Conventional methods for fabricating three-dimensional (3-D) tissue engineering scaffolds have substantial limitations. In this paper, we present a method for applying microstereolithography in the construction of 3-D cartilage scaffolds. The system provides the ability to fabricate scaffolds having a pre-designed internal structure, such as pore size and porosity, by stacking photopolymerized materials. To control scaffold structure, CAD/CAM technology was used to generate a scaffold pattern algorithm. Since tissue scaffolds must be constructed using a biocompatible, biodegradable material, scaffolds were synthesized using liquid photocurable TMC/TMP, followed by acrylation at the terminal ends, and photocured under UV light irradiation. T...
Diseases in articular cartilages have affected millions of people globally. Although the biochemical...
Microstereolithography is a method used for rapid prototyping of polymeric and ceramic components. ...
AbstractArticular cartilage in synovial joints such as the knee has limited capability to regenerate...
Understanding chondrocyte behavior inside complex, three-dimensional environments with controlled pa...
To generate complex cartilage/bone tissues, scaffolds must possess several structural features that ...
Hydrogels are useful materials because of their chemical similarity to extracellular matrix and thei...
Due to its ability to create complex cellular geometries with extremely fine resolution, mask proje...
The aim of this study is to investigate the applicability of flexible and elastic poly(trimethylene ...
Microstereolithography (μSL) technology can fabricate three-dimensional (3D) tissue engineered scaff...
The limited self-healing ability of cartilage necessitates the application of alternative tissue eng...
Cartilage is an avascular tissue with extremely limited self-regeneration capabilities. At present, ...
Cartilage is an avascular tissue with extremely limited self-regeneration capabilities. At present, ...
The present study is focused on the study of novel 3D hydrogel scaffolds for regenerative medicine. ...
[[abstract]]Diseases in articular cartilages have affected millions of people globally. Although the...
Successful tissue engineering requires the generation of human scale implants that mimic the structu...
Diseases in articular cartilages have affected millions of people globally. Although the biochemical...
Microstereolithography is a method used for rapid prototyping of polymeric and ceramic components. ...
AbstractArticular cartilage in synovial joints such as the knee has limited capability to regenerate...
Understanding chondrocyte behavior inside complex, three-dimensional environments with controlled pa...
To generate complex cartilage/bone tissues, scaffolds must possess several structural features that ...
Hydrogels are useful materials because of their chemical similarity to extracellular matrix and thei...
Due to its ability to create complex cellular geometries with extremely fine resolution, mask proje...
The aim of this study is to investigate the applicability of flexible and elastic poly(trimethylene ...
Microstereolithography (μSL) technology can fabricate three-dimensional (3D) tissue engineered scaff...
The limited self-healing ability of cartilage necessitates the application of alternative tissue eng...
Cartilage is an avascular tissue with extremely limited self-regeneration capabilities. At present, ...
Cartilage is an avascular tissue with extremely limited self-regeneration capabilities. At present, ...
The present study is focused on the study of novel 3D hydrogel scaffolds for regenerative medicine. ...
[[abstract]]Diseases in articular cartilages have affected millions of people globally. Although the...
Successful tissue engineering requires the generation of human scale implants that mimic the structu...
Diseases in articular cartilages have affected millions of people globally. Although the biochemical...
Microstereolithography is a method used for rapid prototyping of polymeric and ceramic components. ...
AbstractArticular cartilage in synovial joints such as the knee has limited capability to regenerate...