Three-dimensional (3D) scaffolds with optimum physicochemical properties are able to elicit specific cellular behaviors and guide tissue formation. However, cell–material interactions are limited in scaffolds fabricated by melt extrusion additive manufacturing (ME-AM) of synthetic polymers, and plasma treatment can be used to render the surface of the scaffolds more cell adhesive. In this study, a hybrid AM technology, which combines a ME-AM technique with an atmospheric pressure plasma jet, was employed to fabricate and plasma treat scaffolds in a single process. The organosilane monomer (3-aminopropyl)trimethoxysilane (APTMS) and a mixture of maleic anhydride and vinyltrimethoxysilane (MA-VTMOS) were used for the first time to plasma trea...
Materials for biomedical applications typically involve surface engineering. Scaffolds used for tiss...
Non-thermal plasma technology is one of those techniques that suffer relatively little from diffusio...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
Three-dimensional (3D) scaffolds with optimum physicochemical properties are able to elicit specific...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
This study points out how the plasma modification of PCL porous scaffolds, produced by Solvent Casti...
Synthetic biodegradable polymers are commonly used as scaffolds for tissue engineering despite their...
Cell colonization of the surrounding environment is a very significant process in both physiological...
A commonly applied strategy in the field of tissue engineering (TE) is the use of temporary three-di...
Mesenchymal stem cells (MSCs) used for clinical applications require in vitro expansion to achieve t...
Plasma processes are largely employed in the biomedical field for different kind of materials. In pa...
Various types of synthetic polyesters have been developed as biomaterials for tissue engineering. Th...
Scaffolds with gradients of physico-chemical properties and controlled 3D architectures are crucial ...
In design of a tissue engineering scaffold, surface physicochemistry is one of the most important is...
The current generation of tissue engineered additive manufactured scaffolds for cartilage repair sho...
Materials for biomedical applications typically involve surface engineering. Scaffolds used for tiss...
Non-thermal plasma technology is one of those techniques that suffer relatively little from diffusio...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
Three-dimensional (3D) scaffolds with optimum physicochemical properties are able to elicit specific...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
This study points out how the plasma modification of PCL porous scaffolds, produced by Solvent Casti...
Synthetic biodegradable polymers are commonly used as scaffolds for tissue engineering despite their...
Cell colonization of the surrounding environment is a very significant process in both physiological...
A commonly applied strategy in the field of tissue engineering (TE) is the use of temporary three-di...
Mesenchymal stem cells (MSCs) used for clinical applications require in vitro expansion to achieve t...
Plasma processes are largely employed in the biomedical field for different kind of materials. In pa...
Various types of synthetic polyesters have been developed as biomaterials for tissue engineering. Th...
Scaffolds with gradients of physico-chemical properties and controlled 3D architectures are crucial ...
In design of a tissue engineering scaffold, surface physicochemistry is one of the most important is...
The current generation of tissue engineered additive manufactured scaffolds for cartilage repair sho...
Materials for biomedical applications typically involve surface engineering. Scaffolds used for tiss...
Non-thermal plasma technology is one of those techniques that suffer relatively little from diffusio...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...