The importance of creating a three-dimensional (3-D) multicellular spheroid has recently been gaining attention due to the limitations of monolayer cell culture to precisely mimic in vivo structure and cellular interactions. Due to this emerging interest, researchers have utilized new tools, such as microfluidic devices, that allow high-throughput and precise size control to produce multicellular spheroids. We have developed a droplet-based microfluidic system that can encapsulate both cells and magnetic nanoparticles within alginate beads to mimic the function of a multicellular tumor spheroid. Cells were entrapped within the alginate beads along with magnetic nanoparticles, and the beads of a relatively uniform size (diameters of 85% of t...
Multicellular spheroids (MCSs) have a unique structure to represent the in vivo tissues and they hav...
The advent of 3D printing technologies promises to make microfluidic organ-on-chip technologies more...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
The importance of creating a three-dimensional (3-D) multicellular spheroid has recently been gainin...
Three-dimensional (3D) tumor spheroids offer unprecedented capability for drug screening because of ...
A promising approach for engineering artificial stem cell niches is provided by high-throughput micr...
Various attempts have been made to develop three-dimensional (3-D) cell culture methods because 3-D ...
Spheroids are three-dimensional clusters of cells that serve as in vitro tumor models to recapitulat...
A three-dimensional (3D) tissue model has significant advantages over the conventional two-dimension...
Cell spheroids are compact, multicellular aggregates grown in vitro that mimic the three-dimensional...
Three-dimensional (3D) tumor spheroids offer unprecedented capability for drug screening because of ...
Tumor spheroids are considered a valuable three dimensional (3D) tissue model to study various aspec...
[[abstract]]Multicellular spheroids are useful building blocks for tissue reconstruction. This study...
In this study, we report the development of a droplet microfluidic assay for the formation and radio...
Three-dimensional (3D) cell culture has become increasingly adopted as a more accurate model of the ...
Multicellular spheroids (MCSs) have a unique structure to represent the in vivo tissues and they hav...
The advent of 3D printing technologies promises to make microfluidic organ-on-chip technologies more...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...
The importance of creating a three-dimensional (3-D) multicellular spheroid has recently been gainin...
Three-dimensional (3D) tumor spheroids offer unprecedented capability for drug screening because of ...
A promising approach for engineering artificial stem cell niches is provided by high-throughput micr...
Various attempts have been made to develop three-dimensional (3-D) cell culture methods because 3-D ...
Spheroids are three-dimensional clusters of cells that serve as in vitro tumor models to recapitulat...
A three-dimensional (3D) tissue model has significant advantages over the conventional two-dimension...
Cell spheroids are compact, multicellular aggregates grown in vitro that mimic the three-dimensional...
Three-dimensional (3D) tumor spheroids offer unprecedented capability for drug screening because of ...
Tumor spheroids are considered a valuable three dimensional (3D) tissue model to study various aspec...
[[abstract]]Multicellular spheroids are useful building blocks for tissue reconstruction. This study...
In this study, we report the development of a droplet microfluidic assay for the formation and radio...
Three-dimensional (3D) cell culture has become increasingly adopted as a more accurate model of the ...
Multicellular spheroids (MCSs) have a unique structure to represent the in vivo tissues and they hav...
The advent of 3D printing technologies promises to make microfluidic organ-on-chip technologies more...
Three-dimensional (3D) cell culture systems can be regarded as suitable platforms to bridge the huge...