Microfluidic flow-focusing devices (FFD) are widely used to generate monodisperse droplets and microgels with controllable size, shape and composition for various biomedical applications. However, highly inconsistent and often low viability of cells encapsulated within the microgels prepared via microfluidic FFD has been a major concern, and yet this aspect has not been systematically explored. In this study, we demonstrate that the biocompatibility of microfluidic FFD to fabricate cell-laden microgels can be significantly enhanced by controlling the channel geometry. When a single emulsion (???single???) microfluidic FFD is used to fabricate cell-laden microgels, there is a significant decrease and batch-to-batch variability in the cell vi...
Single-cell techniques have become more and more incorporated in cell biological research over the p...
Microfluidic technologies open the door to a plethora of novel applications in biological and chemic...
Microfluidic flow-focusing devices (FFD) are increasingly adopted to develop micron-scale emulsion p...
Microfluidic flow-focusing devices (FFD) are widely used to generate monodisperse droplets and micro...
Microfluidic flow-focusing devices are widely used to generate emulsion particles (???droplets???), ...
Cell-laden microgels with highly uniform sizes have significant potential in tissue engineering and ...
Microfluidic flow-focusing devices (FFD) are widely used to develop micron-scale emulsion particles ...
Droplet Microfluidics can be utilized to control the production of single droplets and double emulsi...
Microfluidic flow-focusing devices (FFD) are increasingly adopted to develop micron-scale emulsion p...
Microfluidic flow-focusing devices (FFD) are widely used to develop micron-scale emulsion particles ...
Microfabrication technology provides a versatile platform for engineering hydrogels used in biomedic...
This thesis presents the experimental and computational study of hydrogel microgels using flow-focus...
This thesis presents the experimental and computational study of hydrogel microgels using flow-focus...
In this thesis, I developed three different microfluidic platforms to produce cell-loaded spherical,...
Single-cell techniques have become more and more incorporated in cell biological research over the p...
Single-cell techniques have become more and more incorporated in cell biological research over the p...
Microfluidic technologies open the door to a plethora of novel applications in biological and chemic...
Microfluidic flow-focusing devices (FFD) are increasingly adopted to develop micron-scale emulsion p...
Microfluidic flow-focusing devices (FFD) are widely used to generate monodisperse droplets and micro...
Microfluidic flow-focusing devices are widely used to generate emulsion particles (???droplets???), ...
Cell-laden microgels with highly uniform sizes have significant potential in tissue engineering and ...
Microfluidic flow-focusing devices (FFD) are widely used to develop micron-scale emulsion particles ...
Droplet Microfluidics can be utilized to control the production of single droplets and double emulsi...
Microfluidic flow-focusing devices (FFD) are increasingly adopted to develop micron-scale emulsion p...
Microfluidic flow-focusing devices (FFD) are widely used to develop micron-scale emulsion particles ...
Microfabrication technology provides a versatile platform for engineering hydrogels used in biomedic...
This thesis presents the experimental and computational study of hydrogel microgels using flow-focus...
This thesis presents the experimental and computational study of hydrogel microgels using flow-focus...
In this thesis, I developed three different microfluidic platforms to produce cell-loaded spherical,...
Single-cell techniques have become more and more incorporated in cell biological research over the p...
Single-cell techniques have become more and more incorporated in cell biological research over the p...
Microfluidic technologies open the door to a plethora of novel applications in biological and chemic...
Microfluidic flow-focusing devices (FFD) are increasingly adopted to develop micron-scale emulsion p...