In recent years, organs-on-chips (OOCs) have been developed to meet the desire for more realistic in vitro cell culture models. These systems introduce microfluidics, mechanical stretch and other physiological stimuli to in vitro models, thereby significantly enhancing their descriptive power. In most OOCs, porous polymeric membranes are used as substrates for cell culture. The polymeric material, morphology and shape of these membranes are often suboptimal, despite their importance for achieving ideal cell functionality such as cell-cell interaction and differentiation. The currently used membranes are flat and thus do not account for the shape and surface morphology of a tissue. Moreover, the polymers used for fabrication of these membran...
Drug discovery and toxicology is a complex process that involves considerable basic research and pre...
A relevant number of organ-on-chips is aimed at modeling epithelial/endothelial interfaces between t...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...
In recent years, organs-on-chips (OOCs) have been developed to meet the desire for more realistic in...
International audienceTissue engineering is an interdisciplinary field, wherein scientists from diff...
Tissue engineering is an interdisciplinary field, wherein scientists from different backgrounds coll...
Drug development is a complex, time-consuming (10 - 15 years) and expensive process. For a new medic...
Organs on chips are a novel set of devices whose aim is to mimic cellular in-vivo conditions of the ...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
International audienceTissue engineering is an interdisciplinary field, wherein scientists from diff...
Organ-on-Chips (OOCs) are micro-fabricated devices which are used to culture cells in order to mimic...
Organ-on-Chips (OOCs) are micro-fabricated devices which are used to culture cells in order to mimic...
The basal lamina or basement membrane (BM) is a key physiological system that participates in physic...
Drug discovery and toxicology is a complex process that involves considerable basic research and pre...
A relevant number of organ-on-chips is aimed at modeling epithelial/endothelial interfaces between t...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...
In recent years, organs-on-chips (OOCs) have been developed to meet the desire for more realistic in...
International audienceTissue engineering is an interdisciplinary field, wherein scientists from diff...
Tissue engineering is an interdisciplinary field, wherein scientists from different backgrounds coll...
Drug development is a complex, time-consuming (10 - 15 years) and expensive process. For a new medic...
Organs on chips are a novel set of devices whose aim is to mimic cellular in-vivo conditions of the ...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
International audienceTissue engineering is an interdisciplinary field, wherein scientists from diff...
Organ-on-Chips (OOCs) are micro-fabricated devices which are used to culture cells in order to mimic...
Organ-on-Chips (OOCs) are micro-fabricated devices which are used to culture cells in order to mimic...
The basal lamina or basement membrane (BM) is a key physiological system that participates in physic...
Drug discovery and toxicology is a complex process that involves considerable basic research and pre...
A relevant number of organ-on-chips is aimed at modeling epithelial/endothelial interfaces between t...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...