Phosphate-based bioactive glasses (PBGs) dissolve harmlessly in the body with a dissolution rate which depends sensitively on composition. This makes them proposed vectors for e.g. drug delivery, or other applications where an active component needs to be delivered at a therapeutically appropriate rate. Molecular dynamics (MD) simulations provide atomic-level structural information about PBG compositions. We review recent work to show that MD is an excellent tool to unravel the connections between the PBG glass composition, its atomic structure, and its dissolution rate, which can help to optimise PBGs for specific medical applications
AbstractPhosphate-based bioactive glasses containing fluoride ions offer the potential of a biomater...
We have conducted classical molecular dynamics simulations of three compositions of yttrium-containi...
Bioactive glasses are a class of synthetic inorganic material that have wide orthopedics, dentistry,...
Phosphate-based bioactive glasses (PBGs) dissolve harmlessly in the body with a dissolution rate whi...
We have used classical molecular dynamics simulations to characterise the structure of three composi...
We have used classical molecular dynamics simulations to characterise the structure of three composi...
In the last decades, most experimental efforts have been devoted to design bioactive glasses (please...
AbstractClassical molecular dynamics (MD) simulations were used to study the structural changes in t...
Classical molecular dynamics (MD) simulations were used to study the structural changes in the surfa...
The dissolution of fluoride-containing bioactive glasses critically affects their biomedical applica...
Phosphate-based bioactive glasses containing fluoride ions offer the potential of a biomaterial whic...
Classical molecular dynamics (MD) simulations were used to study the effects of water on the structu...
AbstractPhosphate-based bioactive glasses containing fluoride ions offer the potential of a biomater...
We have conducted classical molecular dynamics simulations of three compositions of yttrium-containi...
Bioactive glasses are a class of synthetic inorganic material that have wide orthopedics, dentistry,...
Phosphate-based bioactive glasses (PBGs) dissolve harmlessly in the body with a dissolution rate whi...
We have used classical molecular dynamics simulations to characterise the structure of three composi...
We have used classical molecular dynamics simulations to characterise the structure of three composi...
In the last decades, most experimental efforts have been devoted to design bioactive glasses (please...
AbstractClassical molecular dynamics (MD) simulations were used to study the structural changes in t...
Classical molecular dynamics (MD) simulations were used to study the structural changes in the surfa...
The dissolution of fluoride-containing bioactive glasses critically affects their biomedical applica...
Phosphate-based bioactive glasses containing fluoride ions offer the potential of a biomaterial whic...
Classical molecular dynamics (MD) simulations were used to study the effects of water on the structu...
AbstractPhosphate-based bioactive glasses containing fluoride ions offer the potential of a biomater...
We have conducted classical molecular dynamics simulations of three compositions of yttrium-containi...
Bioactive glasses are a class of synthetic inorganic material that have wide orthopedics, dentistry,...