Bone tissue engineering success strongly depends on our ability to develop new materials combining osteoconductive, osteoinductive and osteogenic properties. Recent studies suggest that biomaterials incorporating silanol (SiOH) groups promote and maintain osteogenesis. The purpose of the present research work was to provide evidence that using wet-spinning technologies and a calcium silicate solution as a coagulation bath, it was possible to develop an in situ functionalization methodology to obtain 3D wet-spun fibre meshes with SiOH groups, through a simple, economic and reliable process. SPCL (blend of starch with polycaprolactone) fibre meshes were produced by wet-spinning, using a calcium silicate solution as a non-solvent and functiona...
Bioactive glasses are often designed as porous implantable templates in which newly-formed bone can ...
The development of in vitro 3D models to get insights into the mechanisms of bone regeneration could...
[Excerpt] Scaffolds developed for bone tissue engineering (TE) must possess specific structural prop...
The success of bone tissue engineering (TE) strategies is strongly dependent on the development of n...
Osteogenic differentiation is a tightly regulated process dependent on the stimuli provided by the m...
Silicon is known to have an influence on calcium phosphate deposition and on the differentiation of ...
Osteogenic differentiation is a tightly regulated process dependent on the stimuli provided by the m...
This study proposes a new route for producing fiber mesh scaffolds from a starch-polycaprolactone (S...
[Excerpt] Tissue engineering scaffolds must provide cell anchorage sites, mechanical stability and ...
Current methods for bone tissue engineering are concentrated in the in vitro expansion and osteogen...
In scaffold-based tissue engineering strategies, the successful regeneration of tissues from matrixp...
This study investigates the influence of the porosity of fiber mesh scaffolds obtained from a blend ...
Fibrous structures mimicking the morphology of the natural extracellular matrix are considered promi...
AbstractInorganic sol–gel solutions were electrospun to produce the first bioactive three-dimensiona...
Due to challenges associated with current clinical techniques used to treat bone defects, there has ...
Bioactive glasses are often designed as porous implantable templates in which newly-formed bone can ...
The development of in vitro 3D models to get insights into the mechanisms of bone regeneration could...
[Excerpt] Scaffolds developed for bone tissue engineering (TE) must possess specific structural prop...
The success of bone tissue engineering (TE) strategies is strongly dependent on the development of n...
Osteogenic differentiation is a tightly regulated process dependent on the stimuli provided by the m...
Silicon is known to have an influence on calcium phosphate deposition and on the differentiation of ...
Osteogenic differentiation is a tightly regulated process dependent on the stimuli provided by the m...
This study proposes a new route for producing fiber mesh scaffolds from a starch-polycaprolactone (S...
[Excerpt] Tissue engineering scaffolds must provide cell anchorage sites, mechanical stability and ...
Current methods for bone tissue engineering are concentrated in the in vitro expansion and osteogen...
In scaffold-based tissue engineering strategies, the successful regeneration of tissues from matrixp...
This study investigates the influence of the porosity of fiber mesh scaffolds obtained from a blend ...
Fibrous structures mimicking the morphology of the natural extracellular matrix are considered promi...
AbstractInorganic sol–gel solutions were electrospun to produce the first bioactive three-dimensiona...
Due to challenges associated with current clinical techniques used to treat bone defects, there has ...
Bioactive glasses are often designed as porous implantable templates in which newly-formed bone can ...
The development of in vitro 3D models to get insights into the mechanisms of bone regeneration could...
[Excerpt] Scaffolds developed for bone tissue engineering (TE) must possess specific structural prop...