Synthetic polymer biomaterials incorporating cells are a promising technique for treatment of orthopedic injuries. To enhance the integration of biomaterials into the human body, additional functionalization of the scaffold surface should be carried out that would assist one in mimicking the natural cellular environment. In this study, we examined poly-epsilon-caprolactone (PCL) fiber matrices in view of optimizing the porous properties of the constructs. Altering the porosity of a PCL scaffold is expected to improve the material's biocompatibility, thus influencing its osteoconductivity and osteointegration. We produced 3D poly-epsilon-caprolactone (PCL) matrices by a fused deposition modeling method for bone and cartilage tissue engineeri...
Lasers are an efficient technology which can be applied for the surface treatment of polymeric bioma...
Selective laser sintering (SLS) has the potential to fabricate bioresorbable polymer / ceramic compo...
The development of scaffolds with strictly specific properties is a key aspect of functional tissue ...
Synthetic polymer biomaterials incorporating cells are a promising technique for treatment of orthop...
The use of laser processing for the creation of diverse morphological patterns onto the surface of p...
A manufacturing process for sheet-based stacked scaffolds (SSCs) based on laser-cutting (LC) was dev...
The use of laser processing for the creation of diverse morphological patterns onto the surface of p...
In the present study a structural characterization and in vitro cell-biological evaluation was perfo...
Yan Xia,1,* Panyu Zhou,1,* Xiaosong Cheng,1,* Yang Xie,1,* Chong Liang,2 Chao Li,1 Shuogui Xu1,2 1De...
Biotechnology has the potential to improve people's quality of life and holds the key to-many unmet ...
The present experimental study aims to extend know-how on resorbable polycaprolactone/hydroxyapatite...
This study reports on the evaluation of laser processed natural polymer-chitosan, which is under con...
Poly-ε-caprolactone (PCL) is a promising synthetic material in bone tissue engineering (BTE). Partic...
This project is to investigate surface modifications of Polycaprolactone (PCL) scaffold to improve t...
Three-dimensional porous polycaprolactone (PCL) scaffolds with consistent inter-pore channels, 83% p...
Lasers are an efficient technology which can be applied for the surface treatment of polymeric bioma...
Selective laser sintering (SLS) has the potential to fabricate bioresorbable polymer / ceramic compo...
The development of scaffolds with strictly specific properties is a key aspect of functional tissue ...
Synthetic polymer biomaterials incorporating cells are a promising technique for treatment of orthop...
The use of laser processing for the creation of diverse morphological patterns onto the surface of p...
A manufacturing process for sheet-based stacked scaffolds (SSCs) based on laser-cutting (LC) was dev...
The use of laser processing for the creation of diverse morphological patterns onto the surface of p...
In the present study a structural characterization and in vitro cell-biological evaluation was perfo...
Yan Xia,1,* Panyu Zhou,1,* Xiaosong Cheng,1,* Yang Xie,1,* Chong Liang,2 Chao Li,1 Shuogui Xu1,2 1De...
Biotechnology has the potential to improve people's quality of life and holds the key to-many unmet ...
The present experimental study aims to extend know-how on resorbable polycaprolactone/hydroxyapatite...
This study reports on the evaluation of laser processed natural polymer-chitosan, which is under con...
Poly-ε-caprolactone (PCL) is a promising synthetic material in bone tissue engineering (BTE). Partic...
This project is to investigate surface modifications of Polycaprolactone (PCL) scaffold to improve t...
Three-dimensional porous polycaprolactone (PCL) scaffolds with consistent inter-pore channels, 83% p...
Lasers are an efficient technology which can be applied for the surface treatment of polymeric bioma...
Selective laser sintering (SLS) has the potential to fabricate bioresorbable polymer / ceramic compo...
The development of scaffolds with strictly specific properties is a key aspect of functional tissue ...