The mineral in human bone is not pure stoichiometric calcium phosphate (Ca/P) as it is partially substituted by in organic elements. In this study, the copper ions (Cu2+) substituted hydroxyapatite (CuHA) powder has been synthesized by the co-precipitation method. The CuHA powder has been used to fabricate CuHA fiber scaffolds by sol-gel process and the following sinter process. The resulted CuHA fibers have slightly different microstructure (i.e. porosity) compared to HA fiber scaffold, which is denser. The mechanical properties test was used to evaluate CuHA, and the results showed decreases in both compression strength and hardness tests. Moreover, the in vitro used endothelial cells to evaluate the angiogenesis of CuHA. The result illus...
International audienceThe inclusion of small amounts of copper is often reported to enhance the mech...
In the first part of this study hydroxyapatite was prepared synthetically through classical wet prec...
Inducing the formation of new blood vessels (angiogenesis) is an essential requirement for successfu...
The surface microstructures of calcium phosphate ceramics play an essential role in determining bone...
Angiogenesis in a tissue-engineered device may be induced by incorporating growth factors (e. g., va...
Addition of copper in biomaterials is currently investigated because it is expected to enhance the b...
The local delivery of Cu2+ from copper-doped bioactive glass (Cu-BaG) was combined with 3D printing ...
Biocompatible synthetic scaffolds with enhanced osteogenic and angiogenic capacity are of great inte...
The inclusion of small amounts of copper is often reported to enhance the mechanical and biointegrat...
The release of inorganic ions from biomaterials could provide an alternative approach to the use of ...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
Antimicrobial materials based on hydroxyapatite are potentially attractive in a wide variety of medi...
Numerous studies have demonstrated that biological compounds and trace elements such as dopamine (DA...
There is growing interest in the use of synthetic biomaterials to deliver inorganic ions that are kn...
Fabrication of hydroxyapatite (HA) via doping with metal ions to enhance its antibacterial propertie...
International audienceThe inclusion of small amounts of copper is often reported to enhance the mech...
In the first part of this study hydroxyapatite was prepared synthetically through classical wet prec...
Inducing the formation of new blood vessels (angiogenesis) is an essential requirement for successfu...
The surface microstructures of calcium phosphate ceramics play an essential role in determining bone...
Angiogenesis in a tissue-engineered device may be induced by incorporating growth factors (e. g., va...
Addition of copper in biomaterials is currently investigated because it is expected to enhance the b...
The local delivery of Cu2+ from copper-doped bioactive glass (Cu-BaG) was combined with 3D printing ...
Biocompatible synthetic scaffolds with enhanced osteogenic and angiogenic capacity are of great inte...
The inclusion of small amounts of copper is often reported to enhance the mechanical and biointegrat...
The release of inorganic ions from biomaterials could provide an alternative approach to the use of ...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
Antimicrobial materials based on hydroxyapatite are potentially attractive in a wide variety of medi...
Numerous studies have demonstrated that biological compounds and trace elements such as dopamine (DA...
There is growing interest in the use of synthetic biomaterials to deliver inorganic ions that are kn...
Fabrication of hydroxyapatite (HA) via doping with metal ions to enhance its antibacterial propertie...
International audienceThe inclusion of small amounts of copper is often reported to enhance the mech...
In the first part of this study hydroxyapatite was prepared synthetically through classical wet prec...
Inducing the formation of new blood vessels (angiogenesis) is an essential requirement for successfu...