Although the microfabrication techniques for microwells enabled to guide physiologically relevant three-dimensional cell spheroid formation, there have been substantial interests to more closely mimic nano/microtopographies of in vivo cellular microenvironment. Here, we developed a versatile fabrication process for nanofibrous concave microwells (NCMs) with a controllable size and shape. The key to the fabrication process was the use of an array of hemispherical convex electrolyte solution drops as the grounded collector for electrospinning, which greatly improved the degree of freedom of the size, shape, and curvature of an NCM. A polymer substrate with through-holes was prepared for the electrolyte solution to come out through the hole an...
ABSTRACTCellular spheroids serving as three-dimensional (3D) in vitro tissue models have attracted i...
Complex three-dimensional (3D) cell cultures are being increasingly implemented in biomedical resear...
This project focuses on the eventual aim to engineer microvascular network which serves as a platfor...
Although the microfabrication techniques for microwells enabled to guide physiologically relevant th...
A novel approach based on advanced micromachining is demonstrated to fabricate concave microwell arr...
The creation of engineered 3D microtissues has attracted prodigious interest because of the fact tha...
A novel approach based on advanced micromachining is demonstrated to fabricate concave microwell arr...
Cellular spheroids serving as three-dimensional (3D) in vitro tissue models have attracted increasin...
Stem cells-scaffold constructs were widely applied in tissue engineering, in which pore size and por...
Three-dimensional cellular aggregates can mimic the natural microenvironment of tissues and organs a...
Multicellular spheroids represent a well-established 3D model to study healthy and diseased cells in...
Cell spheroid culture can be an effective approach for providing an engineered microenvironment simi...
Lab-grown tissues have tremendous potential to accelerate drug discovery and identify some of the un...
This study describes a novel method for generation of an array of three-dimensional (3D) multicellul...
Cell spheroid culture can be an effective approach for providing an engineered microenvironment simi...
ABSTRACTCellular spheroids serving as three-dimensional (3D) in vitro tissue models have attracted i...
Complex three-dimensional (3D) cell cultures are being increasingly implemented in biomedical resear...
This project focuses on the eventual aim to engineer microvascular network which serves as a platfor...
Although the microfabrication techniques for microwells enabled to guide physiologically relevant th...
A novel approach based on advanced micromachining is demonstrated to fabricate concave microwell arr...
The creation of engineered 3D microtissues has attracted prodigious interest because of the fact tha...
A novel approach based on advanced micromachining is demonstrated to fabricate concave microwell arr...
Cellular spheroids serving as three-dimensional (3D) in vitro tissue models have attracted increasin...
Stem cells-scaffold constructs were widely applied in tissue engineering, in which pore size and por...
Three-dimensional cellular aggregates can mimic the natural microenvironment of tissues and organs a...
Multicellular spheroids represent a well-established 3D model to study healthy and diseased cells in...
Cell spheroid culture can be an effective approach for providing an engineered microenvironment simi...
Lab-grown tissues have tremendous potential to accelerate drug discovery and identify some of the un...
This study describes a novel method for generation of an array of three-dimensional (3D) multicellul...
Cell spheroid culture can be an effective approach for providing an engineered microenvironment simi...
ABSTRACTCellular spheroids serving as three-dimensional (3D) in vitro tissue models have attracted i...
Complex three-dimensional (3D) cell cultures are being increasingly implemented in biomedical resear...
This project focuses on the eventual aim to engineer microvascular network which serves as a platfor...