Fabrication of polycaprolactone (PCL)-chitosan (CS) three-dimensional (3D) scaffolds using the novel technique of melt stretching and multilayer deposition was introduced. In brief, firstly, the PCL-CS monofilaments containing 0% (pure PCL), 10%, 20% and 30% CS by weight were fabricated by melting and stretching processes. Secondly, the desired multilayer (3D) scaffolds were fabricated by arranging and depositing the filaments. Physical properties of the filaments and the scaffolds were evaluated. MC3T3-E1 cell lines were seeded on the scaffolds to assess their proliferation. A typical micro-groove pattern was found on the surfaces of pure PCL filaments due to stretching. The filaments of PCL-30%CS had the highest tendency of fracture durin...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
The objective of this study is to manufacture chitosan-based biocomposite 3-D scaffolds through add...
Chitosan (CHT)/poly(ɛ-caprolactone) (PCL) blend 3D fiber-mesh scaffolds were studied as possible sup...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
The scaffold material and architecture of the scaffold can affect cell seeding and tissue growth bot...
Objective(s): Fabrication of scaffolds with improved mechanical properties and favorable cellular co...
Three dimensional (3D) biodegradable porous scaffolds play a crucial role in bone tissue repair. In ...
Tissue engineering is an evolving technique to reduce the limitations of the bone graft. It provides...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
Synthetic polymeric scaffolds are commonly used in bone tissue engineering (BTE) due to their biocom...
A number of different processing techniques have been developed to design and fabricate three-dimens...
A number of different processing techniques have been developed to design and fabricate three-dimens...
A number of different processing techniques have been developed to design and fabricate three-dimens...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
The objective of this study is to manufacture chitosan-based biocomposite 3-D scaffolds through add...
Chitosan (CHT)/poly(ɛ-caprolactone) (PCL) blend 3D fiber-mesh scaffolds were studied as possible sup...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
The scaffold material and architecture of the scaffold can affect cell seeding and tissue growth bot...
Objective(s): Fabrication of scaffolds with improved mechanical properties and favorable cellular co...
Three dimensional (3D) biodegradable porous scaffolds play a crucial role in bone tissue repair. In ...
Tissue engineering is an evolving technique to reduce the limitations of the bone graft. It provides...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
Synthetic polymeric scaffolds are commonly used in bone tissue engineering (BTE) due to their biocom...
A number of different processing techniques have been developed to design and fabricate three-dimens...
A number of different processing techniques have been developed to design and fabricate three-dimens...
A number of different processing techniques have been developed to design and fabricate three-dimens...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
The objective of this study is to manufacture chitosan-based biocomposite 3-D scaffolds through add...
Chitosan (CHT)/poly(ɛ-caprolactone) (PCL) blend 3D fiber-mesh scaffolds were studied as possible sup...