Microfluidic-based 3D cell culture and organs-on-chip have proved able to generate accurate in vitro models of human physiology. Their widespread application and adoption are however hampered by limited scalability and throughput. Here, a novel strategy is described to significantly enhance the throughput of microfluidic systems for 3D cell culture and organs-on-chips. A series of 3D culture chambers (up to 96 replicates) can be seeded with a single pipetting operation and a system of normally closed microfluidic valves ensures the resulting 3D microtissues are independent. Devices fabricated with this design principle are employed to perform 3D cultures of rat cardiac fibroblasts and profile two known drugs (doxorubicin, sotalol) in terms ...
Recently, 3-dimensional in vitro cell cultures have gained much attention in biomedical sciences bec...
A plethora of 3D and microfluidics-based culture models have been demonstrated in the recent years w...
Mammalian cells cultured on 2D surfaces in microfluidic channels are increasingly used in drug devel...
Microfluidic-based 3D cell culture and organs-on-chip have proved able to generate accurate in vitro...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
Recently, we could demonstrate positive effects of microfluidic cultivation conditions on maturation...
In the past few years, microfluidic-based technology has developed microscale models recapitulating ...
Cardiovascular disease (CVD) is the leading cause of death in the United States and accounts for nea...
Lab-on-chip systems are microfluidic devices that can be used as powerful tools for research in fiel...
Drug discovery and development to date has relied on animal models, which are useful but are often e...
With the increasing attention on cardiovascular disorders and the current inability of pre-clinical ...
Drug discovery and development to date has relied on animal models, which are useful, but fail to re...
The design of innovative tools for generating physiologically relevant three-dimensional (3D) in vit...
Recently, 3-dimensional in vitro cell cultures have gained much attention in biomedical sciences bec...
A plethora of 3D and microfluidics-based culture models have been demonstrated in the recent years w...
Mammalian cells cultured on 2D surfaces in microfluidic channels are increasingly used in drug devel...
Microfluidic-based 3D cell culture and organs-on-chip have proved able to generate accurate in vitro...
Enabling the high-throughput biological assays requires a favorable biomimetic environment with appr...
Recently, we could demonstrate positive effects of microfluidic cultivation conditions on maturation...
In the past few years, microfluidic-based technology has developed microscale models recapitulating ...
Cardiovascular disease (CVD) is the leading cause of death in the United States and accounts for nea...
Lab-on-chip systems are microfluidic devices that can be used as powerful tools for research in fiel...
Drug discovery and development to date has relied on animal models, which are useful but are often e...
With the increasing attention on cardiovascular disorders and the current inability of pre-clinical ...
Drug discovery and development to date has relied on animal models, which are useful, but fail to re...
The design of innovative tools for generating physiologically relevant three-dimensional (3D) in vit...
Recently, 3-dimensional in vitro cell cultures have gained much attention in biomedical sciences bec...
A plethora of 3D and microfluidics-based culture models have been demonstrated in the recent years w...
Mammalian cells cultured on 2D surfaces in microfluidic channels are increasingly used in drug devel...