Microphysiological systems play a pivotal role in progressing toward a global paradigm shift in drug development. Here, we designed a four-organ-chip interconnecting miniaturized human intestine, liver, brain and kidney equivalents. All four organ models were predifferentiated from induced pluripotent stem cells from the same healthy donor and integrated into the microphysiological system. The coculture of the four autologous tissue models in one common medium deprived of tissue specific growth factors was successful over 14-days. Although there were no added growth factors present in the coculture medium, the intestine, liver and neuronal model maintained defined marker expression. Only the renal model was overgrown by coexisting cells and...
Microphysiological multi-organ devices are designed to mimic the physiological interaction of variou...
A multiorgan, functional, human in vitro assay system or \u27Body-on-a-Chip\u27 would be of tremendo...
Current in vitro and animal tests for drug development are failing to emulate the systemic organ com...
Microphysiological systems play a pivotal role in progressing toward a global paradigm shift in drug...
Systemic absorption and metabolism of drugs in the small intestine, metabolism by the liver as well ...
Drug discovery and development to date has relied on animal models, which are useful but are often e...
The concept of "Organs-on-Chips" has recently evolved and has been described as 3D (mini-) organs or...
While in vitro cell based systems have been an invaluable tool in biology, they often suffer from a ...
While in vitro cell based systems have been an invaluable tool in biology, they often suffer from a ...
Human organ-on-a-chip systems for drug screening have evolved as feasible alternatives to animal mod...
Drug discovery and development to date has relied on animal models, which are useful, but fail to re...
Patients around the world who suffer from a host of debilitating conditions rely on medications for ...
Current biomedical models fail to replicate the complexity of human biology. Consequently, almost 90...
Dynamic miniaturized human multi-micro-organ bioreactor systems are envisaged as a possible solution...
Although the process of drug development requires efficacy and toxicity testing in animals prior to ...
Microphysiological multi-organ devices are designed to mimic the physiological interaction of variou...
A multiorgan, functional, human in vitro assay system or \u27Body-on-a-Chip\u27 would be of tremendo...
Current in vitro and animal tests for drug development are failing to emulate the systemic organ com...
Microphysiological systems play a pivotal role in progressing toward a global paradigm shift in drug...
Systemic absorption and metabolism of drugs in the small intestine, metabolism by the liver as well ...
Drug discovery and development to date has relied on animal models, which are useful but are often e...
The concept of "Organs-on-Chips" has recently evolved and has been described as 3D (mini-) organs or...
While in vitro cell based systems have been an invaluable tool in biology, they often suffer from a ...
While in vitro cell based systems have been an invaluable tool in biology, they often suffer from a ...
Human organ-on-a-chip systems for drug screening have evolved as feasible alternatives to animal mod...
Drug discovery and development to date has relied on animal models, which are useful, but fail to re...
Patients around the world who suffer from a host of debilitating conditions rely on medications for ...
Current biomedical models fail to replicate the complexity of human biology. Consequently, almost 90...
Dynamic miniaturized human multi-micro-organ bioreactor systems are envisaged as a possible solution...
Although the process of drug development requires efficacy and toxicity testing in animals prior to ...
Microphysiological multi-organ devices are designed to mimic the physiological interaction of variou...
A multiorgan, functional, human in vitro assay system or \u27Body-on-a-Chip\u27 would be of tremendo...
Current in vitro and animal tests for drug development are failing to emulate the systemic organ com...