International audienceEngineered tissues can be used to understand fundamental features of biology, develop organotypic in vitro model systems, and as engineered tissue constructs for replacing damaged tissue in vivo. However, a key limitation is an inability to test the wide range of parameters that might impact the engineered tissue in a high-throughput manner and in an environment that mimics the three-dimensional (3D) native architecture. We developed a microfabricated platform to generate arrays of microtissues embedded within 3D micropatterned matrices. Microcantilevers simultaneously constrain microtissue formation and report forces generated by the microtissues in real time, opening the possibility to use high-throughput, low-volume...
The last decade has shown great progress in developing increasingly sophisticated 3D extracellular s...
Cancer has long been one of the major causes of death worldwide. It has been studied and known that ...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
Physical forces generated by cells drive morphologic changes during development and can feedback to ...
Engineered myocardial tissues can be used to elucidate fundamental features of myocardial biology, d...
Mechanical forces are responsible for facilitating various biological functions. Single cells are th...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
International audienceA novel bio-magnetomechanical microtissue system is described for magnetic act...
International audienceBoth biological and engineering approaches have contributed significantly to t...
Determining how biological cells respond to external factors in the environment can aid in understan...
Mechanical stimulation has been imposed on living cells using several approaches. Most early investi...
International audienceIn tissues, cell microenvironment geometry and mechanics strongly impact on ce...
We have developed a biological micro-electromechanical system (Bio-MEMS) device consisting of surfac...
Mechanobiology explores how forces regulate cell behaviors and what molecular machinery are responsi...
Tissue engineered heart valves have the potential to meet the growing need for valve replacement for...
The last decade has shown great progress in developing increasingly sophisticated 3D extracellular s...
Cancer has long been one of the major causes of death worldwide. It has been studied and known that ...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
Physical forces generated by cells drive morphologic changes during development and can feedback to ...
Engineered myocardial tissues can be used to elucidate fundamental features of myocardial biology, d...
Mechanical forces are responsible for facilitating various biological functions. Single cells are th...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
International audienceA novel bio-magnetomechanical microtissue system is described for magnetic act...
International audienceBoth biological and engineering approaches have contributed significantly to t...
Determining how biological cells respond to external factors in the environment can aid in understan...
Mechanical stimulation has been imposed on living cells using several approaches. Most early investi...
International audienceIn tissues, cell microenvironment geometry and mechanics strongly impact on ce...
We have developed a biological micro-electromechanical system (Bio-MEMS) device consisting of surfac...
Mechanobiology explores how forces regulate cell behaviors and what molecular machinery are responsi...
Tissue engineered heart valves have the potential to meet the growing need for valve replacement for...
The last decade has shown great progress in developing increasingly sophisticated 3D extracellular s...
Cancer has long been one of the major causes of death worldwide. It has been studied and known that ...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...