For healing of critically sized bone defects, biocompatible and angiogenesis supporting implants are favorable. Murine osteoblasts showed equal proliferation behavior on the polymers poly-ε-caprolactone (PCL) and poly-(3-hydroxybutyrate)/poly-(4-hydroxybutyrate) (P(3HB)/P(4HB)). As vitality was significantly better for PCL, it was chosen as a suitable coating material for further experiments. Titanium implants with 600 µm pore size were evaluated and found to be a good implant material for bone, as primary osteoblasts showed a vitality and proliferation onto the implants comparable to well bottom (WB). Pure porous titanium implants and PCL coated porous titanium implants were compared using Live Cell Imaging (LCI) with Green fluorescent pro...
Osteointegration of titanium implants could be significantly improved by coatings capable of promoti...
We hypothesized that a composite of 3D porous melt-electrowritten poly-ɛ-caprolactone (PCL) coated t...
Electron beam melting (EBM)-fabricated porous titanium implants possessing low elastic moduli and ta...
For healing of critically sized bone defects, biocompatible and angiogenesis supporting implants are...
Implant constructs supporting angiogenesis are favorable for treating critically-sized bone defects,...
Implant constructs supporting angiogenesis are favorable for treating critically-sized bone defects,...
To improve well-known titanium implants, pores can be used for increasing bone formation and close b...
Metallic biomaterials are widely used in maxillofacial surgery. While titanium is presumed to be the...
To improve well-known titanium implants, pores can be used for increasing bone formation and close b...
Titanium is widely used as a bone implant material due to its biocompatibility and high resilience. ...
Degradable implant material for bone remodeling that corresponds to the physiological stability of b...
Abstract: To improve well-known titanium implants, pores can be used for increasing bone formation a...
Osteointegration of titanium implants could be significantly improved by coatings capable of promoti...
We hypothesized that a composite of 3D porous melt-electrowritten poly-ɛ-caprolactone (PCL) coated t...
Titanium is widely used as a bone implant material due to its biocompatibility and high resilience. ...
Osteointegration of titanium implants could be significantly improved by coatings capable of promoti...
We hypothesized that a composite of 3D porous melt-electrowritten poly-ɛ-caprolactone (PCL) coated t...
Electron beam melting (EBM)-fabricated porous titanium implants possessing low elastic moduli and ta...
For healing of critically sized bone defects, biocompatible and angiogenesis supporting implants are...
Implant constructs supporting angiogenesis are favorable for treating critically-sized bone defects,...
Implant constructs supporting angiogenesis are favorable for treating critically-sized bone defects,...
To improve well-known titanium implants, pores can be used for increasing bone formation and close b...
Metallic biomaterials are widely used in maxillofacial surgery. While titanium is presumed to be the...
To improve well-known titanium implants, pores can be used for increasing bone formation and close b...
Titanium is widely used as a bone implant material due to its biocompatibility and high resilience. ...
Degradable implant material for bone remodeling that corresponds to the physiological stability of b...
Abstract: To improve well-known titanium implants, pores can be used for increasing bone formation a...
Osteointegration of titanium implants could be significantly improved by coatings capable of promoti...
We hypothesized that a composite of 3D porous melt-electrowritten poly-ɛ-caprolactone (PCL) coated t...
Titanium is widely used as a bone implant material due to its biocompatibility and high resilience. ...
Osteointegration of titanium implants could be significantly improved by coatings capable of promoti...
We hypothesized that a composite of 3D porous melt-electrowritten poly-ɛ-caprolactone (PCL) coated t...
Electron beam melting (EBM)-fabricated porous titanium implants possessing low elastic moduli and ta...