None of the replacements proposed in the literature for small-calibre blood vessels (SCBV) fully satisfies the stringent requirements that these grafts have to fulfil. Here, an electrospun silk fibroin tubular construct is hybridized with type I collagen gel to produce a biomimetic SCBV graft with physiologically relevant compliance and burst pressure and optimal cytocompatibility. The hybridization of the two polymers results in the formation of a nanofibrillar hydrated matrix, where the collagen gel enhances the mechanical properties of the SF tubular construct and improves the early response of the material to in vitro cell adhesion and proliferation
The process of electrospinning has seen a resurgence of interest in the last few decades which has l...
© 2018 Taylor & Francis A novel biomimetic vascular graft scaffolds were produced by electrospinni...
A microstructured composite material made of collagen hydrogel (matrix) and silk fibroin microfibers...
None of the replacements proposed in the literature for small-calibre blood vessels (SCBV) fully sat...
In this work an innovative method to obtain natural and biocompatible small diameter tubular structu...
Processing silk fibroin (SF) by electrospinning offers a very attractive opportunity for producing t...
The success of a small-caliber artificial vascular graft in the host in order to obtain functional t...
Abstract One of the main challenges of tissue-engineered vascular prostheses is restenosis due to in...
Silk fibroin (SF) is an eligible biomaterial for the development of small caliber vascular grafts fo...
AbstractA novel type of composite vascular graft was developed via electrospinning in the present in...
Small-diameter blood vessels (SDBVs) are still a challenging task to prepare due to the occurrence o...
A hybrid material with excellent mechanical and biological properties is produced by electrospinning...
The objective of this study is to design a novel kind of scaffolds for blood vessel and nerve repair...
Tissue-engineered vascular scaffolds provide a promising solution for the replacement of diseased va...
Despite the tremendous advances in the past few decades, the clinical problems associated with low m...
The process of electrospinning has seen a resurgence of interest in the last few decades which has l...
© 2018 Taylor & Francis A novel biomimetic vascular graft scaffolds were produced by electrospinni...
A microstructured composite material made of collagen hydrogel (matrix) and silk fibroin microfibers...
None of the replacements proposed in the literature for small-calibre blood vessels (SCBV) fully sat...
In this work an innovative method to obtain natural and biocompatible small diameter tubular structu...
Processing silk fibroin (SF) by electrospinning offers a very attractive opportunity for producing t...
The success of a small-caliber artificial vascular graft in the host in order to obtain functional t...
Abstract One of the main challenges of tissue-engineered vascular prostheses is restenosis due to in...
Silk fibroin (SF) is an eligible biomaterial for the development of small caliber vascular grafts fo...
AbstractA novel type of composite vascular graft was developed via electrospinning in the present in...
Small-diameter blood vessels (SDBVs) are still a challenging task to prepare due to the occurrence o...
A hybrid material with excellent mechanical and biological properties is produced by electrospinning...
The objective of this study is to design a novel kind of scaffolds for blood vessel and nerve repair...
Tissue-engineered vascular scaffolds provide a promising solution for the replacement of diseased va...
Despite the tremendous advances in the past few decades, the clinical problems associated with low m...
The process of electrospinning has seen a resurgence of interest in the last few decades which has l...
© 2018 Taylor & Francis A novel biomimetic vascular graft scaffolds were produced by electrospinni...
A microstructured composite material made of collagen hydrogel (matrix) and silk fibroin microfibers...