YesBiosynthetic materials have emerged as one of the most exciting and productive fields in polymer chemistry due to their widespread adoption and potential applications in tissue engineering (TE) research. In this work, we report the synthesis of a poly(ε-caprolactone)-graft-collagen (PCL-g-Coll) copolymer. We combine its good mechanical and biodegradable PCL properties with the great biological properties of type I collagen as a functional material for TE. PCL, previously dissolved in dimethylformamide/dichloromethane mixture, and reacted with collagen using carbodiimide coupling chemistry. The synthesised material was characterised physically, chemically and biologically, using pure PCL and PCL/Coll blend samples as control. Infrared spe...
The expanding interest in electrospinning fibers for bioengineering includes a significant use of po...
This PhD Thesis is focused on the development of fibrous polymeric scaffolds for tissue engineering ...
Collagen, thanks to its biocompatibility, biodegradability and weak antigenicity, is widely used in ...
Biosynthetic materials have emerged as one of the most exciting and productive fields in polymer che...
AbstractThe need for human tissues is fundament in certain genetic diseases or accidents of everyday...
Current tissue-engineering approaches require improved biomaterials to balance microstructural and m...
The restoration of normal functioning of damaged body tissues is one of the major objectives of tiss...
The preparation and characterisation of collagen:PCL composites for manufacture of tissue engineered...
The preparation and characterisation of collagen: PCL, gelatin: PCL and gelatin/collagen:PCL biocomp...
Use of electrospun fiber mats for tissue engineering applications has become increasingly prominent....
The creation of skeletal muscle tissue in vitro is a major topic of interest today in the field of ...
Polymers have been extensively used to fabricate scaffolds for tissue regeneration in order to repai...
Biocomposite films comprising a non-crosslinked, natural polymer (collagen) and a synthetic polymer,...
Blends of natural and synthetic polymers have recently attracted great attention as scaffolds for ti...
In this work, tunable nonwoven mats based on poly(3-hydroxybutyrate) (PHB) and type I collagen (Coll...
The expanding interest in electrospinning fibers for bioengineering includes a significant use of po...
This PhD Thesis is focused on the development of fibrous polymeric scaffolds for tissue engineering ...
Collagen, thanks to its biocompatibility, biodegradability and weak antigenicity, is widely used in ...
Biosynthetic materials have emerged as one of the most exciting and productive fields in polymer che...
AbstractThe need for human tissues is fundament in certain genetic diseases or accidents of everyday...
Current tissue-engineering approaches require improved biomaterials to balance microstructural and m...
The restoration of normal functioning of damaged body tissues is one of the major objectives of tiss...
The preparation and characterisation of collagen:PCL composites for manufacture of tissue engineered...
The preparation and characterisation of collagen: PCL, gelatin: PCL and gelatin/collagen:PCL biocomp...
Use of electrospun fiber mats for tissue engineering applications has become increasingly prominent....
The creation of skeletal muscle tissue in vitro is a major topic of interest today in the field of ...
Polymers have been extensively used to fabricate scaffolds for tissue regeneration in order to repai...
Biocomposite films comprising a non-crosslinked, natural polymer (collagen) and a synthetic polymer,...
Blends of natural and synthetic polymers have recently attracted great attention as scaffolds for ti...
In this work, tunable nonwoven mats based on poly(3-hydroxybutyrate) (PHB) and type I collagen (Coll...
The expanding interest in electrospinning fibers for bioengineering includes a significant use of po...
This PhD Thesis is focused on the development of fibrous polymeric scaffolds for tissue engineering ...
Collagen, thanks to its biocompatibility, biodegradability and weak antigenicity, is widely used in ...