AbstractIn this contribution the impact of culture medium flow on the cultivation of Madin-Darby canine kidney cells on quartz crystal resonators (QCRs) was studied. Cells were cultivated at different medium flow rates in a bioreactor chip containing 4 QCRs. Confluency and motility of cells were analyzed based on light microscopical pictures and impedance spectra of the resonators. Results were compared with cells cultivated in culture flasks mounted on a shaker and CFD simulation results of the bioreactor chip. Based on our studies the flow-regime in the micro fluidic channel geometry has major impact e.g. on the cell division rate
We have developed a bilayer microfluidic system with integrated transepithelial electrical resistanc...
Single-cell culture provides a unique means to reveal the heterogeneity within mammalian cell popula...
Interest for microcarrier-based processes for the large-scale culture of adherent cells has recently...
AbstractThe influence of statistical variations in cell distribution on the proliferation of Madin-D...
The dynamic cell culture process has been widely used in tissue engineering. The success of cell cul...
AbstractThe suitability of the quartz crystal microbalance (QCM) technique for monitoring the attach...
The generation of physiologically relevant in-vitro models of biological barriers can play a key rol...
High throughput experiments can be used to spatially and temporally investigate the many factors tha...
Lab-on-Chip technology is an emerging tool to obtain, culture and study different kinds of tissue mo...
In vitro quantification of the effect of mechanical loads on cells by live microscopy requires preci...
Most current microfluidic cell culture systems are integrated single use devices. This can limit thr...
A microfluidic Organ-on-Chip has been developed for monitoring the epithelial cells monolayer. Equi...
Cell cycle and differentiation precisely regulate the size and geometry of tissues and organs, and a...
The ability to culture individual cells provides a unique method to assess the heterogeneity of mamm...
This report describes the development of endothelial cell (EC) cultivation devices with different ch...
We have developed a bilayer microfluidic system with integrated transepithelial electrical resistanc...
Single-cell culture provides a unique means to reveal the heterogeneity within mammalian cell popula...
Interest for microcarrier-based processes for the large-scale culture of adherent cells has recently...
AbstractThe influence of statistical variations in cell distribution on the proliferation of Madin-D...
The dynamic cell culture process has been widely used in tissue engineering. The success of cell cul...
AbstractThe suitability of the quartz crystal microbalance (QCM) technique for monitoring the attach...
The generation of physiologically relevant in-vitro models of biological barriers can play a key rol...
High throughput experiments can be used to spatially and temporally investigate the many factors tha...
Lab-on-Chip technology is an emerging tool to obtain, culture and study different kinds of tissue mo...
In vitro quantification of the effect of mechanical loads on cells by live microscopy requires preci...
Most current microfluidic cell culture systems are integrated single use devices. This can limit thr...
A microfluidic Organ-on-Chip has been developed for monitoring the epithelial cells monolayer. Equi...
Cell cycle and differentiation precisely regulate the size and geometry of tissues and organs, and a...
The ability to culture individual cells provides a unique method to assess the heterogeneity of mamm...
This report describes the development of endothelial cell (EC) cultivation devices with different ch...
We have developed a bilayer microfluidic system with integrated transepithelial electrical resistanc...
Single-cell culture provides a unique means to reveal the heterogeneity within mammalian cell popula...
Interest for microcarrier-based processes for the large-scale culture of adherent cells has recently...