We have designed a scaffold-free cell assembly method which can produce linear structures of individual living cells without using templates. The method involves dielectrophoretic assembly of cells suspended in a solution of a gelling agent above the gelling temperature. After the cell assembly in string-like structures was achieved with the AC electric field still applied, we gelled the solution by cooling it below its gelling point. The hydrogel entraps the assembled cell structure, preventing its disassembly and allowing further analysis without the presence of the external electric field. We pre-functionalised the cells with polyelectrolytes before the dielectrophoretic assembly which allowed us to line them up in multicellular strings ...
Three-dimensional organs and tissues can be constructed using hydrogels as support matrices for cell...
Establishing the 3D microscale organization of cells has numerous practical applications, such as in...
For many types of cells, behavior in two-dimensional (2D) culture differs from that in three-dimensi...
We have designed a scaffold-free cell assembly method which can produce linear structures of individ...
Spatial patterning of cells is of great importance in tissue engineering and biotechnology, enabling...
Artificial scaffolds such as synthetic gels or chemically-modified glass surfaces that have often be...
We present a microfluidic platform allowing dielectrophoresis-assisted formation of cell aggregates ...
Alginate gel formation on-chip is presented in the first part of this thesis. The technique allows i...
In this study, we have developed an integrated microfluidic platform for actively patterning mammali...
We present a microfluidic dielectrophoretic-actuated system designed to trap chosen single-cell and ...
Hydrogels are used extensively as cell-culture scaffolds for both 2D and 3D cell cultures due to the...
In this study, we have developed an integrated microfluidic platform for actively patterning mammali...
In this chapter we review the recent developments in fabrication of multicellular assemblies from ce...
Spatial patterning of cells is of great importance in tissue engineering and biotechnology, as it en...
For many cells used in tissue engineering applications, the scaffolds upon which they are seeded do ...
Three-dimensional organs and tissues can be constructed using hydrogels as support matrices for cell...
Establishing the 3D microscale organization of cells has numerous practical applications, such as in...
For many types of cells, behavior in two-dimensional (2D) culture differs from that in three-dimensi...
We have designed a scaffold-free cell assembly method which can produce linear structures of individ...
Spatial patterning of cells is of great importance in tissue engineering and biotechnology, enabling...
Artificial scaffolds such as synthetic gels or chemically-modified glass surfaces that have often be...
We present a microfluidic platform allowing dielectrophoresis-assisted formation of cell aggregates ...
Alginate gel formation on-chip is presented in the first part of this thesis. The technique allows i...
In this study, we have developed an integrated microfluidic platform for actively patterning mammali...
We present a microfluidic dielectrophoretic-actuated system designed to trap chosen single-cell and ...
Hydrogels are used extensively as cell-culture scaffolds for both 2D and 3D cell cultures due to the...
In this study, we have developed an integrated microfluidic platform for actively patterning mammali...
In this chapter we review the recent developments in fabrication of multicellular assemblies from ce...
Spatial patterning of cells is of great importance in tissue engineering and biotechnology, as it en...
For many cells used in tissue engineering applications, the scaffolds upon which they are seeded do ...
Three-dimensional organs and tissues can be constructed using hydrogels as support matrices for cell...
Establishing the 3D microscale organization of cells has numerous practical applications, such as in...
For many types of cells, behavior in two-dimensional (2D) culture differs from that in three-dimensi...