adhesi...
This thesis describes a study of the effect of environmental cues including physical attribute of th...
Mechanical forces are responsible for facilitating various biological functions. Single cells are th...
A recent goal of tissue engineering has been to develop tissue-equivalent constructs to aid in wound...
This thesis describes a study of the effect of environmental cues including physical attribute of th...
International audienceIn tissues, cell microenvironment geometry and mechanics strongly impact on ce...
Purpose: The importance of mechanical forces and microenvironment in guiding cellular behavior has b...
This thesis describes a comprehensive study of understanding the mechanism of rigidity sensing by qu...
Cell migration is a key process underlying embryogenesis, wound healing, and cancer progression. The...
ABSTRACT We report the use of micromolded elastomeric micropost arrays to modulate substrate rigidit...