The aim of this work was the implementation of a simple technique for the production of cylindrical collagen-based scaffolds with axially oriented pore channels. Matrices with this particular porous structure 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. The regenerative potential may be further enhanced when the collagen scaffold is used as a delivery vehicle for exogenous cells and growth factors. The scaffold manufacturing technique described here is based on unidirectional freezing of a collagen suspension and subsequent freeze-drying, which produces nearly axially oriented pores. The mean pore size is de...
Collagen scaffolds provide a promising platform for tissue regeneration due to their ability to supp...
A novel fabrication process has been developed to produce collagen-based, porous tubular scaffolds t...
Tissue engineering to develop alternatives for the maintenance, restoration, or enhancement of injur...
Sponge-like matrices with a specific 3D structural design resembling the actual extracellular matrix...
Introduction Collagen matrices with properly designed porous structure have the potential to impro...
Aligned unidirectional collagen scaffolds may aid regeneration of those tissues where alignment of c...
Type I collagen is used widely as a biomaterial. The structure of collagenous biomaterials, includin...
Despite significant progress in the field of peripheral nerve repair, clinical success is still limi...
INTRODUCTION Peripheral nerve injuries often result in painful neuropathies owing to reduction in m...
The desire for repair of tissue defects and injury is the major need prompting research into tissue ...
Aligned unidirectional collagen scaffolds may aid regeneration of those tissues where alignment of c...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
In each organ the extracellular matrix has a specific architecture and composition, adapted to the f...
This thesis deals with the preparation of artificial guiding structures for supporting regeneration ...
Collagen scaffolds provide a promising platform for tissue regeneration due to their ability to supp...
A novel fabrication process has been developed to produce collagen-based, porous tubular scaffolds t...
Tissue engineering to develop alternatives for the maintenance, restoration, or enhancement of injur...
Sponge-like matrices with a specific 3D structural design resembling the actual extracellular matrix...
Introduction Collagen matrices with properly designed porous structure have the potential to impro...
Aligned unidirectional collagen scaffolds may aid regeneration of those tissues where alignment of c...
Type I collagen is used widely as a biomaterial. The structure of collagenous biomaterials, includin...
Despite significant progress in the field of peripheral nerve repair, clinical success is still limi...
INTRODUCTION Peripheral nerve injuries often result in painful neuropathies owing to reduction in m...
The desire for repair of tissue defects and injury is the major need prompting research into tissue ...
Aligned unidirectional collagen scaffolds may aid regeneration of those tissues where alignment of c...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
In each organ the extracellular matrix has a specific architecture and composition, adapted to the f...
This thesis deals with the preparation of artificial guiding structures for supporting regeneration ...
Collagen scaffolds provide a promising platform for tissue regeneration due to their ability to supp...
A novel fabrication process has been developed to produce collagen-based, porous tubular scaffolds t...
Tissue engineering to develop alternatives for the maintenance, restoration, or enhancement of injur...