AbstractThe precise microenvironments required for optimal expansion or differentiation of stem cells are only beginning to emerge now, and the controlled differentiation of embryonic stem cells based on tissue engineering remains a relatively unexplored field. We have developed a small-volume in vitro system in which 3D neural tissues derived from embryonic stem cells are placed within up to four micro-chambers connected by micro-channels. Multi-electrode arrays (M.E.A.) were designed onto the porous membranes to record and stimulate electrophysiological activities from 3D neural tissues. A dedicated perfusion system based on air pressure was used to allow the circulation of the culture medium to the different micro-organs through a microf...
Mammalian cells cultured on 2D surfaces in microfluidic channels are increasingly used in drug devel...
Paracrine signals produced from stem cells influence tissue regeneration by inducing the differentia...
peer reviewedHuman pluripotent stem cells hold great promise for applications in drug discovery and ...
The precise microenvironments required for optimal expansion or differentiation of stem cells are on...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
A revolution in cell culturing has been seen in the last two decades in which 3D culturing became th...
Introduction: Due to the ability to mimic in vivo cellular microenvironments, the development of mul...
Microfluidics recently emerged with the potential to fulfill many technological gaps as they possess...
In this work we present advances in three dimensional (3D) neuronal cell culture systems based on a ...
Controlling cellular orientation, proliferation, and differentiation is valuable in designing organ ...
Neurological disorders have an incidence of more than 90 million people worldwide, and despite the s...
There is a fundamental need for clinically relevant, reproducible, and standardized in vitro human n...
Human stem cell-derived cells and tissues hold considerable potential for applications in regenerati...
Breakthroughs in health care over the coming decades may well consist of cell based therapeutics, po...
We report a microfluidic array for investigating and quantitatively analyzing human neural stem cell...
Mammalian cells cultured on 2D surfaces in microfluidic channels are increasingly used in drug devel...
Paracrine signals produced from stem cells influence tissue regeneration by inducing the differentia...
peer reviewedHuman pluripotent stem cells hold great promise for applications in drug discovery and ...
The precise microenvironments required for optimal expansion or differentiation of stem cells are on...
Neural tissue engineering aims at developing novel approaches for the treatment of diseases of the n...
A revolution in cell culturing has been seen in the last two decades in which 3D culturing became th...
Introduction: Due to the ability to mimic in vivo cellular microenvironments, the development of mul...
Microfluidics recently emerged with the potential to fulfill many technological gaps as they possess...
In this work we present advances in three dimensional (3D) neuronal cell culture systems based on a ...
Controlling cellular orientation, proliferation, and differentiation is valuable in designing organ ...
Neurological disorders have an incidence of more than 90 million people worldwide, and despite the s...
There is a fundamental need for clinically relevant, reproducible, and standardized in vitro human n...
Human stem cell-derived cells and tissues hold considerable potential for applications in regenerati...
Breakthroughs in health care over the coming decades may well consist of cell based therapeutics, po...
We report a microfluidic array for investigating and quantitatively analyzing human neural stem cell...
Mammalian cells cultured on 2D surfaces in microfluidic channels are increasingly used in drug devel...
Paracrine signals produced from stem cells influence tissue regeneration by inducing the differentia...
peer reviewedHuman pluripotent stem cells hold great promise for applications in drug discovery and ...