Fabrication of composite scaffolds using stereolithography (SLA) for bone tissue engineering has shown great promises. However, in order to trigger effective bone formation and implant integration, exogenous growth factors are commonly combined to scaffold materials. In this study, we fabricated biodegradable composite scaffolds using SLA and endowed them with osteopromotive properties in the absence of biologics. First we prepared photo-crosslinkable poly(trimethylene carbonate) (PTMC) resins containing 20 and 40 wt% of hydroxyapatite (HA) nanoparticles and fabricated scaffolds with controlled macro-architecture. Then, we conducted experiments to investigate how the incorporation of HA in photo-crosslinked PTMC matrices improved human bone...
This research introduced a new poly-ether-ether-ketone calcium hydroxyapatite (PEEK-cHAp) composite ...
© 2019 Elsevier Inc. Osteochondral defects resulting from trauma and/or pathologic disorders are cri...
Three-dimension (3D) scaffolds for bone tissue regeneration were produced combining three different ...
Designing calcium phosphate-loaded polymeric porous scaffolds with controlled architecture using ste...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
AbstractThis work deals with the additive manufacturing and characterization of hydroxyapatite scaff...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
The osteochondral interface of an arthritic joint is notoriously difficult to regenerate due to its ...
Large bone defects are challenging to repair and novel implantable materials are needed to aid in th...
Implants of bioresorbable materials combined with osteoconductive calcium phosphate ceramics show pr...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
The deficiencies of current bone graft substitutes have been a driving force in developing new and m...
This research introduced a new poly-ether-ether-ketone calcium hydroxyapatite (PEEK-cHAp) composite ...
© 2019 Elsevier Inc. Osteochondral defects resulting from trauma and/or pathologic disorders are cri...
Three-dimension (3D) scaffolds for bone tissue regeneration were produced combining three different ...
Designing calcium phosphate-loaded polymeric porous scaffolds with controlled architecture using ste...
Purpose. The stereolithography process is based on the photopolymerization through a dynamic mask ge...
AbstractThis work deals with the additive manufacturing and characterization of hydroxyapatite scaff...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
The osteochondral interface of an arthritic joint is notoriously difficult to regenerate due to its ...
Large bone defects are challenging to repair and novel implantable materials are needed to aid in th...
Implants of bioresorbable materials combined with osteoconductive calcium phosphate ceramics show pr...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
The deficiencies of current bone graft substitutes have been a driving force in developing new and m...
This research introduced a new poly-ether-ether-ketone calcium hydroxyapatite (PEEK-cHAp) composite ...
© 2019 Elsevier Inc. Osteochondral defects resulting from trauma and/or pathologic disorders are cri...
Three-dimension (3D) scaffolds for bone tissue regeneration were produced combining three different ...