Bone graft material should possess sufficient porosity and permeability to allow integration with native tissue and vascular invasion, and must satisfy oxygen and nutrient transport demands. In this study, we have examined the use of three-dimensional (3D)-printed polycaprolactone/tricalcium phosphate (PCL/TCP) composite material in bone grafting, to estimate the scope of its potential application in bone surgery. Adipose-derived stem cells (ADSCs) and bone marrow stem cells (BMSCs) are known to enhance osteointegration. We hypothesized that a patient-specific 3D-printed solid scaffold could help preserve seeded ADSCs and BMSCs and enhance osteointegration. Diffuse osteogenic tissue formation was observed by micro-computed tomography with b...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Tissue engineering holds much promise for treatment of large bone defects. The objective of the work...
Abstract Self-healing and autologous bone graft of calvaraial defects can be challenging. Therefore,...
Multipotent mesenchymal stem cells (MSCs) and MSC sheets have effective potentials of bone regenerat...
The efficacy of a three-dimensional printed polycaprolactone–biphasic-calcium-phosphate scaffold (PC...
Abstract Background Tissue-engineered bone materials are an effective tool to repair bone defects. I...
Three-dimensional porous polycaprolactone (PCL) scaffolds with consistent inter-pore channels, 83% p...
Insufficient bone volume is one of the major challenges encountered by dentists after dental implant...
Current strategies to correct bone defects present various drawbacks, leading to the emergence of bo...
In this work, we evaluated the influence of a novel hybrid 3D-printed porous composite scaffold base...
3D printing technique is the most sophisticated technique to produce scaffolds with tailorable physi...
This study was conducted to compare 3D-printed polycaprolactone (PCL) and polycaprolactone/β-tricalc...
The drawbacks of traditional bone defect treatments have prompted the exploration of bone tissue eng...
Defect-specific bone regeneration using 3-dimensional (3D) printing of block bone has been developed...
Polycaprolactone (PCL) – tricalcium phosphate (TCP) is an established composite material for bone ti...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Tissue engineering holds much promise for treatment of large bone defects. The objective of the work...
Abstract Self-healing and autologous bone graft of calvaraial defects can be challenging. Therefore,...
Multipotent mesenchymal stem cells (MSCs) and MSC sheets have effective potentials of bone regenerat...
The efficacy of a three-dimensional printed polycaprolactone–biphasic-calcium-phosphate scaffold (PC...
Abstract Background Tissue-engineered bone materials are an effective tool to repair bone defects. I...
Three-dimensional porous polycaprolactone (PCL) scaffolds with consistent inter-pore channels, 83% p...
Insufficient bone volume is one of the major challenges encountered by dentists after dental implant...
Current strategies to correct bone defects present various drawbacks, leading to the emergence of bo...
In this work, we evaluated the influence of a novel hybrid 3D-printed porous composite scaffold base...
3D printing technique is the most sophisticated technique to produce scaffolds with tailorable physi...
This study was conducted to compare 3D-printed polycaprolactone (PCL) and polycaprolactone/β-tricalc...
The drawbacks of traditional bone defect treatments have prompted the exploration of bone tissue eng...
Defect-specific bone regeneration using 3-dimensional (3D) printing of block bone has been developed...
Polycaprolactone (PCL) – tricalcium phosphate (TCP) is an established composite material for bone ti...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Tissue engineering holds much promise for treatment of large bone defects. The objective of the work...
Abstract Self-healing and autologous bone graft of calvaraial defects can be challenging. Therefore,...