A current challenge of synthetic bone graft substitute design is to induce bone formation at a similar rate to its biological resorption, matching bone’s intrinsic osteoinductivity and capacity for remodelling. We hypothesise that both osteoinduction and resorption can be achieved by altering surface microstructure of beta-tricalcium phosphate (TCP). To test this, two TCP ceramics are engineered with equivalent chemistry and macrostructure but with either submicron- or micron-scale surface architecture. In vitro, submicron-scale surface architecture differentiates larger, more active osteoclasts – a cell type shown to be important for both TCP resorption and osteogenesis – and enhances their secretion of osteogenic factors to induce osteobl...
The microporosity of calcium phosphate (CaP) ceramics has been shown to have an essential role in os...
Microporosity of calcium phosphate (CaP) ceramics has shown its essential role in osteoinduction by ...
Calcium phosphates (CaP) are widely used synthetic bone graft substitutes, having bioactivity that i...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
A resorbable bone graft substitute should mimic native bone in its capacity to support bone formatio...
A resorbable bone graft substitute should mimic native bone in its capacity to support bone formatio...
A resorbable bone graft substitute should mimic native bone in its capacity to support bone formatio...
A resorbable bone graft substitute should mimic native bone in its capacity to support bone formatio...
A resorbable bone graft substitute should mimic native bone in its capacity to support bone formatio...
The microporosity of calcium phosphate (CaP) ceramics has been shown to have an essential role in os...
The microporosity of calcium phosphate (CaP) ceramics has been shown to have an essential role in os...
The microporosity of calcium phosphate (CaP) ceramics has been shown to have an essential role in os...
Microporosity of calcium phosphate (CaP) ceramics has shown its essential role in osteoinduction by ...
Calcium phosphates (CaP) are widely used synthetic bone graft substitutes, having bioactivity that i...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
A resorbable bone graft substitute should mimic native bone in its capacity to support bone formatio...
A resorbable bone graft substitute should mimic native bone in its capacity to support bone formatio...
A resorbable bone graft substitute should mimic native bone in its capacity to support bone formatio...
A resorbable bone graft substitute should mimic native bone in its capacity to support bone formatio...
A resorbable bone graft substitute should mimic native bone in its capacity to support bone formatio...
The microporosity of calcium phosphate (CaP) ceramics has been shown to have an essential role in os...
The microporosity of calcium phosphate (CaP) ceramics has been shown to have an essential role in os...
The microporosity of calcium phosphate (CaP) ceramics has been shown to have an essential role in os...
Microporosity of calcium phosphate (CaP) ceramics has shown its essential role in osteoinduction by ...
Calcium phosphates (CaP) are widely used synthetic bone graft substitutes, having bioactivity that i...