In this work an innovative method to obtain natural and biocompatible small diameter tubular structures is proposed. The biocompatibility and good mechanical properties of electrospun silk fibroin tubular matrices (SFts), extensively studied for tissue engineering applications, have been coupled with the excellent cell interaction properties of gelatin. In fact, an innovative non-cytotoxic gelatin gel, crosslinked in mild conditions via a Michael-type addition reaction, has been used to coat SFt matrices and obtain SFt/gel structures (I.D. = 6 mm). SFts/gel exhibited homogeneous gelatin coating on the electrospun fibrous tubular structure. Circumferential tensile tests performed on SFts/gel showed mechanical properties comparable to those o...
Electrospinning (ES) silk fibroin (SF) offers attractive opportunities for producing matrixes (ES–SF...
Silk fibroin (SF) films were modified with gelatin (G) to explore if such SF/G films could enhance t...
Electrospun PET (ePET) is a promising material for small caliber vascular graft applications owing t...
In this work an innovative method to obtain natural and biocompatible small diameter tubular structu...
None of the replacements proposed in the literature for small-calibre blood vessels (SCBV) fully sat...
Processing silk fibroin (SF) by electrospinning offers a very attractive opportunity for producing t...
It is increasingly recognised that biomimetic, natural polymers mimicking the extracellular matrix (...
In this study new electrospun silk fibroin (SF) based scaffolds were developed and their material an...
Novel polymeric micro-nanostructure meshes as blood vessels substitute have been developed and inves...
Silk fibroin (SF) is an eligible biomaterial for the development of small caliber vascular grafts fo...
Bioengineering approaches have been intensively applied to create small diameter vascular grafts usi...
Hydrogels are widely used tools for tissue engineering and regenerative medicine. Characterized as b...
Size and function of bioartificial tissue models are still limited due to the lack of blood vessels ...
The success of a small-caliber artificial vascular graft in the host in order to obtain functional t...
Electrospinning (ES) silk fibroin (SF) offers attractive opportunities for producing matrixes (ES–SF...
Silk fibroin (SF) films were modified with gelatin (G) to explore if such SF/G films could enhance t...
Electrospun PET (ePET) is a promising material for small caliber vascular graft applications owing t...
In this work an innovative method to obtain natural and biocompatible small diameter tubular structu...
None of the replacements proposed in the literature for small-calibre blood vessels (SCBV) fully sat...
Processing silk fibroin (SF) by electrospinning offers a very attractive opportunity for producing t...
It is increasingly recognised that biomimetic, natural polymers mimicking the extracellular matrix (...
In this study new electrospun silk fibroin (SF) based scaffolds were developed and their material an...
Novel polymeric micro-nanostructure meshes as blood vessels substitute have been developed and inves...
Silk fibroin (SF) is an eligible biomaterial for the development of small caliber vascular grafts fo...
Bioengineering approaches have been intensively applied to create small diameter vascular grafts usi...
Hydrogels are widely used tools for tissue engineering and regenerative medicine. Characterized as b...
Size and function of bioartificial tissue models are still limited due to the lack of blood vessels ...
The success of a small-caliber artificial vascular graft in the host in order to obtain functional t...
Electrospinning (ES) silk fibroin (SF) offers attractive opportunities for producing matrixes (ES–SF...
Silk fibroin (SF) films were modified with gelatin (G) to explore if such SF/G films could enhance t...
Electrospun PET (ePET) is a promising material for small caliber vascular graft applications owing t...