Recent progress in the field of human induced pluripotent stem cells (iPSCs) has led to the efficient production of human neuronal cell models for in vitro study. This has the potential to enable the understanding of live human cellular and network function which is otherwise not possible. However, a major challenge is the generation of reproducible neural networks together with the ability to interrogate and record at the single cell level. A promising aid is the use of biomaterial scaffolds that would enable the development and guidance of neuronal networks in physiologically relevant architectures and dimensionality. The optimal scaffold material would need to be precisely fabricated with submicron resolution, be optically transparent, a...
Understanding the mechanisms underlying cell-surface interaction is of fundamental importance for th...
A strategy to modulate the behavior of stem cells in culture is to mimic structural aspects of the n...
Direct Laser Writing (DLW) is an innovative tool that allows the photofabrication of high resolution...
Recent progress in the field of human induced pluripotent stem cells (iPSCs) has led to the efficien...
Zr-Si organic-inorganic scaffolds fabricated by a two-photon polymerization technique were used for ...
Neural progenitor cells generated from human induced pluripotent stem cells (hiPSCs) are the forefro...
In vitro cell culture platforms are important tools for the study of neural functions in health and ...
BACKGROUND: Three-dimensional (3D) in vitro models have been developed into more in vivo resembling ...
Two photon polymerisation is presented as a fabrication technique for advancing in vitro neuron bios...
This study investigates the utility of a tailored poly(ethylene glycol) diacrylate-crosslinked porou...
The study of human brain physiology and diseases like Parkinson´s and Alzheimer’s requires precise m...
We demonstrate an artificial three-dimensional (3D) electrical active human neuronal network system,...
Direct Laser Writing (DLW) is an innovative tool that allows the photofabrication of high resolution...
Human pluripotent stem cells (hPSCs) have great potential in regenerative medicine, disease modeling...
Understanding the mechanisms underlying cell-surface interaction is of fundamental importance for th...
A strategy to modulate the behavior of stem cells in culture is to mimic structural aspects of the n...
Direct Laser Writing (DLW) is an innovative tool that allows the photofabrication of high resolution...
Recent progress in the field of human induced pluripotent stem cells (iPSCs) has led to the efficien...
Zr-Si organic-inorganic scaffolds fabricated by a two-photon polymerization technique were used for ...
Neural progenitor cells generated from human induced pluripotent stem cells (hiPSCs) are the forefro...
In vitro cell culture platforms are important tools for the study of neural functions in health and ...
BACKGROUND: Three-dimensional (3D) in vitro models have been developed into more in vivo resembling ...
Two photon polymerisation is presented as a fabrication technique for advancing in vitro neuron bios...
This study investigates the utility of a tailored poly(ethylene glycol) diacrylate-crosslinked porou...
The study of human brain physiology and diseases like Parkinson´s and Alzheimer’s requires precise m...
We demonstrate an artificial three-dimensional (3D) electrical active human neuronal network system,...
Direct Laser Writing (DLW) is an innovative tool that allows the photofabrication of high resolution...
Human pluripotent stem cells (hPSCs) have great potential in regenerative medicine, disease modeling...
Understanding the mechanisms underlying cell-surface interaction is of fundamental importance for th...
A strategy to modulate the behavior of stem cells in culture is to mimic structural aspects of the n...
Direct Laser Writing (DLW) is an innovative tool that allows the photofabrication of high resolution...