A new protocol, based on a modified replication method, is proposed to obtain bioactive glass scaffolds. The main feature of these samples, named ‘‘shell scaffolds’’, is their external surface that, like a compact and porous shell, provides both high permeability to fluids and mechanical support. In this work, two different scaffolds were prepared using the following slurry components: 59 % water, 29 % 45S5 BioglassÒ and 12 % polyvinylic binder and 51 % water, 34 % 45S5 BioglassÒ, 10 % polyvinylic binder and 5 % polyethylene. All the proposed samples were charac- terized by a widespread microporosity and an intercon- nected macroporosity, with a total porosity of 80 % vol. After immersion in a simulated body fluid (SBF), the scaffolds showed s...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
International audienceLittle is known about the ideal morphology for three-dimensional (3D) porous s...
There is a need to develop synthetic scaffolds for repairing large defects in load-bearing bones. Ou...
A new protocol, based on a modi\ufb01ed replication method, is proposed to obtain bioactive glass sc...
A polymer foam replication technique was used to prepare porous scaffolds of 13-93 bioactive glass w...
This paper describes our recent work on the processing and evaluation of porous bioactive glass scaf...
Bioactive-glass-derived scaffolds are crucial in bone tissue engineering since they act as temporary...
Glass–ceramic macroporous scaffolds for tissue engineering have been developed using a polyurethane ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
Biocompatible scaffolds that replicate the structure and function of bone would be ideal bone substi...
A key issue for bone tissue engineering is the design of bioceramic scaffolds combining high porosit...
The design of bioceramic scaffolds, i.e. artificial structures employed as temporary templates for c...
Tissue engineering utilizes artificial porous structures, scaffolds, to temporarily replace parts of...
Since it was introduced at the end of the ‘60s, the 45S5 Bioglass1 has played a fundamental role amo...
The aim of this thesis is to develop a method to produce melt-derived bioactive glass scaffolds, wit...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
International audienceLittle is known about the ideal morphology for three-dimensional (3D) porous s...
There is a need to develop synthetic scaffolds for repairing large defects in load-bearing bones. Ou...
A new protocol, based on a modi\ufb01ed replication method, is proposed to obtain bioactive glass sc...
A polymer foam replication technique was used to prepare porous scaffolds of 13-93 bioactive glass w...
This paper describes our recent work on the processing and evaluation of porous bioactive glass scaf...
Bioactive-glass-derived scaffolds are crucial in bone tissue engineering since they act as temporary...
Glass–ceramic macroporous scaffolds for tissue engineering have been developed using a polyurethane ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
Biocompatible scaffolds that replicate the structure and function of bone would be ideal bone substi...
A key issue for bone tissue engineering is the design of bioceramic scaffolds combining high porosit...
The design of bioceramic scaffolds, i.e. artificial structures employed as temporary templates for c...
Tissue engineering utilizes artificial porous structures, scaffolds, to temporarily replace parts of...
Since it was introduced at the end of the ‘60s, the 45S5 Bioglass1 has played a fundamental role amo...
The aim of this thesis is to develop a method to produce melt-derived bioactive glass scaffolds, wit...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
International audienceLittle is known about the ideal morphology for three-dimensional (3D) porous s...
There is a need to develop synthetic scaffolds for repairing large defects in load-bearing bones. Ou...