The use of laser processing for the creation of diverse morphological patterns onto the surface of polymer scaffolds represents a method for overcoming bacterial biofilm formation and inducing enhanced cellular dynamics. We have investigated the influence of ultra-short laser parameters on 3D-printed poly-ε-caprolactone (PCL) and poly-ε-caprolactone/hydroxyapatite (PCL/HA) scaffolds with the aim of creating submicron geometrical features to improve the matrix biocompatibility properties. Specifically, the present research was focused on monitoring the effect of the laser fluence (F) and the number of applied pulses (N) on the morphological, chemical and mechanical properties of the scaffolds. SEM analysis revealed that the femtosecond laser...
Polymers exposed to laser or plasma treatment or modified with different wet methods which enable th...
Integration of nanotechnology and advanced manufacturing processes presents an attractive route to p...
The development of scaffolds with strictly specific properties is a key aspect of functional tissue ...
The use of laser processing for the creation of diverse morphological patterns onto the surface of p...
Synthetic polymer biomaterials incorporating cells are a promising technique for treatment of orthop...
The influence of ultra-short laser modification on the surface morphology and possible chemical alte...
Selective laser sintering (SLS) has the potential to fabricate bioresorbable polymer / ceramic compo...
A manufacturing process for sheet-based stacked scaffolds (SSCs) based on laser-cutting (LC) was dev...
This study reports on the evaluation of laser processed natural polymer-chitosan, which is under con...
Polyhydroxyalkanoates (PHAs) have emerged as a promising biodegradable and biocompatible material fo...
In the production of micro devices the surface properties become more and more important for chemist...
We demonstrate high-resolution photocross-linking of biodegradable poly(propylene fumarate) (PPF) an...
Melt blends of chitosan and biodegradable aliphatic polyester have been physically and biologically ...
Tissue engineering is an emerging field on regenerative medicine to try to solve the end-stage of or...
Stereolithography (SLA) has become popular in 3D fabrication of tissue engineering (TE) scaffolds du...
Polymers exposed to laser or plasma treatment or modified with different wet methods which enable th...
Integration of nanotechnology and advanced manufacturing processes presents an attractive route to p...
The development of scaffolds with strictly specific properties is a key aspect of functional tissue ...
The use of laser processing for the creation of diverse morphological patterns onto the surface of p...
Synthetic polymer biomaterials incorporating cells are a promising technique for treatment of orthop...
The influence of ultra-short laser modification on the surface morphology and possible chemical alte...
Selective laser sintering (SLS) has the potential to fabricate bioresorbable polymer / ceramic compo...
A manufacturing process for sheet-based stacked scaffolds (SSCs) based on laser-cutting (LC) was dev...
This study reports on the evaluation of laser processed natural polymer-chitosan, which is under con...
Polyhydroxyalkanoates (PHAs) have emerged as a promising biodegradable and biocompatible material fo...
In the production of micro devices the surface properties become more and more important for chemist...
We demonstrate high-resolution photocross-linking of biodegradable poly(propylene fumarate) (PPF) an...
Melt blends of chitosan and biodegradable aliphatic polyester have been physically and biologically ...
Tissue engineering is an emerging field on regenerative medicine to try to solve the end-stage of or...
Stereolithography (SLA) has become popular in 3D fabrication of tissue engineering (TE) scaffolds du...
Polymers exposed to laser or plasma treatment or modified with different wet methods which enable th...
Integration of nanotechnology and advanced manufacturing processes presents an attractive route to p...
The development of scaffolds with strictly specific properties is a key aspect of functional tissue ...