Single cell-laden three-dimensional (3D) microgels that can serve to mimic stem cell niches in vitro, and are therefore termed microniches, can be efficiently fabricated by droplet-based microfluidics. In this technique an aqueous polymer solution along with a highly diluted cell solution is injected into a microfluidic device to create monodisperse pre-microgel droplets that are then solidified by a polymer crosslinking reaction to obtain monodisperse single cell-laden microniches. However, problems limiting this approach studying the fate of single cells include Poisson encapsulation statistics that result in mostly empty microniches, and cells egressing from the microniches during subsequent cell culture. Here, we present a strategy to b...
Multicellular agglomerates in form of irregularly shaped or spherical clusters can recapitulate cell...
Biomolecular signaling is of utmost importance in governing many biological processes such as the pa...
As the field of tissue engineering develops, methods for screening combinations of signals for their...
Single cell-laden three-dimensional (3D) microgels that can serve to mimic stem cell niches in vitro...
Single-cell-laden microgels support physiological 3D culture conditions while enabling straightforwa...
Breakthroughs in health care over the coming decades may well consist of cell based therapeutics, po...
Microfluidic flow-focusing devices are widely used to generate emulsion particles (???droplets???), ...
Combining live imaging with the ability to retrieve individual cells of interest remains a technical...
Cell-laden microgels with highly uniform sizes have significant potential in tissue engineering and ...
Here we present a microfluidic culture platform for enhancing single stem cell survival. Traditional...
3D microfluidic cell culture systems offer a biologically relevant model to conduct micro-scale mamm...
The effects of gradients of bioactive molecules on the cell microenvironment are crucial in several ...
A promising approach for engineering artificial stem cell niches is provided by high-throughput micr...
Conventional 2D cell culture fails to reproduce emph{in vivo} conditions. In this PhD thesis, 3D cel...
Elasticity of cellular microenvironments strongly influences cell motility, phagocytosis, growth and...
Multicellular agglomerates in form of irregularly shaped or spherical clusters can recapitulate cell...
Biomolecular signaling is of utmost importance in governing many biological processes such as the pa...
As the field of tissue engineering develops, methods for screening combinations of signals for their...
Single cell-laden three-dimensional (3D) microgels that can serve to mimic stem cell niches in vitro...
Single-cell-laden microgels support physiological 3D culture conditions while enabling straightforwa...
Breakthroughs in health care over the coming decades may well consist of cell based therapeutics, po...
Microfluidic flow-focusing devices are widely used to generate emulsion particles (???droplets???), ...
Combining live imaging with the ability to retrieve individual cells of interest remains a technical...
Cell-laden microgels with highly uniform sizes have significant potential in tissue engineering and ...
Here we present a microfluidic culture platform for enhancing single stem cell survival. Traditional...
3D microfluidic cell culture systems offer a biologically relevant model to conduct micro-scale mamm...
The effects of gradients of bioactive molecules on the cell microenvironment are crucial in several ...
A promising approach for engineering artificial stem cell niches is provided by high-throughput micr...
Conventional 2D cell culture fails to reproduce emph{in vivo} conditions. In this PhD thesis, 3D cel...
Elasticity of cellular microenvironments strongly influences cell motility, phagocytosis, growth and...
Multicellular agglomerates in form of irregularly shaped or spherical clusters can recapitulate cell...
Biomolecular signaling is of utmost importance in governing many biological processes such as the pa...
As the field of tissue engineering develops, methods for screening combinations of signals for their...