Cells in our body experience different types of stress including compression, tension, and shear. It has been shown that some cells experience permanent plastic deformation after a mechanical tensile load was removed. However, it was unclear whether cells are plastically deformed after repetitive compressive loading and unloading. There have been few tools available to exert cyclic compression at the single cell level. To address technical challenges found in a previous microfluidic compression device, we developed a new single-cell microfluidic compression device that combines an elastomeric membrane block geometry to ensure a flat contact surface and microcontact printing to confine cell spreading within cell trapping chambers. The design...
The physical forces to which living cells are most commonly exposed are fluid shear, pressure, and s...
Cell-cell adhesion complexes are macromolecular adhesive organelles that integrate cells into tissue...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
Cells in our body experience different types of stress including compression, tension, and shear. It...
Evidence continues to emerge that cancer is not only a disease of genetic mutations, but also of al...
In this work we report a microfluidic cell-culture platform with an integrated, actively-modulated a...
Compressive solid stress correlates with changes in the mechanical properties of developing confined...
Mechanical stimulation has been imposed on living cells using several approaches. Most early investi...
Mechanical stimuli interfere with cellular behaviors under many physiological conditions. To underst...
Evidence continues to emerge that cancer is not only a disease of genetic mutations, but also of alt...
[[abstract]]In vitro devices offer more numerous methods than in vivo models to investigate how cell...
It is well established that mechanical cues, e.g., tensile- compressive- or shear forces, are import...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
Cell–cell adhesions are often subjected to mechanical strains of different rates and magnitudes in n...
The potential of determining stem cell fate through mechanoregulation has been demonstrated recently...
The physical forces to which living cells are most commonly exposed are fluid shear, pressure, and s...
Cell-cell adhesion complexes are macromolecular adhesive organelles that integrate cells into tissue...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
Cells in our body experience different types of stress including compression, tension, and shear. It...
Evidence continues to emerge that cancer is not only a disease of genetic mutations, but also of al...
In this work we report a microfluidic cell-culture platform with an integrated, actively-modulated a...
Compressive solid stress correlates with changes in the mechanical properties of developing confined...
Mechanical stimulation has been imposed on living cells using several approaches. Most early investi...
Mechanical stimuli interfere with cellular behaviors under many physiological conditions. To underst...
Evidence continues to emerge that cancer is not only a disease of genetic mutations, but also of alt...
[[abstract]]In vitro devices offer more numerous methods than in vivo models to investigate how cell...
It is well established that mechanical cues, e.g., tensile- compressive- or shear forces, are import...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
Cell–cell adhesions are often subjected to mechanical strains of different rates and magnitudes in n...
The potential of determining stem cell fate through mechanoregulation has been demonstrated recently...
The physical forces to which living cells are most commonly exposed are fluid shear, pressure, and s...
Cell-cell adhesion complexes are macromolecular adhesive organelles that integrate cells into tissue...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...