This study investigates the use of low cost, customizable, biodegradable, polymer-ceramic composite porous structures (bone bricks) for large bone tissue regeneration. Different ceramic materials (hydroxyapatite (HA), β-tri-calcium phosphate (TCP) and Bioglass (45S5) were mixed with poly-ε-caprolactone (PCL). Bone bricks with different material compositions were produced using an extrusion-based additive manufacturing system. Produced bone bricks were morphologically and mechanically assessed. Results allowed to establish a correlation between scaffolds architecture and material composition and scaffolds performance. Reinforced scaffolds showed improved mechanical properties. Best mechanical properties were obtained with PCL/TCP bone bricks...
Bone is a vascularized and connective tissue. The cortical bone is the main part responsible for the...
In recent years, the number of people needing bone replacements for the treatment of defects caused ...
International audienceApplications in additive manufacturing technologies for bone tissue engineerin...
There is a significant unmet clinical need to prevent amputations due to large bone loss injuries. W...
The demand for biomimetic and biocompatible scaffolds in equivalence of structure and material compo...
This paper investigates the use of polymer-ceramic composite scaffolds for bone regeneration. Differ...
The design of bioactive scaffolds with improved mechanical and biological properties is an important...
This paper investigates the use of polymer-ceramic composite scaffolds for bone regeneration. Differ...
The design of the bone scaffolds changes and develops with the developing technology and production ...
The rationale for the use of polymer-ceramic composites for bone regeneration stems from the natural...
This research investigates the accelerated hydrolytic degradation process of both anatomically desig...
Bone is the second most commonly transplanted tissue worldwide, with over four million operations us...
Preventive and regenerative techniques have been suggested to minimize the aesthetic and functional ...
Large bone loss injuries require high-performance scaffolds with an architecture and material compos...
Three-dimensional (3D) printing application is a promising method for bone tissue engineering. For e...
Bone is a vascularized and connective tissue. The cortical bone is the main part responsible for the...
In recent years, the number of people needing bone replacements for the treatment of defects caused ...
International audienceApplications in additive manufacturing technologies for bone tissue engineerin...
There is a significant unmet clinical need to prevent amputations due to large bone loss injuries. W...
The demand for biomimetic and biocompatible scaffolds in equivalence of structure and material compo...
This paper investigates the use of polymer-ceramic composite scaffolds for bone regeneration. Differ...
The design of bioactive scaffolds with improved mechanical and biological properties is an important...
This paper investigates the use of polymer-ceramic composite scaffolds for bone regeneration. Differ...
The design of the bone scaffolds changes and develops with the developing technology and production ...
The rationale for the use of polymer-ceramic composites for bone regeneration stems from the natural...
This research investigates the accelerated hydrolytic degradation process of both anatomically desig...
Bone is the second most commonly transplanted tissue worldwide, with over four million operations us...
Preventive and regenerative techniques have been suggested to minimize the aesthetic and functional ...
Large bone loss injuries require high-performance scaffolds with an architecture and material compos...
Three-dimensional (3D) printing application is a promising method for bone tissue engineering. For e...
Bone is a vascularized and connective tissue. The cortical bone is the main part responsible for the...
In recent years, the number of people needing bone replacements for the treatment of defects caused ...
International audienceApplications in additive manufacturing technologies for bone tissue engineerin...