Microfluidic-based tissues-on-chips (TOCs) have thus far been restricted to modelling simple epithelia as a single cell layer, but likely due to technical difficulties, no TOCs have been reported to include both an epithelial and a stromal component despite the biological importance of the stroma for the structure and function of human tissues. We present, for the first time, a novel approach to generate 3D multilayer tissue models in microfluidic platforms. As a proof of concept, we modelled skin, including a dermal and an epidermal compartment. To accomplish this, we developed a parallel flow method enabling the deposition of bilayer tissue in the upper chamber, which was subsequently maintained under dynamic nutrient flow conditions thro...
Organ-on-a-chip devices have gained attention in the field of in vitro modeling due to their superio...
International audienceThree-dimensional (3D) tissue models are invaluable tools that can closely ref...
Being a multi-layered organ, the complexity of human skin is difficult to mimic in vitro. Despite th...
Microfluidic-based tissues-on-chips (TOCs) have thus far been restricted to modelling simple epithel...
This work presents a new, cost-effective, and reliable microfluidic platform with the potential to g...
Over the last few years, several advances have been made toward the development and production of in...
Overcoming the challenges that the pharmaceutical industry currently faces requires the development ...
Tissue engineered skin constructs have been under development since the 1980s as a replacement for c...
Organs-on-a-chip systems are biomimetic devices containing microfluidic channels and chambers popula...
Tissue barriers play a crucial role in human physiology by establishing tissue compartmentalization ...
Organ-on-a-chip devices have gained attention in the field of in vitro modeling due to their superio...
Human tissues are mostly composed of different cell types, that are often highly organised in relati...
Epithelial tissues are composed of layers of tightly connected cells shaped into complex three-dimen...
The bottleneck for drug discovery and drug screening has prompted the recent surge for organ-on-a-ch...
Epithelial tissues are composed of layers of tightly connected cells shaped into complex three-dimen...
Organ-on-a-chip devices have gained attention in the field of in vitro modeling due to their superio...
International audienceThree-dimensional (3D) tissue models are invaluable tools that can closely ref...
Being a multi-layered organ, the complexity of human skin is difficult to mimic in vitro. Despite th...
Microfluidic-based tissues-on-chips (TOCs) have thus far been restricted to modelling simple epithel...
This work presents a new, cost-effective, and reliable microfluidic platform with the potential to g...
Over the last few years, several advances have been made toward the development and production of in...
Overcoming the challenges that the pharmaceutical industry currently faces requires the development ...
Tissue engineered skin constructs have been under development since the 1980s as a replacement for c...
Organs-on-a-chip systems are biomimetic devices containing microfluidic channels and chambers popula...
Tissue barriers play a crucial role in human physiology by establishing tissue compartmentalization ...
Organ-on-a-chip devices have gained attention in the field of in vitro modeling due to their superio...
Human tissues are mostly composed of different cell types, that are often highly organised in relati...
Epithelial tissues are composed of layers of tightly connected cells shaped into complex three-dimen...
The bottleneck for drug discovery and drug screening has prompted the recent surge for organ-on-a-ch...
Epithelial tissues are composed of layers of tightly connected cells shaped into complex three-dimen...
Organ-on-a-chip devices have gained attention in the field of in vitro modeling due to their superio...
International audienceThree-dimensional (3D) tissue models are invaluable tools that can closely ref...
Being a multi-layered organ, the complexity of human skin is difficult to mimic in vitro. Despite th...