Tissue regeneration necessitates the development of appropriate scaffolds that facilitate cell growth and tissue development by providing a suitable substrate for cell attachment, proliferation, and differentiation. The optimized scaffolds should be biocompatible, biodegradable, and exhibit proper mechanical behavior. In the present study, the nanomechanical behavior of a chitosan-graft-poly(ε-caprolactone) copolymer, in hydrated and dry state, was investigated and compared to those of the individual homopolymers, chitosan (CS) and poly(ε-caprolactone) (PCL). Hardness and elastic modulus values were calculated, and the time-dependent behavior of the samples was studied. Submersion of PCL and the graft copolymer in α-ME...
The scaffold material and architecture of the scaffold can affect cell seeding and tissue growth bot...
Fabrication of polycaprolactone (PCL)-chitosan (CS) three-dimensional (3D) scaffolds using the novel...
This article presents a method for making highly porous biodegradable scaffold that may ultimately b...
Polymers have been extensively used to fabricate scaffolds for tissue regeneration in order to repai...
Objective(s): Fabrication of scaffolds with improved mechanical properties and favorable cellular co...
Considering the load-bearing physiological requirement of articular cartilage, scaffold for cartilag...
In recent years, research on biomaterials has been directed towards the development and optimization...
In recent years, research on biomaterials has been directed towards the development and optimization...
In recent years, research on biomaterials has been directed towards the development and optimization...
In recent years, research on biomaterials has been directed towards the development and optimization...
Tissue engineering is an important therapeutic strategy to be used in regenerative medicine in the p...
Tissue engineering is an evolving technique to reduce the limitations of the bone graft. It provides...
Polyester films are modified with their bioactivity for tissue engineering by grafting a nano-struct...
Chitosan biocompatibility and biodegradability properties make this biopolymer promising for the dev...
36-38Tissue engineering or regenerative medicine is an emerging multidisciplinary field involving bi...
The scaffold material and architecture of the scaffold can affect cell seeding and tissue growth bot...
Fabrication of polycaprolactone (PCL)-chitosan (CS) three-dimensional (3D) scaffolds using the novel...
This article presents a method for making highly porous biodegradable scaffold that may ultimately b...
Polymers have been extensively used to fabricate scaffolds for tissue regeneration in order to repai...
Objective(s): Fabrication of scaffolds with improved mechanical properties and favorable cellular co...
Considering the load-bearing physiological requirement of articular cartilage, scaffold for cartilag...
In recent years, research on biomaterials has been directed towards the development and optimization...
In recent years, research on biomaterials has been directed towards the development and optimization...
In recent years, research on biomaterials has been directed towards the development and optimization...
In recent years, research on biomaterials has been directed towards the development and optimization...
Tissue engineering is an important therapeutic strategy to be used in regenerative medicine in the p...
Tissue engineering is an evolving technique to reduce the limitations of the bone graft. It provides...
Polyester films are modified with their bioactivity for tissue engineering by grafting a nano-struct...
Chitosan biocompatibility and biodegradability properties make this biopolymer promising for the dev...
36-38Tissue engineering or regenerative medicine is an emerging multidisciplinary field involving bi...
The scaffold material and architecture of the scaffold can affect cell seeding and tissue growth bot...
Fabrication of polycaprolactone (PCL)-chitosan (CS) three-dimensional (3D) scaffolds using the novel...
This article presents a method for making highly porous biodegradable scaffold that may ultimately b...