New-generation biomaterials for bone regenerations should be highly bioactive, resorbable and mechanically strong. Mesoporous bioactive glass (MBG), as a novel bioactive material, has been used for the study of bone regeneration due to its excellent bioactivity, degradation and drug-delivery ability; however, how to construct a 3D MBG scaffold (including other bioactive inorganic scaffolds) for bone regeneration still maintains a significant challenge due to its/their inherit brittleness and low strength. In this brief communication, we reported a new facile method to prepare hierarchical and multifunctional MBG scaffolds with controllable pore architecture, excellent mechanical strength and mineralization ability for bone regeneration appl...
The architecture of bone scaffolds, such as pore dimensions, connectivity and orientation can regula...
Tissue engineering utilizes artificial porous structures, scaffolds, to temporarily replace parts of...
poster abstractThe goal of this research project is to develop a three-dimensional designed bioactiv...
The advent of mesoporous bioactive glasses (MBGs) in applied bio-sciences led to the birth of a new ...
Three-dimensional Mesoporous bioactive glasses (MBGs) scaffolds has been widely considered for bone ...
The use of mesoporous bioactive glasses (MBG) for drug delivery and bone tissue regeneration has gro...
3D printed bioactive glass or bioceramic particle reinforced composite scaffolds for bone tissue eng...
In the past 20 years, mesoporous materials have been attracted great attention due to their signific...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Bioactive glasses have the ability to regenerate bone defects as they form a rapid bond with bone an...
Bioactive glasses are often designed as porous implantable templates in which newly-formed bone can ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
This article reports the first robocasting of a sol–gel based glass ceramic scaffold. Sol–gel bioact...
This article reports on the use of the binder jetting three-dimensional printing process combined wi...
Bioactive glasses (BGs) are traditionally known to be able to bond to living bone and stimulate bone...
The architecture of bone scaffolds, such as pore dimensions, connectivity and orientation can regula...
Tissue engineering utilizes artificial porous structures, scaffolds, to temporarily replace parts of...
poster abstractThe goal of this research project is to develop a three-dimensional designed bioactiv...
The advent of mesoporous bioactive glasses (MBGs) in applied bio-sciences led to the birth of a new ...
Three-dimensional Mesoporous bioactive glasses (MBGs) scaffolds has been widely considered for bone ...
The use of mesoporous bioactive glasses (MBG) for drug delivery and bone tissue regeneration has gro...
3D printed bioactive glass or bioceramic particle reinforced composite scaffolds for bone tissue eng...
In the past 20 years, mesoporous materials have been attracted great attention due to their signific...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Bioactive glasses have the ability to regenerate bone defects as they form a rapid bond with bone an...
Bioactive glasses are often designed as porous implantable templates in which newly-formed bone can ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
This article reports the first robocasting of a sol–gel based glass ceramic scaffold. Sol–gel bioact...
This article reports on the use of the binder jetting three-dimensional printing process combined wi...
Bioactive glasses (BGs) are traditionally known to be able to bond to living bone and stimulate bone...
The architecture of bone scaffolds, such as pore dimensions, connectivity and orientation can regula...
Tissue engineering utilizes artificial porous structures, scaffolds, to temporarily replace parts of...
poster abstractThe goal of this research project is to develop a three-dimensional designed bioactiv...