This work proposes biodegradable textile-based structures for tissue engineering applications. We describe the use of two polymers, polybutylene succinate (PBS) proposed as a viable multifilamentand silk fibroin (SF), to produce fibre-based finely tuned porous architectures by weft knitting. PBS is here proposed as a viable extruded multifilament fibre to be processed by a textile-based technology. A comparative study was undertaken using a SF fibre with a similar linear density. The knitted constructs obtained are described in terms of their morphology, mechanical properties, swelling capability, degradation behaviour and cytotoxicity. The weft knitting technology used offers superior control over the scaffold design (e.g. size, shape, por...
To engineer functional tissue substitutes, it is required a multi-component, multi-scale approach th...
International audienceIn the field of tissue engineering, many groups have come to rely on the extra...
International audienceIn the field of tissue engineering, many groups have come to rely on the extra...
Textile-based technologies are considered as potential routes for the production of 3D porous archit...
Textile-based technologies are powerful routes for the production of three-dimensional porous archit...
This work proposes biodegradable textile-based structures for tissue engineering applications. We de...
Bone tissue engineering represents a specialised niche within the biomedical field to which textile ...
Textile-based technologies are powerful routes for the production of three-dimensional porous archit...
Nowadays, tissue engineering is described as an interdisciplinary field that combines engineering pr...
Biotextile structures from silk fibroin have demonstrated to be particularly interesting for tissue ...
Tissue engineering offers a promising new approach to create biological alternatives to repair or re...
none7siTo engineer functional tissue substitutes, it is required a multi-component, multi-scale appr...
To engineer functional tissue substitutes, it is required a multi-component, multi-scale approach th...
International audienceIn the field of tissue engineering, many groups have come to rely on the extra...
Three-dimensional bioabsorbable textiles represent a novel technology for the manufacturing of tissu...
To engineer functional tissue substitutes, it is required a multi-component, multi-scale approach th...
International audienceIn the field of tissue engineering, many groups have come to rely on the extra...
International audienceIn the field of tissue engineering, many groups have come to rely on the extra...
Textile-based technologies are considered as potential routes for the production of 3D porous archit...
Textile-based technologies are powerful routes for the production of three-dimensional porous archit...
This work proposes biodegradable textile-based structures for tissue engineering applications. We de...
Bone tissue engineering represents a specialised niche within the biomedical field to which textile ...
Textile-based technologies are powerful routes for the production of three-dimensional porous archit...
Nowadays, tissue engineering is described as an interdisciplinary field that combines engineering pr...
Biotextile structures from silk fibroin have demonstrated to be particularly interesting for tissue ...
Tissue engineering offers a promising new approach to create biological alternatives to repair or re...
none7siTo engineer functional tissue substitutes, it is required a multi-component, multi-scale appr...
To engineer functional tissue substitutes, it is required a multi-component, multi-scale approach th...
International audienceIn the field of tissue engineering, many groups have come to rely on the extra...
Three-dimensional bioabsorbable textiles represent a novel technology for the manufacturing of tissu...
To engineer functional tissue substitutes, it is required a multi-component, multi-scale approach th...
International audienceIn the field of tissue engineering, many groups have come to rely on the extra...
International audienceIn the field of tissue engineering, many groups have come to rely on the extra...