Beta‐tricalcium phosphate‐reinforced high‐density polyethylene (β‐TCP/HDPE) is a new biomaterial which was made as a copy of bone composition with the aim of replacement of bony tissues. The composite samples were prepared using medical grade TCP powder and granular polyethylene. The raw materials were first compounded and the resulting composite preforms were compression molded into desired shape. The biocompatibility of composite samples with different volume fractions of TCP (20, 30, and 40 vol %) was assessed by proliferation, alkaline phosphatase (ALP), and cell adhesion assays using G‐292 osteoblast cells. Cell–material interaction on the surface of the composites was observed by scanning electron microscopy (SEM). The effect of β‐TCP...
Totally biodegradable and osteoconductive composite material consisting of polyhydroxybutyrate (PHB)...
The aim of this study was to investigate the in vivo biocompatibility in terms of healing of long se...
The present article demonstrates how the stiffness, hardness as well as the cellular response of bio...
Beta‐tricalcium phosphate‐reinforced high‐density polyethylene (β‐TCP/HDPE) is a new biomaterial whi...
β‐Tricalcium phosphate‐reinforced high‐density polyethylene (β‐TCP/HDPE) is a new biomaterial, which...
Beta-tricalcium phosphate reinforced high density polyethylene (beta-TCP/HDPE) was prepared to simul...
A primary human cell culture model was used to investigate a range of hydroxyapaptite (HA)-reinforce...
High density polyethylene/tricalcium phosphate/ultra high molecular weight polyethylene (TCP/HDPE/UH...
In vitro performance of hydroxyapatite (HA)-reinforced polyethylene (PE) composite (HAPEX®) has been...
The efficacy of composite materials for bone tissue engineering is dependent on the materials' abili...
The bioactivity and biocompatibility of Bioglass®-reinforced high-density polyethylene composite (Bi...
Human bone derived osteoblasts were cultured on collagen-calcium phosphate composites. The ability o...
In the present study, the biocompatibility of partially stabilized zirconia (PSZ) added hydroxyapati...
International audienceObjective: In the present study, we investigate the biological performance of ...
Totally biodegradable and osteoconductive composite material consisting of polyhydroxybutyrate (PHB)...
The aim of this study was to investigate the in vivo biocompatibility in terms of healing of long se...
The present article demonstrates how the stiffness, hardness as well as the cellular response of bio...
Beta‐tricalcium phosphate‐reinforced high‐density polyethylene (β‐TCP/HDPE) is a new biomaterial whi...
β‐Tricalcium phosphate‐reinforced high‐density polyethylene (β‐TCP/HDPE) is a new biomaterial, which...
Beta-tricalcium phosphate reinforced high density polyethylene (beta-TCP/HDPE) was prepared to simul...
A primary human cell culture model was used to investigate a range of hydroxyapaptite (HA)-reinforce...
High density polyethylene/tricalcium phosphate/ultra high molecular weight polyethylene (TCP/HDPE/UH...
In vitro performance of hydroxyapatite (HA)-reinforced polyethylene (PE) composite (HAPEX®) has been...
The efficacy of composite materials for bone tissue engineering is dependent on the materials' abili...
The bioactivity and biocompatibility of Bioglass®-reinforced high-density polyethylene composite (Bi...
Human bone derived osteoblasts were cultured on collagen-calcium phosphate composites. The ability o...
In the present study, the biocompatibility of partially stabilized zirconia (PSZ) added hydroxyapati...
International audienceObjective: In the present study, we investigate the biological performance of ...
Totally biodegradable and osteoconductive composite material consisting of polyhydroxybutyrate (PHB)...
The aim of this study was to investigate the in vivo biocompatibility in terms of healing of long se...
The present article demonstrates how the stiffness, hardness as well as the cellular response of bio...