The release of inorganic ions from biomaterials could provide an alternative approach to the use of growth factors for improving tissue healing. In the present study, the release of copper (Cu) ions from bioactive silicate (13-93) glass scaffolds on the response of cells in vitro and on bone regeneration and angiogenesis in vivo was studied. Scaffolds doped with varying concentrations of Cu (0-2.0 wt.% CuO) were created with a grid-like microstructure by robotic deposition. When immersed in simulated body fluid in vitro, the Cu-doped scaffolds released Cu ions into the medium in a dose-dependent manner and converted partially to hydroxyapatite. The proliferation and alkaline phosphatase activity of pre-osteoblastic MC3T3-E1 cells cultured o...
Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applications becau...
Borate bioactive glasses are biocompatible and enhance new bone formation, but the effect of their m...
<div><p>Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applicatio...
There is growing interest in the use of synthetic biomaterials to deliver inorganic ions that are kn...
Biocompatible synthetic scaffolds with enhanced osteogenic and angiogenic capacity are of great inte...
The main objective of this project was to evaluate the capacity of strong porous silicate (13-93) bi...
The main objective of this project was to evaluate the capacity of strong porous silicate (13-93) bi...
Development of ion-releasing implantable biomaterials is a valuable approach for advanced medical th...
Development of ion-releasing implantable biomaterials is a valuable approach for advanced medical th...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
The local delivery of Cu2+ from copper-doped bioactive glass (Cu-BaG) was combined with 3D printing ...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
The osteogenic and angiogenic responses of organisms to the ionic products of degradation of bioacti...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applications becau...
Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applications becau...
Borate bioactive glasses are biocompatible and enhance new bone formation, but the effect of their m...
<div><p>Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applicatio...
There is growing interest in the use of synthetic biomaterials to deliver inorganic ions that are kn...
Biocompatible synthetic scaffolds with enhanced osteogenic and angiogenic capacity are of great inte...
The main objective of this project was to evaluate the capacity of strong porous silicate (13-93) bi...
The main objective of this project was to evaluate the capacity of strong porous silicate (13-93) bi...
Development of ion-releasing implantable biomaterials is a valuable approach for advanced medical th...
Development of ion-releasing implantable biomaterials is a valuable approach for advanced medical th...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
The local delivery of Cu2+ from copper-doped bioactive glass (Cu-BaG) was combined with 3D printing ...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
The osteogenic and angiogenic responses of organisms to the ionic products of degradation of bioacti...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applications becau...
Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applications becau...
Borate bioactive glasses are biocompatible and enhance new bone formation, but the effect of their m...
<div><p>Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applicatio...