Silicate bioceramic scaffolds are of great interest in bone tissue engineering, but the fabrication of silicate bioceramic scaffolds with complex geometries is still challenging. In this study, three-dimensional (3D) porous β-Ca2SiO4 scaffolds have been successfully fabricated from preceramic resin loaded with CaCO3 active filler by 3D printing. The fabricated β-Ca2SiO4 scaffolds had uniform interconnected macropores (ca. 400 μm), high porosity (>78%), enhanced mechanical strength (ca. 5.2 MPa), and excellent apatite mineralization ability. Importantly, the results showed that the increase of sintering temperature significantly enhanced the compressive strength and the scaffolds sintered at higher sintering temperature stimulated the adhesi...
In this study, we describe the additive manufacturing of porous three-dimensionally (3D) printed cer...
In this study, bone tissue engineered scaffolds fabricated via powder-based 3D printing from hydroxy...
Bioceramics are clinically used as implantable materials to alleviate pain and restore function to d...
Calcium silicate (CaSiO3, CS) ceramics have received significant attention for application in bone r...
Artificial bone grafting is widely used in current orthopedic surgery for bone defect problems. Unfo...
The use of porous three-dimensional bioceramic scaffolds to support bone tissue growth and regenerat...
Three-dimensional printing technologies have shown distinct advantages to create porous scaffolds wi...
Background: One of the main challenges with conventional scaffold fabrication methods is the inabili...
Silica-bonded calcite scaffolds have been successfully 3D-printed by direct ink writing, starting fr...
In this study, polylactic acid (PLA)‐based composite scaffolds with calcium carbonate (CaCO3) and be...
Some basic requirements of bone tissue engineering include cells derived from bone tissues, three-di...
This study demonstrates the usefulness of the lithography-based ceramic 3-dimensional printing techn...
In bone tissue engineering, scaffolds with excellent mechanical and bioactive properties play promin...
This article reports on the use of the binder jetting three-dimensional printing process combined wi...
Ceramic materials mimic the mineral composition of native bone and feature osteoconductive propertie...
In this study, we describe the additive manufacturing of porous three-dimensionally (3D) printed cer...
In this study, bone tissue engineered scaffolds fabricated via powder-based 3D printing from hydroxy...
Bioceramics are clinically used as implantable materials to alleviate pain and restore function to d...
Calcium silicate (CaSiO3, CS) ceramics have received significant attention for application in bone r...
Artificial bone grafting is widely used in current orthopedic surgery for bone defect problems. Unfo...
The use of porous three-dimensional bioceramic scaffolds to support bone tissue growth and regenerat...
Three-dimensional printing technologies have shown distinct advantages to create porous scaffolds wi...
Background: One of the main challenges with conventional scaffold fabrication methods is the inabili...
Silica-bonded calcite scaffolds have been successfully 3D-printed by direct ink writing, starting fr...
In this study, polylactic acid (PLA)‐based composite scaffolds with calcium carbonate (CaCO3) and be...
Some basic requirements of bone tissue engineering include cells derived from bone tissues, three-di...
This study demonstrates the usefulness of the lithography-based ceramic 3-dimensional printing techn...
In bone tissue engineering, scaffolds with excellent mechanical and bioactive properties play promin...
This article reports on the use of the binder jetting three-dimensional printing process combined wi...
Ceramic materials mimic the mineral composition of native bone and feature osteoconductive propertie...
In this study, we describe the additive manufacturing of porous three-dimensionally (3D) printed cer...
In this study, bone tissue engineered scaffolds fabricated via powder-based 3D printing from hydroxy...
Bioceramics are clinically used as implantable materials to alleviate pain and restore function to d...