Adherent cells such as endothelial cells sense applied mechanical stretch to adapt to changes in their surrounding mechanical environment. Despite numerous studies, signaling pathways underlying the cellular mechanosensing and adaptation remain to be fully elucidated partly because of the lack of tools that allow for a comprehensive screening approach. Conventionally, multi-well cell culture plates of standard configurations are used for comprehensive analyses in cell biology study to identify key molecules in a high-throughput manner. Given that situation, here we design a 96-well cell culture plate made of elastic silicone and mechanically stretchable using a motorized device. Computational analysis suggested that highly uniform stretch c...
Abstract The pulsatile nature of blood flow exposes vascular smooth muscle cells (VSMC...
Mechanical cues including stretch, compression, and shear stress play a critical role in regulating ...
Physical and mechanical cues of the cellular microenvironment affect cell behavior and fate via mech...
Cells have the ability to actively sense their mechanical environment and respond to both substrate ...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
Mechanical cues are essential to the regulation of cell and tissue physiology. Henceforth, it has be...
Summary: Mechanical signals are essential for the regulation of many biological processes. Therefore...
Several custom-built and commercially available devices are available to investigate cellular respon...
Cells in the body experience various mechanical stimuli that are often essential to proper cell func...
We present a mechanically active cell culture substrate that produces complex strain patterns and ge...
Cells respond to mechanical cues from their environment through a process of mechanosensing and mech...
The behavior of cells and tissues in vivo is determined by the integration of multiple biochemical a...
Cells in the human body are constantly subjected to mechanical forces. The field of Mechanobiology e...
<div><p>We describe the design and validation of an equibiaxial stretching device in which cells are...
Abstract The pulsatile nature of blood flow exposes vascular smooth muscle cells (VSMC...
Mechanical cues including stretch, compression, and shear stress play a critical role in regulating ...
Physical and mechanical cues of the cellular microenvironment affect cell behavior and fate via mech...
Cells have the ability to actively sense their mechanical environment and respond to both substrate ...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
Mechanical cues are essential to the regulation of cell and tissue physiology. Henceforth, it has be...
Summary: Mechanical signals are essential for the regulation of many biological processes. Therefore...
Several custom-built and commercially available devices are available to investigate cellular respon...
Cells in the body experience various mechanical stimuli that are often essential to proper cell func...
We present a mechanically active cell culture substrate that produces complex strain patterns and ge...
Cells respond to mechanical cues from their environment through a process of mechanosensing and mech...
The behavior of cells and tissues in vivo is determined by the integration of multiple biochemical a...
Cells in the human body are constantly subjected to mechanical forces. The field of Mechanobiology e...
<div><p>We describe the design and validation of an equibiaxial stretching device in which cells are...
Abstract The pulsatile nature of blood flow exposes vascular smooth muscle cells (VSMC...
Mechanical cues including stretch, compression, and shear stress play a critical role in regulating ...
Physical and mechanical cues of the cellular microenvironment affect cell behavior and fate via mech...