This paper presents the design and fabrication of a multi-layer and multi-chamber microchip system using thiol-ene 'click chemistry' aimed for drug transport studies across tissue barrier models. The fabrication process enables rapid prototyping of multi-layer microfluidic chips using different thiol-ene polymer mixtures, where porous Teflon membranes for cell monolayer growth were incorporated by masked sandwiching thiol-ene-based fluid layers. Electrodes for trans-epithelial electrical resistance (TEER) measurements were incorporated using low-melting soldering wires in combination with platinum wires, enabling parallel real-time monitoring of barrier integrity for the eight chambers. Additionally, the translucent porous Teflon membrane e...
The kinetics of solute transport across cell monolayers is complex, and often consists of multiple a...
The majority of intestinal in vitro screening models use cell lines that do not reflect the complexi...
<p>(A) Schematic drawing of membrane enhancer and drugs flowed across the Caco-2 cells cultured in t...
<p>(A) Cross-sectional view of human intestinal microvilli. (B) Microarchitecture of one microchambe...
Novel microfluidic technologies allow the manufacture of in vitro organ-on-a-chip systems that hold ...
Endothelial and epithelial cellular barriers play a vital role in the selective transport of solutes...
In vitro studies of drug permeability are traditionally carried out using cultured monolayers of epi...
Dynamic flow in vitro models are currently widely explored for their applicability in drug developme...
The majority of intestinal in vitro screening models use cell lines that do not reflect the complexi...
Studies of intestinal drug permeability have traditionally been performed in the colon-derived Caco-...
The interconnection of different tissue-tissue interfaces may extend organ-on-chips to a new generat...
A major challenge of drug discovery is to overcome the mucus barrier, which is lined the surface of ...
Microphysiological systems have potential as test systems in studying the intestinal barrier, in whi...
Unsuccessful clinical translation of orally delivered biological drugs remains a challenge in pharma...
Transepithelial/transendothelial electrical resistance (TEER) measurements can be applied in organ-o...
The kinetics of solute transport across cell monolayers is complex, and often consists of multiple a...
The majority of intestinal in vitro screening models use cell lines that do not reflect the complexi...
<p>(A) Schematic drawing of membrane enhancer and drugs flowed across the Caco-2 cells cultured in t...
<p>(A) Cross-sectional view of human intestinal microvilli. (B) Microarchitecture of one microchambe...
Novel microfluidic technologies allow the manufacture of in vitro organ-on-a-chip systems that hold ...
Endothelial and epithelial cellular barriers play a vital role in the selective transport of solutes...
In vitro studies of drug permeability are traditionally carried out using cultured monolayers of epi...
Dynamic flow in vitro models are currently widely explored for their applicability in drug developme...
The majority of intestinal in vitro screening models use cell lines that do not reflect the complexi...
Studies of intestinal drug permeability have traditionally been performed in the colon-derived Caco-...
The interconnection of different tissue-tissue interfaces may extend organ-on-chips to a new generat...
A major challenge of drug discovery is to overcome the mucus barrier, which is lined the surface of ...
Microphysiological systems have potential as test systems in studying the intestinal barrier, in whi...
Unsuccessful clinical translation of orally delivered biological drugs remains a challenge in pharma...
Transepithelial/transendothelial electrical resistance (TEER) measurements can be applied in organ-o...
The kinetics of solute transport across cell monolayers is complex, and often consists of multiple a...
The majority of intestinal in vitro screening models use cell lines that do not reflect the complexi...
<p>(A) Schematic drawing of membrane enhancer and drugs flowed across the Caco-2 cells cultured in t...