Spatial patterning of cells is of great importance in tissue engineering and biotechnology, enabling, for example the creation of bottom-up histoarchitectures of heterogeneous cells, or cell aggregates for in vitro high-throughput toxicological and therapeutic studies within 3D microenvironments. In this paper, a single-step process for creating peelable and resilient hydrogels, encapsulating arrays of biological cell aggregates formed by negative DEP has been devised. The dielectrophoretic trapping within low-energy regions of the DEP-dot array reduces cell exposure to high field stresses while creating distinguishable, evenly spaced arrays of aggregates. In addition to using an optimal combination of PEG diacrylate pre-polymer solution co...
Three-dimensional (3D) printing offers versatile possibilities for adapting the structural parameter...
For many types of cells, behavior in two-dimensional (2D) culture differs from that in three-dimensi...
For many types of cells, behavior in two-dimensional (2D) culture differs from that in three-dimensi...
Spatial patterning of cells is of great importance in tissue engineering and biotechnology, enabling...
Spatial patterning of cells is of great importance in tissue engineering and biotechnology, as it en...
We have designed a scaffold-free cell assembly method which can produce linear structures of individ...
We present a microfluidic platform allowing dielectrophoresis-assisted formation of cell aggregates ...
Establishing the 3D microscale organization of cells has numerous practical applications, such as in...
We present a microfluidic dielectrophoretic-actuated system designed to trap chosen single-cell and ...
Live cell arrays are an emerging tool that expand traditional 2D in vitro cell culture, increasing e...
In this study, we have developed an integrated microfluidic platform for actively patterning mammali...
In this study, we have developed an integrated microfluidic platform for actively patterning mammali...
Multicellular spheroids represent a well-established 3D model to study healthy and diseased cells in...
Cell aggregates are widely used either as in-vitro models for drug screening, fundamental studies on...
Fabrication of extracellular microenvironment for cancer cell growth in vitro is an indispensable te...
Three-dimensional (3D) printing offers versatile possibilities for adapting the structural parameter...
For many types of cells, behavior in two-dimensional (2D) culture differs from that in three-dimensi...
For many types of cells, behavior in two-dimensional (2D) culture differs from that in three-dimensi...
Spatial patterning of cells is of great importance in tissue engineering and biotechnology, enabling...
Spatial patterning of cells is of great importance in tissue engineering and biotechnology, as it en...
We have designed a scaffold-free cell assembly method which can produce linear structures of individ...
We present a microfluidic platform allowing dielectrophoresis-assisted formation of cell aggregates ...
Establishing the 3D microscale organization of cells has numerous practical applications, such as in...
We present a microfluidic dielectrophoretic-actuated system designed to trap chosen single-cell and ...
Live cell arrays are an emerging tool that expand traditional 2D in vitro cell culture, increasing e...
In this study, we have developed an integrated microfluidic platform for actively patterning mammali...
In this study, we have developed an integrated microfluidic platform for actively patterning mammali...
Multicellular spheroids represent a well-established 3D model to study healthy and diseased cells in...
Cell aggregates are widely used either as in-vitro models for drug screening, fundamental studies on...
Fabrication of extracellular microenvironment for cancer cell growth in vitro is an indispensable te...
Three-dimensional (3D) printing offers versatile possibilities for adapting the structural parameter...
For many types of cells, behavior in two-dimensional (2D) culture differs from that in three-dimensi...
For many types of cells, behavior in two-dimensional (2D) culture differs from that in three-dimensi...