The aim of this work was the superficial activation, by means of plasma treatments, of crosslinked collagen-based scaffolds for nerve regeneration, in order to immobilize anionic and cationic microcapsules (MCPs) for drug delivery. Matrices with axially oriented pores have the potential to improve the regeneration of peripheral nerves and spinal cord by physically supporting and guiding the growth of neural structures across the site of injury. To improve mechanical resistance and stability in water solutions, it is necessary to crosslink collagenous fibres by formation of amide bonds with consequent reduction of free amino and carboxylic groups useful for immobilization approach of drug delivery systems like MCPs. Plasma chemical processes...
Plasma polymerization was used to coat a melt electrospun polycaprolactone scaffold to improve cell ...
Promising strategies for neural tissue engineering are based on the use of three-dimensional substra...
The promising trends in biotechnology and tissue engineering are based on the development of advance...
Introduction Collagen matrices with properly designed porous structure have the potential to impro...
In this study, two-component, morphologically composite scaffolds consisting of a 3D-printed compone...
[[abstract]]Surface modification is a conventional approach in biomaterials development, but most of...
The aim of this work was the implementation of a simple technique for the production of cylindrical ...
INTRODUCTION Peripheral nerve injuries often result in painful neuropathies owing to reduction in m...
The ability of DRG-derived neurons to survive and attach onto macroporous polylactide (PLA) foams wa...
Despite tissue engineering advances, current nerve guidance conduits (NGCs) are still failing in rep...
In the tissue engineering field, the surface modification of hydrophobic nanofibers (NFs) to introdu...
Following severe nerve injuries, surgery is required to physically reconnect the injured nerve for r...
This thesis deals with the preparation of artificial guiding structures for supporting regeneration ...
One of the new trends in textile biomaterials research is to deliver active compounds locally in the...
[[abstract]]Nerve conduits are often used in combination with bioactive molecules and stem cells to ...
Plasma polymerization was used to coat a melt electrospun polycaprolactone scaffold to improve cell ...
Promising strategies for neural tissue engineering are based on the use of three-dimensional substra...
The promising trends in biotechnology and tissue engineering are based on the development of advance...
Introduction Collagen matrices with properly designed porous structure have the potential to impro...
In this study, two-component, morphologically composite scaffolds consisting of a 3D-printed compone...
[[abstract]]Surface modification is a conventional approach in biomaterials development, but most of...
The aim of this work was the implementation of a simple technique for the production of cylindrical ...
INTRODUCTION Peripheral nerve injuries often result in painful neuropathies owing to reduction in m...
The ability of DRG-derived neurons to survive and attach onto macroporous polylactide (PLA) foams wa...
Despite tissue engineering advances, current nerve guidance conduits (NGCs) are still failing in rep...
In the tissue engineering field, the surface modification of hydrophobic nanofibers (NFs) to introdu...
Following severe nerve injuries, surgery is required to physically reconnect the injured nerve for r...
This thesis deals with the preparation of artificial guiding structures for supporting regeneration ...
One of the new trends in textile biomaterials research is to deliver active compounds locally in the...
[[abstract]]Nerve conduits are often used in combination with bioactive molecules and stem cells to ...
Plasma polymerization was used to coat a melt electrospun polycaprolactone scaffold to improve cell ...
Promising strategies for neural tissue engineering are based on the use of three-dimensional substra...
The promising trends in biotechnology and tissue engineering are based on the development of advance...