Mechanical signals are increasingly recognized as overarching regulators of cell behaviour, controlling stemness, organoid biology, tissue development and regeneration. Moreover, aberrant mechanotransduction is a driver of disease, including cancer, fibrosis and cardiovascular defects. A central question remains how cells compute a host of biomechanical signals into meaningful biological behaviours. Biomaterials and microfabrication technologies are essential to address this issue. Here we review a large body of evidence that connects diverse biomaterial-based systems to the functions of YAP/TAZ, two highly related mechanosensitive transcriptional regulators. YAP/TAZ orchestrate the response to a suite of engineered microenviroments, emergi...
Cell mechanotransduction is an area of intense research focus. Until now, very limited tools have ex...
For years, how mammalian cells control and regulate their size has remain poorly understood. This is...
Whether a stem cell remains or egresses away from its physiological niche is a function of mechanica...
AbstractOrgan size is controlled by the concerted action of biochemical and physical processes. Alth...
To perceive their three-dimensional environment, cells and tissues must be able to sense and interpr...
Cells perceive their microenvironment not only through soluble signals but also in term of physical ...
The Billiar lab is interested in the interplay between mechanical tension and programmed cell death ...
Cells perceive their microenvironment not only through soluble signals but also in term of physical ...
SummaryKey cellular decisions, such as proliferation or growth arrest, typically occur at spatially ...
The mechanoregulated proteins YAP/TAZ are involved in the adipogenic/osteogenic switch of mesenchyma...
The tight regulation of cytoskeleton dynamics is required for a number of cellular processes, includ...
In the last few years, YAP/TAZ emerged as powerful regulators of growth and tumor malignancy. YAP/TA...
: Mechanical forces play a fundamental role in cellular dynamics from the molecular level to the est...
The materials pipeline for biomaterials and tissue engineering applications is under continuous deve...
Autophagy, besides ensuring energy metabolism and organelle renewal, is crucial for the biology of a...
Cell mechanotransduction is an area of intense research focus. Until now, very limited tools have ex...
For years, how mammalian cells control and regulate their size has remain poorly understood. This is...
Whether a stem cell remains or egresses away from its physiological niche is a function of mechanica...
AbstractOrgan size is controlled by the concerted action of biochemical and physical processes. Alth...
To perceive their three-dimensional environment, cells and tissues must be able to sense and interpr...
Cells perceive their microenvironment not only through soluble signals but also in term of physical ...
The Billiar lab is interested in the interplay between mechanical tension and programmed cell death ...
Cells perceive their microenvironment not only through soluble signals but also in term of physical ...
SummaryKey cellular decisions, such as proliferation or growth arrest, typically occur at spatially ...
The mechanoregulated proteins YAP/TAZ are involved in the adipogenic/osteogenic switch of mesenchyma...
The tight regulation of cytoskeleton dynamics is required for a number of cellular processes, includ...
In the last few years, YAP/TAZ emerged as powerful regulators of growth and tumor malignancy. YAP/TA...
: Mechanical forces play a fundamental role in cellular dynamics from the molecular level to the est...
The materials pipeline for biomaterials and tissue engineering applications is under continuous deve...
Autophagy, besides ensuring energy metabolism and organelle renewal, is crucial for the biology of a...
Cell mechanotransduction is an area of intense research focus. Until now, very limited tools have ex...
For years, how mammalian cells control and regulate their size has remain poorly understood. This is...
Whether a stem cell remains or egresses away from its physiological niche is a function of mechanica...