To date, titanium-based alloys (Ti) remain the most used implantable materials for load-bearing applications. Emerging additive manufacturing techniques such as electron beam melting (EBM) enable to custom-build architectured scaffolds of controlled macroporosity. In very difficult clinical situations, potent bioactive signals are needed to boost stem cells: osteoinductive molecules such as bone morphogenetic proteins (BMP-2) are currently used for this purpose. However, one of their limitations is their inappropriate delivery with collagen sponges. Biomimetic surface coatings made of the biopolymers poly(L-lysine) and hyaluronic acid, (PLL/HA) polyelectrolyte films, have recently been engineered as nanoreservoirs for BMP proteins. The aim ...
In several clinical cases, dental implant placement can be hindered if the alveolar bone volume is l...
L’ingénierie du tissu osseux vise à concevoir un substitut tissulaire associant des cellules ostéopr...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
To date, titanium-based alloys (Ti) remain the most used implantable materials for load-bearing appl...
A l’heure actuelle, les alliages à bases de titane sont les matériaux les plus utilisés en implantol...
Orthopaedic and dental implant retention rates decrease in patients with one or a combination of ris...
Three-dimensionally printed porous titanium alloys prepared using the electron beam melting (EBM) te...
La régénération des défauts osseux de taille critique reste un défi majeur pour la santé. Les limita...
The architecture of bone filling biomaterials has a real impact on cellular activity, vascularizatio...
Les défauts osseux de taille critique ne peuvent pas guérir d'eux-mêmes. La greffe osseuse autologue...
International audienceThe rapid and effective bone regeneration of large non-healing defects remains...
Extracellular Vesicles (EVs) are considered promising nanoscale therapeutics for bone regeneration. ...
The aim of this study was to develop 3-D tissue engineered constructs that mimic the in vivo conditi...
Extracellular Vesicles (EVs) are considered promising nanoscale therapeutics for bone regeneration. ...
AbstractThe rapid and effective bone regeneration of large non-healing defects remains challenging. ...
In several clinical cases, dental implant placement can be hindered if the alveolar bone volume is l...
L’ingénierie du tissu osseux vise à concevoir un substitut tissulaire associant des cellules ostéopr...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
To date, titanium-based alloys (Ti) remain the most used implantable materials for load-bearing appl...
A l’heure actuelle, les alliages à bases de titane sont les matériaux les plus utilisés en implantol...
Orthopaedic and dental implant retention rates decrease in patients with one or a combination of ris...
Three-dimensionally printed porous titanium alloys prepared using the electron beam melting (EBM) te...
La régénération des défauts osseux de taille critique reste un défi majeur pour la santé. Les limita...
The architecture of bone filling biomaterials has a real impact on cellular activity, vascularizatio...
Les défauts osseux de taille critique ne peuvent pas guérir d'eux-mêmes. La greffe osseuse autologue...
International audienceThe rapid and effective bone regeneration of large non-healing defects remains...
Extracellular Vesicles (EVs) are considered promising nanoscale therapeutics for bone regeneration. ...
The aim of this study was to develop 3-D tissue engineered constructs that mimic the in vivo conditi...
Extracellular Vesicles (EVs) are considered promising nanoscale therapeutics for bone regeneration. ...
AbstractThe rapid and effective bone regeneration of large non-healing defects remains challenging. ...
In several clinical cases, dental implant placement can be hindered if the alveolar bone volume is l...
L’ingénierie du tissu osseux vise à concevoir un substitut tissulaire associant des cellules ostéopr...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...