[Excerpt] Scaffolds developed for bone tissue engineering (TE) must possess specific structural properties to allow neo-tissue formation and integration within the material[1]. Several polymeric systems and processing methodologies have been proposed to develop bone TE scaffolds. Nevertheless, the so far proposed strategies do not fulfil all the requirements for effective bone regeneration. Textile technologies have recently emerged as an industrial route for producing more complex fibre-based porous scaffolds[2]. Silk fibroin (SF) from Bombyx mori has already proved to be a good biomaterial for bone TE[3]. SF-based structures are known for the impressive mechanical properties and biocompatibility, which meet the basic requirements for deve...
[Excerpt] The success of bone tissue engineering (TE) strategies is strongly dependent on the develo...
[Excerpt] Tissue engineering (TE) has emerged in the last decade of the 20th century as an alternati...
The pore architecture of scaffolds is known to play a critical role in tissue engineering as it prov...
Increasing efforts have been made in tissue engineering (TE) research for novel biomaterials and sca...
[Excerpt] Fibrous structures mimicking the natural extracellular matrix (ECM) morphology are conside...
Skeletal tissue has a good ability to self-regenerate after injury through the processes of bone hea...
Bone loss in the craniofacial complex can been treated using several conventional therapeutic strate...
Silk fibroin is a potent alternative to other biodegradable biopolymers for bone tissue engineering ...
Silk fibroin is an important polymer for scaffold designs, forming biocompatible and mechanically ro...
Bone tissue engineering is a rapidly developing area. Engineering bone typically uses an artificial ...
Tissue engineering is an attractive strategy for tendon/ligament-to-bone interface repair. The struc...
Natural bone consists of cortical and trabecular morphologies, the latter having variable pore sizes...
There has been unprecedented development in tissue engineering (TE) over the last few years owing to...
[Excerpt] Tissue engineering scaffolds must provide cell anchorage sites, mechanical stability and ...
The book proposes extensive and varied design strategies for bone tissue engineering. The design pro...
[Excerpt] The success of bone tissue engineering (TE) strategies is strongly dependent on the develo...
[Excerpt] Tissue engineering (TE) has emerged in the last decade of the 20th century as an alternati...
The pore architecture of scaffolds is known to play a critical role in tissue engineering as it prov...
Increasing efforts have been made in tissue engineering (TE) research for novel biomaterials and sca...
[Excerpt] Fibrous structures mimicking the natural extracellular matrix (ECM) morphology are conside...
Skeletal tissue has a good ability to self-regenerate after injury through the processes of bone hea...
Bone loss in the craniofacial complex can been treated using several conventional therapeutic strate...
Silk fibroin is a potent alternative to other biodegradable biopolymers for bone tissue engineering ...
Silk fibroin is an important polymer for scaffold designs, forming biocompatible and mechanically ro...
Bone tissue engineering is a rapidly developing area. Engineering bone typically uses an artificial ...
Tissue engineering is an attractive strategy for tendon/ligament-to-bone interface repair. The struc...
Natural bone consists of cortical and trabecular morphologies, the latter having variable pore sizes...
There has been unprecedented development in tissue engineering (TE) over the last few years owing to...
[Excerpt] Tissue engineering scaffolds must provide cell anchorage sites, mechanical stability and ...
The book proposes extensive and varied design strategies for bone tissue engineering. The design pro...
[Excerpt] The success of bone tissue engineering (TE) strategies is strongly dependent on the develo...
[Excerpt] Tissue engineering (TE) has emerged in the last decade of the 20th century as an alternati...
The pore architecture of scaffolds is known to play a critical role in tissue engineering as it prov...