Zinc-enriched mesoporous bioactive glasses (MBGs) are bioceramics with potential antibacterial and osteogenic properties. However, few assays have been performed to study these properties in animal models.In this study, MBGs enriched with up to 5% ZnO were synthesized, physicochemically characterized, and evaluated for their osteogenic activity both in vitro and in vivo. The ZnO MBGs showed excellent textural properties despite ZnO incorporation. However, the release of Zn2+ ions inhibited the mineralization process when immersed in simulated body fluid. In vitro assays showed significantly highe r values of viability and expression of early markers of celldifferentiation and angiogenesis in a ZnO-content-dependent manner. The next step wa...
The osteogenic capability of mesoporous bioactive nanoparticles (MBNPs) in the SiO2–CaO system has b...
Funding Information: The authors extend their appreciation to the FEDER funds through the COMPETE 20...
Zn2+ ions exhibit osteogenic, angiogenic and antimicrobial properties. For this reason, they are oft...
Mesoporous Bioactive Glasses (MBGs) are a family of bioceramics widely investigated for their putati...
There is an urgent need of biosynthetic bone grafts with enhanced osteogenic capacity. In this study...
Mesoporous Bioactive Glasses (MBGs) are a family of bioceramics widely investigated for their putati...
Phosphate-based glasses have been examined in many studies as a potential biomaterial for bone repai...
Background: Synthetic bone graft substitutes such as bioactive glass (BG) material are developed in ...
During the healing and repair of bone defects, uncontrolled inflammatory responses can compromise bo...
The biomaterials with high osteogenic ability are being intensively investigated. In this study, we ...
A mesoporous bioactive glass (MBG) of molar composition 75SiO2-20CaO-5P2O5 (MBG-75S) has been synthe...
Copyright © 2010 Sun-Ae Oh et al. This is an open access article distributed under the Creative Comm...
International audienceBackground - Synthetic bone graft substitutes such as bioactive glass (BG) mat...
Macroporous scaffolds made of a SiO2-CaO-P2O5 mesoporous bioactive glass (MBG) and ɛpolycaprolactone...
Zn-containing dense monodispersed bioactive glass nanoparticles (Zn-BAGNPs) have been developed to d...
The osteogenic capability of mesoporous bioactive nanoparticles (MBNPs) in the SiO2–CaO system has b...
Funding Information: The authors extend their appreciation to the FEDER funds through the COMPETE 20...
Zn2+ ions exhibit osteogenic, angiogenic and antimicrobial properties. For this reason, they are oft...
Mesoporous Bioactive Glasses (MBGs) are a family of bioceramics widely investigated for their putati...
There is an urgent need of biosynthetic bone grafts with enhanced osteogenic capacity. In this study...
Mesoporous Bioactive Glasses (MBGs) are a family of bioceramics widely investigated for their putati...
Phosphate-based glasses have been examined in many studies as a potential biomaterial for bone repai...
Background: Synthetic bone graft substitutes such as bioactive glass (BG) material are developed in ...
During the healing and repair of bone defects, uncontrolled inflammatory responses can compromise bo...
The biomaterials with high osteogenic ability are being intensively investigated. In this study, we ...
A mesoporous bioactive glass (MBG) of molar composition 75SiO2-20CaO-5P2O5 (MBG-75S) has been synthe...
Copyright © 2010 Sun-Ae Oh et al. This is an open access article distributed under the Creative Comm...
International audienceBackground - Synthetic bone graft substitutes such as bioactive glass (BG) mat...
Macroporous scaffolds made of a SiO2-CaO-P2O5 mesoporous bioactive glass (MBG) and ɛpolycaprolactone...
Zn-containing dense monodispersed bioactive glass nanoparticles (Zn-BAGNPs) have been developed to d...
The osteogenic capability of mesoporous bioactive nanoparticles (MBNPs) in the SiO2–CaO system has b...
Funding Information: The authors extend their appreciation to the FEDER funds through the COMPETE 20...
Zn2+ ions exhibit osteogenic, angiogenic and antimicrobial properties. For this reason, they are oft...