Due to the urgent need to develop and improve biomaterials, the present article proposes a new strategy to obtain porous scaffolds based on forsterite (Mg2SiO4) for bone tissue regeneration. The main objective is to restore and improve bone function, providing a stable environment for regeneration. The usage of magnesium silicate relies on its mechanical properties being superior to hydroxyapatite and, in general, to calcium phosphates, as well as its high biocompatibility, and antibacterial properties. Mg2SiO4 powder was obtained using the sol-gel method, which was calcinated at 800 °C for 2 h; then, part of the powder was further used to make porous ceramics by mixing it with a porogenic agent (e.g., sucrose). The raw ceramic bodies were ...
This is a comprehensive study reporting the fabrication of highly porous Gehlenite scaffold (Ca2Al2S...
It has been demonstrated that nanocrystalline forsterite powder synthesised using urea as a fuel in ...
Mechanically strong magnesium-doped Ca-silicate bioceramic scaffolds have many advantages in repairi...
The present work is on the synthesis of forsterite (Mg2SiO4) powder using talc and magnesium oxide p...
The present work is on the synthesis of forsterite (Mg2SiO4) powder using talc and magnesium oxide p...
Although forsterite (Mg2SiO4) possesses good biocompatibility and suitable mechanical properties, th...
Although forsterite (Mg2SiO4) possesses good biocompatibility and suitable mechanical properties, th...
In the current work, forsterite samples with different surface area were investigated for its antiba...
It has been demonstrated that nanocrystalline forsterite powder synthesised using urea as a fuel in ...
Magnesium is a trace element in the human body, known to have important effects on cell differentiat...
It has been demonstrated that nanocrystalline forsterite powder synthesised using urea as a fuel in ...
Forsterite (Mg2SiO4) is well known to be potential biomedical implants due to its good mechanical pr...
Magnesium is a trace element in the human body, known to have important effects on cell differentiat...
Forsterite (Mg2SiO4) has the potential for biomedical application. There were various synthesis meth...
This is a comprehensive study reporting the fabrication of highly porous Gehlenite scaffold (Ca2Al2S...
This is a comprehensive study reporting the fabrication of highly porous Gehlenite scaffold (Ca2Al2S...
It has been demonstrated that nanocrystalline forsterite powder synthesised using urea as a fuel in ...
Mechanically strong magnesium-doped Ca-silicate bioceramic scaffolds have many advantages in repairi...
The present work is on the synthesis of forsterite (Mg2SiO4) powder using talc and magnesium oxide p...
The present work is on the synthesis of forsterite (Mg2SiO4) powder using talc and magnesium oxide p...
Although forsterite (Mg2SiO4) possesses good biocompatibility and suitable mechanical properties, th...
Although forsterite (Mg2SiO4) possesses good biocompatibility and suitable mechanical properties, th...
In the current work, forsterite samples with different surface area were investigated for its antiba...
It has been demonstrated that nanocrystalline forsterite powder synthesised using urea as a fuel in ...
Magnesium is a trace element in the human body, known to have important effects on cell differentiat...
It has been demonstrated that nanocrystalline forsterite powder synthesised using urea as a fuel in ...
Forsterite (Mg2SiO4) is well known to be potential biomedical implants due to its good mechanical pr...
Magnesium is a trace element in the human body, known to have important effects on cell differentiat...
Forsterite (Mg2SiO4) has the potential for biomedical application. There were various synthesis meth...
This is a comprehensive study reporting the fabrication of highly porous Gehlenite scaffold (Ca2Al2S...
This is a comprehensive study reporting the fabrication of highly porous Gehlenite scaffold (Ca2Al2S...
It has been demonstrated that nanocrystalline forsterite powder synthesised using urea as a fuel in ...
Mechanically strong magnesium-doped Ca-silicate bioceramic scaffolds have many advantages in repairi...