AbstractOrgan-on-a-chip devices have gained attention in the field of in vitro modeling due to their superior ability in recapitulating tissue environments compared to traditional multiwell methods. These constructed growth environments support tissue differentiation and mimic tissue–tissue, tissue–liquid, and tissue–air interfaces in a variety of conditions. By closely simulating the in vivo biochemical and biomechanical environment, it is possible to study human physiology in an organ-specific context and create more accurate models of healthy and diseased tissues, allowing for observations in disease progression and treatment. These chip devices have the ability to help direct, and perhaps in the distant future even replace animal-based ...
Advanced in vitro tissue chip models can reduce and replace animal experimentation and may eventuall...
The limited adequacy of animal cell cultures and models to mimic the complexity of human bodies in l...
Microfluidic-based tissues-on-chips (TOCs) have thus far been restricted to modelling simple epithel...
Organ-on-a-chip devices have gained attention in the field of in vitro modeling due to their superio...
Organ-on-a-chip devices have gained attention in the field of in vitro modeling due to their superio...
Tissue barriers play a crucial role in human physiology by establishing tissue compartmentalization ...
Epithelia and endothelia delineate tissue compartments and control their environments by regulating ...
Overcoming the challenges that the pharmaceutical industry currently faces requires the development ...
Epithelial tissue serves as an interface between biological compartments. Many in vitro epithelial c...
"Mice are not little people" - a refrain becoming louder as the gaps between animal models and human...
Epithelial tissues are composed of layers of tightly connected cells shaped into complex three-dimen...
Epithelial tissues are composed of layers of tightly connected cells shaped into complex three-dimen...
Disruption of tissue barriers formed by cells is an integral part of the pathophysiology of many dis...
This dissertation evaluated the feasibility of using commercially available immortalized cell lines ...
Organs-on-a-chip systems are biomimetic devices containing microfluidic channels and chambers popula...
Advanced in vitro tissue chip models can reduce and replace animal experimentation and may eventuall...
The limited adequacy of animal cell cultures and models to mimic the complexity of human bodies in l...
Microfluidic-based tissues-on-chips (TOCs) have thus far been restricted to modelling simple epithel...
Organ-on-a-chip devices have gained attention in the field of in vitro modeling due to their superio...
Organ-on-a-chip devices have gained attention in the field of in vitro modeling due to their superio...
Tissue barriers play a crucial role in human physiology by establishing tissue compartmentalization ...
Epithelia and endothelia delineate tissue compartments and control their environments by regulating ...
Overcoming the challenges that the pharmaceutical industry currently faces requires the development ...
Epithelial tissue serves as an interface between biological compartments. Many in vitro epithelial c...
"Mice are not little people" - a refrain becoming louder as the gaps between animal models and human...
Epithelial tissues are composed of layers of tightly connected cells shaped into complex three-dimen...
Epithelial tissues are composed of layers of tightly connected cells shaped into complex three-dimen...
Disruption of tissue barriers formed by cells is an integral part of the pathophysiology of many dis...
This dissertation evaluated the feasibility of using commercially available immortalized cell lines ...
Organs-on-a-chip systems are biomimetic devices containing microfluidic channels and chambers popula...
Advanced in vitro tissue chip models can reduce and replace animal experimentation and may eventuall...
The limited adequacy of animal cell cultures and models to mimic the complexity of human bodies in l...
Microfluidic-based tissues-on-chips (TOCs) have thus far been restricted to modelling simple epithel...