Purpose: The purpose of this paper is to focus on the production of scaffolds with specific morphology and mechanical behavior to satisfy specific requirements regarding their stiffness, biological interactions and surface structure that can promote cell-cell and cell-matrix interactions though proper porosity, pore size and interconnectivity. Design/methodology/approach: This case study was focused on the production of multi-layered hybrid scaffolds made of polycaprolactone and consisting in supporting grids obtained by Material Extrusion (ME) alternated with electrospun layers. An open source 3D printer was utilized, with a grain extrusion head that allows the production and distribution of strands on the plate according to the designed g...
Three-dimensional (3D) printing or additive manufacturing (AM) is a technique that is commonly used ...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
Material extrusion additive manufacturing has rapidly grown in use for tissue engineering research s...
Electrospun scaffolds provide a dense framework of nanofibers with pore sizes and fiber diameters th...
Published: 05 February 2020The aim of this study is to develop a hybrid 3D printing platform integra...
A novel (scalable) electrospinning process was developed to fabricate bio-inspired multiscale three-...
Melt electrospinning is a promising approach to manufacture biocompatible scaffolds for tissue engin...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
A number of different processing techniques have been developed to design and fabricate three-dimens...
AbstractA machine tool for the automatic fabrication of biocompatible scaffolds with embedded nanofi...
Tissue engineering (TE) is envisaged to play a vital role in improving the quality of life by restor...
This research work aims to validate a new system that enables the fabrication of multimaterial 3D st...
Three-dimensional (3D) printing is a powerful manufacturing tool for making 3D structures with well-...
Electrospinning is a common technique used to fabricate fibrous scaffolds for tissue engineering app...
Two common problems in the fabrication of tissue engineered scaffolds using electrospinning techniq...
Three-dimensional (3D) printing or additive manufacturing (AM) is a technique that is commonly used ...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
Material extrusion additive manufacturing has rapidly grown in use for tissue engineering research s...
Electrospun scaffolds provide a dense framework of nanofibers with pore sizes and fiber diameters th...
Published: 05 February 2020The aim of this study is to develop a hybrid 3D printing platform integra...
A novel (scalable) electrospinning process was developed to fabricate bio-inspired multiscale three-...
Melt electrospinning is a promising approach to manufacture biocompatible scaffolds for tissue engin...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
A number of different processing techniques have been developed to design and fabricate three-dimens...
AbstractA machine tool for the automatic fabrication of biocompatible scaffolds with embedded nanofi...
Tissue engineering (TE) is envisaged to play a vital role in improving the quality of life by restor...
This research work aims to validate a new system that enables the fabrication of multimaterial 3D st...
Three-dimensional (3D) printing is a powerful manufacturing tool for making 3D structures with well-...
Electrospinning is a common technique used to fabricate fibrous scaffolds for tissue engineering app...
Two common problems in the fabrication of tissue engineered scaffolds using electrospinning techniq...
Three-dimensional (3D) printing or additive manufacturing (AM) is a technique that is commonly used ...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
Material extrusion additive manufacturing has rapidly grown in use for tissue engineering research s...