"Mice are not little people" - a refrain becoming louder as the gaps between animal models and human disease become more apparent. At the same time, three emerging approaches are headed toward integration: powerful systems biology analysis of cell-cell and intracellular signaling networks in patient-derived samples; 3D tissue engineered models of human organ systems, often made from stem cells; and micro-fluidic and meso-fluidic devices that enable living systems to be sustained, perturbed and analyzed for weeks in culture. Integration of these rapidly moving fields has the potential to revolutionize development of therapeutics for complex, chronic diseases, including those that have weak genetic bases and substantial contributions from gen...
The term organ on a chip is used to describe the latest stage of development of in vitro cell cultur...
Investigation of the pharmacokinetics (PK) of a compound is of significant importance during the ear...
Recent developments of organoids engineering and organ-on-a-chip microfluidic technologies have enab...
Patients around the world who suffer from a host of debilitating conditions rely on medications for ...
The limited adequacy of animal cell cultures and models to mimic the complexity of human bodies in l...
Organs-on-chips (OoCs) could be useful at various stages of drug discovery and development, providin...
Many drugs have progressed through preclinical and clinical trials and have been available – for yea...
Recent advances in microphysiological systems (MPS) promise a global paradigm shift in drug developm...
In vitro models of biological tissues are indispensable tools for unraveling human physiology and pa...
AbstractMicrophysiological systems (organs-on-chips, tissue chips) are devices designed to recapitul...
Bioinspired organ-level in vitro platforms that recapitulate human organ physiology and organ-specif...
The concept of "Organs-on-Chips" has recently evolved and has been described as 3D (mini-) organs or...
Research on alternatives to the use of animal models and cell cultures has led to the creation of or...
Current biomedical models fail to replicate the complexity of human biology. Consequently, almost 90...
For centuries, animal experiments have contributed much to our understanding of mechanisms of human ...
The term organ on a chip is used to describe the latest stage of development of in vitro cell cultur...
Investigation of the pharmacokinetics (PK) of a compound is of significant importance during the ear...
Recent developments of organoids engineering and organ-on-a-chip microfluidic technologies have enab...
Patients around the world who suffer from a host of debilitating conditions rely on medications for ...
The limited adequacy of animal cell cultures and models to mimic the complexity of human bodies in l...
Organs-on-chips (OoCs) could be useful at various stages of drug discovery and development, providin...
Many drugs have progressed through preclinical and clinical trials and have been available – for yea...
Recent advances in microphysiological systems (MPS) promise a global paradigm shift in drug developm...
In vitro models of biological tissues are indispensable tools for unraveling human physiology and pa...
AbstractMicrophysiological systems (organs-on-chips, tissue chips) are devices designed to recapitul...
Bioinspired organ-level in vitro platforms that recapitulate human organ physiology and organ-specif...
The concept of "Organs-on-Chips" has recently evolved and has been described as 3D (mini-) organs or...
Research on alternatives to the use of animal models and cell cultures has led to the creation of or...
Current biomedical models fail to replicate the complexity of human biology. Consequently, almost 90...
For centuries, animal experiments have contributed much to our understanding of mechanisms of human ...
The term organ on a chip is used to describe the latest stage of development of in vitro cell cultur...
Investigation of the pharmacokinetics (PK) of a compound is of significant importance during the ear...
Recent developments of organoids engineering and organ-on-a-chip microfluidic technologies have enab...