During bone regeneration, the periosteum acts as a carrier for key regenerative cues, delivering osteochondroprogenitor cells and crucial growth factors to the injured bone. We developed a biocompatible, 3D polycaprolactone (PCL) melt electro-written membrane to act as a mimetic periosteum. Poly (ethyl acrylate) coating of the PCL membrane allowed functionalization, mediated by fibronectin and low dose recombinant human BMP-2 (rhBMP-2) (10-25 μg/ml), resulting in efficient, sustained osteoinduction in vitro. In vivo, rhBMP-2 functionalized mimetic periosteum demonstrated regenerative potential in the treatment of rat critical-size femoral defects with highly efficient healing and functional recovery (80%-93%). Mimetic periosteum has also pr...
This study was undertaken to evaluate the effect of 3D printed polycaprolactone (PCL)/β-tricalcium p...
Critical size bone defects (CSBD) are too large (>1-2 cm) for spontaneous repair. Here, a new concep...
Synthetic graft materials are considered as possible substitutes for cancellous bone, but lack osteo...
During bone regeneration, the periosteum acts as a carrier for key regenerative cues, delivering ost...
Background: Despite its unique regenerative capacity, bone healing can be compromised, leading to de...
Bone presents truly regenerative capacity being able to regenerate into a native state in response ...
Introduction: Despite its regenerative capacity, bone healing can be compromised, leading to delayed...
Background: Biomaterial scaffolds that deliver growth factors such as recombinant human bone morphog...
Abstract Background There is a critical need for the management of large bone defects. The purpose o...
The current management of critical size bone defects (CSBDs) remains challenging and requires multip...
Tissue engineering of bone has combined bespoke scaffolds and osteoinductive factors to maintain fun...
The aim of this study was to develop 3-D tissue engineered constructs that mimic the in vivo conditi...
Clinical translation of cell-based strategies for regenerative medicine demands predictable in vivo ...
ABSTRACT: Treatment of large bone defects using synthetic scaffolds remain a challenge mainly due to...
Over 18 % of annual fractures of the tibia lead to non-unions, commonly caused by the critical size ...
This study was undertaken to evaluate the effect of 3D printed polycaprolactone (PCL)/β-tricalcium p...
Critical size bone defects (CSBD) are too large (>1-2 cm) for spontaneous repair. Here, a new concep...
Synthetic graft materials are considered as possible substitutes for cancellous bone, but lack osteo...
During bone regeneration, the periosteum acts as a carrier for key regenerative cues, delivering ost...
Background: Despite its unique regenerative capacity, bone healing can be compromised, leading to de...
Bone presents truly regenerative capacity being able to regenerate into a native state in response ...
Introduction: Despite its regenerative capacity, bone healing can be compromised, leading to delayed...
Background: Biomaterial scaffolds that deliver growth factors such as recombinant human bone morphog...
Abstract Background There is a critical need for the management of large bone defects. The purpose o...
The current management of critical size bone defects (CSBDs) remains challenging and requires multip...
Tissue engineering of bone has combined bespoke scaffolds and osteoinductive factors to maintain fun...
The aim of this study was to develop 3-D tissue engineered constructs that mimic the in vivo conditi...
Clinical translation of cell-based strategies for regenerative medicine demands predictable in vivo ...
ABSTRACT: Treatment of large bone defects using synthetic scaffolds remain a challenge mainly due to...
Over 18 % of annual fractures of the tibia lead to non-unions, commonly caused by the critical size ...
This study was undertaken to evaluate the effect of 3D printed polycaprolactone (PCL)/β-tricalcium p...
Critical size bone defects (CSBD) are too large (>1-2 cm) for spontaneous repair. Here, a new concep...
Synthetic graft materials are considered as possible substitutes for cancellous bone, but lack osteo...