Fabrication of new biodegradable scaffolds that guide and stimulate tissue regeneration is still a major issue in tissue engineering approaches. Scaffolds that possess adequate biodegradability, pore size, interconnectivity, bioactivity and mechanical properties in accordance with the injured tissue are required. This work aimed to develop and characterize three-dimensional (3-D) scaffolds that fulfill the aforementioned requirements. For this, a nozzle-based rapid prototyping system was used to combine polylactic acid and a bioactive CaP glass to fabricate 3-D biodegradable scaffolds with two patterns (orthogonal and displaced double layer). Scanning electron microscopy and micro-computer tomography showed that 3-D scaffolds had completely...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Bio-based and patient-specific three-dimensional (3D) scaffolds can present next generation strategi...
Bio-based and patient-specific three-dimensional (3D) scaffolds can present next generation strategi...
Fabrication of new biodegradable scaffolds that guide and stimulate tissue regeneration is still a m...
Fabrication of new biodegradable scaffolds that guide and stimulate tissue regeneration is still a m...
The design of smart biodegradable scaffolds plays a crucial role in the regeneration of tissues and ...
Premi extraordinari doctorat 2013-2014The design of smart biodegradable scaffolds plays a crucial ro...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
Three-dimensional printing (3DP) consists of a group of promising additive manufacturing techniques ...
Premi extraordinari doctorat 2013-2014The design of smart biodegradable scaffolds plays a crucial ro...
The primary research objective of this project is to investigate the ability of adipose derived mese...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Three-dimensional (3D) bioprinting is an emerging technology in which scaffolding materials and cell...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Bio-based and patient-specific three-dimensional (3D) scaffolds can present next generation strategi...
Bio-based and patient-specific three-dimensional (3D) scaffolds can present next generation strategi...
Fabrication of new biodegradable scaffolds that guide and stimulate tissue regeneration is still a m...
Fabrication of new biodegradable scaffolds that guide and stimulate tissue regeneration is still a m...
The design of smart biodegradable scaffolds plays a crucial role in the regeneration of tissues and ...
Premi extraordinari doctorat 2013-2014The design of smart biodegradable scaffolds plays a crucial ro...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
Three-dimensional printing (3DP) consists of a group of promising additive manufacturing techniques ...
Premi extraordinari doctorat 2013-2014The design of smart biodegradable scaffolds plays a crucial ro...
The primary research objective of this project is to investigate the ability of adipose derived mese...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Three-dimensional (3D) bioprinting is an emerging technology in which scaffolding materials and cell...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Bio-based and patient-specific three-dimensional (3D) scaffolds can present next generation strategi...
Bio-based and patient-specific three-dimensional (3D) scaffolds can present next generation strategi...