Engineered myocardial tissues can be used to elucidate fundamental features of myocardial biology, develop organotypic in vitro model systems, and as engineered tissue constructs for replacing damaged heart tissue in vivo. However, a key limitation is an inability to test the wide range of parameters (cell source, mechanical, soluble and electrical stimuli) that might impact the engineered tissue in a high-throughput manner and in an environment that mimics native heart tissue. Here we used microelectromechanical systems technology to generate arrays of cardiac microtissues (CMTs) embedded within three-dimensional micropatterned matrices. Microcantilevers simultaneously constrain CMT contraction and report forces generated by the CMTs in re...
Access to robust and information-rich human cardiac tissue models would accelerate drug-based strate...
International audienceEngineered tissues can be used to understand fundamental features of biology, ...
A custom-designed microelectromechanical system (MEMS) force transducer, with a volume less than 1 m...
We present the development of three-dimensional cardiac tissues within a microfluidic device with th...
We present the development of three-dimensional cardiac tissues within a microfluidic device with th...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Abstract—The beating heart undergoes cyclic mechanical and electrical activity during systole and di...
In the past few years, microfluidic-based technology has developed microscale models recapitulating ...
Access to robust and information-rich human cardiac tissue models would accelerate drug-based strate...
Access to robust and information-rich human cardiac tissue models would accelerate drug-based strate...
Access to robust and information-rich human cardiac tissue models would accelerate drug-based strate...
International audienceEngineered tissues can be used to understand fundamental features of biology, ...
A custom-designed microelectromechanical system (MEMS) force transducer, with a volume less than 1 m...
We present the development of three-dimensional cardiac tissues within a microfluidic device with th...
We present the development of three-dimensional cardiac tissues within a microfluidic device with th...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
Abstract—The beating heart undergoes cyclic mechanical and electrical activity during systole and di...
In the past few years, microfluidic-based technology has developed microscale models recapitulating ...
Access to robust and information-rich human cardiac tissue models would accelerate drug-based strate...
Access to robust and information-rich human cardiac tissue models would accelerate drug-based strate...
Access to robust and information-rich human cardiac tissue models would accelerate drug-based strate...
International audienceEngineered tissues can be used to understand fundamental features of biology, ...
A custom-designed microelectromechanical system (MEMS) force transducer, with a volume less than 1 m...