Biomedical research has relied on animal studies and conventional cell cultures for decades. Recently, microphysiological systems (MPS), also known as organs-on-chips, that recapitulate the structure and function of native tissues in vitro, have emerged as a promising alternative1. However, current MPS typically lack integrated sensors and their fabrication requires multi-step lithographic processes2. Here, we introduce a facile route for fabricating a new class of instrumented cardiac microphysiological devices via multimaterial three-dimensional (3D) printing. Specifically, we designed six functional inks, based on piezo-resistive, high-conductance, and biocompatible soft materials that enable integration of soft strain gauge sensors with...
We present the design of a higher throughput “heart on a chip” which utilizes a semi-automated fabri...
Purpose of reviewBioengineering of functional cardiac tissue composed of primary cardiomyocytes has ...
Access to robust and information-rich human cardiac tissue models would accelerate drug-based strate...
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, ...
Abstract Bioelectronic interfaces employing arrays of sensors and bioactuators are promising tools f...
Current drug discovery is impeded by insufficient models that do not accurately recapitulate physiol...
Current drug discovery is impeded by insufficient models that do not accurately recapitulate physiol...
Drug-induced cardiotoxicity is regarded as a major hurdle in the early stages of drug development. A...
Bioelectronic interfaces employing arrays of sensors and bioactuators are promising tools for the st...
Engineered myocardial tissues can be used to elucidate fundamental features of myocardial biology, d...
In the past few years, microfluidic-based technology has developed microscale models recapitulating ...
The heart possesses a complex three-dimensional (3D) laminar myofiber organization; however, because...
We present the design of a higher throughput “heart on a chip” which utilizes a semi-automated fabri...
Purpose of reviewBioengineering of functional cardiac tissue composed of primary cardiomyocytes has ...
Access to robust and information-rich human cardiac tissue models would accelerate drug-based strate...
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, ...
Abstract Bioelectronic interfaces employing arrays of sensors and bioactuators are promising tools f...
Current drug discovery is impeded by insufficient models that do not accurately recapitulate physiol...
Current drug discovery is impeded by insufficient models that do not accurately recapitulate physiol...
Drug-induced cardiotoxicity is regarded as a major hurdle in the early stages of drug development. A...
Bioelectronic interfaces employing arrays of sensors and bioactuators are promising tools for the st...
Engineered myocardial tissues can be used to elucidate fundamental features of myocardial biology, d...
In the past few years, microfluidic-based technology has developed microscale models recapitulating ...
The heart possesses a complex three-dimensional (3D) laminar myofiber organization; however, because...
We present the design of a higher throughput “heart on a chip” which utilizes a semi-automated fabri...
Purpose of reviewBioengineering of functional cardiac tissue composed of primary cardiomyocytes has ...
Access to robust and information-rich human cardiac tissue models would accelerate drug-based strate...