Sol-gel derived bioactive glasses (70 mol% SiO2 and 30 mol% CaO) have high potential as materials for bone regeneration and devices for sustained drug delivery. They bond to bone and have a controllable degradation rate. They have a unique tailorable nanoporosity, which enhances their surface area and exposes hydroxyl groups and affects protein adsorption and cellular response. This study aims to fully characterise the evolution of the nanoporous structure of sol-gel derived bioactive glass for the first time, to fully understand its nanostructure evolution and control, so that materials with specific nanoporous networks can be produced to further enhance effects on tissue regeneration. It was confirmed that nanopores of sol-gel derived bio...
Bone is the second most widely transplanted tissue after blood. Synthetic alternatives are needed th...
Bioactive glass nanoparticles (BG-NPs), based on both ternary (SiO(2)-CaO-P(2)O(5)) and binary (SiO(...
International audienceBioactive glasses are known to quickly induce the formation of a calcium phosp...
Sol-gel derived bioactive glasses with the 70S30C composition (70 mol% SiO2 and 30 mol% CaO) have hi...
Sol-gel derived bioactive glasses are one of the most promising materials for bone regeneration. The...
Sol–gel derived bioactive glasses are one of the most promising materials for bone regeneration. The...
We have used neutron diffraction with isotopic substitution to gain new insights into the nature of ...
Sol-gel derived bioactive glasses are thought to have high potential as materials for bone regenerat...
Sol–gel derived bioactive glasses are thought to have high potential as materials for bone regenerat...
International audienceSol-gel derived bioactive glass nanoparticles (BGNs) are fascinating materials...
International audienceSol-gel derived bioactive glass nanoparticles (BGNs) are fascinating materials...
Bioactive glasses can heal bone defects and bond with bone through formation of hydroxyl carbonate a...
International audienceThis research is based on the study of bioactivity kinetic in function of the ...
International audienceThis research is based on the study of bioactivity kinetic in function of the ...
This study investigated the impact of different calcium reagents on the morphology, composition, bio...
Bone is the second most widely transplanted tissue after blood. Synthetic alternatives are needed th...
Bioactive glass nanoparticles (BG-NPs), based on both ternary (SiO(2)-CaO-P(2)O(5)) and binary (SiO(...
International audienceBioactive glasses are known to quickly induce the formation of a calcium phosp...
Sol-gel derived bioactive glasses with the 70S30C composition (70 mol% SiO2 and 30 mol% CaO) have hi...
Sol-gel derived bioactive glasses are one of the most promising materials for bone regeneration. The...
Sol–gel derived bioactive glasses are one of the most promising materials for bone regeneration. The...
We have used neutron diffraction with isotopic substitution to gain new insights into the nature of ...
Sol-gel derived bioactive glasses are thought to have high potential as materials for bone regenerat...
Sol–gel derived bioactive glasses are thought to have high potential as materials for bone regenerat...
International audienceSol-gel derived bioactive glass nanoparticles (BGNs) are fascinating materials...
International audienceSol-gel derived bioactive glass nanoparticles (BGNs) are fascinating materials...
Bioactive glasses can heal bone defects and bond with bone through formation of hydroxyl carbonate a...
International audienceThis research is based on the study of bioactivity kinetic in function of the ...
International audienceThis research is based on the study of bioactivity kinetic in function of the ...
This study investigated the impact of different calcium reagents on the morphology, composition, bio...
Bone is the second most widely transplanted tissue after blood. Synthetic alternatives are needed th...
Bioactive glass nanoparticles (BG-NPs), based on both ternary (SiO(2)-CaO-P(2)O(5)) and binary (SiO(...
International audienceBioactive glasses are known to quickly induce the formation of a calcium phosp...