The chemical properties of calcium phosphate cements (CPCs) are very similar to the mineral phase of bone. CPCs are, consequently, very effective substrates (scaffolds) for tissue engineering; bone and stem cells attach readily, and can proliferate and differentiate to form new bone tissue. Unlike other CPCs that may remain largely unchanged in the body for years, such as hydroxyapatite, dicalcium phosphates are remodelled by the body and rapidly converted to new bone. Unfortunately, the dicalcium phosphates are also typically too weak to support load bearing in the human body. Our laboratory has recently developed a novel, high strength brushite CPC, (hsCPC), which can reach 10-50 fold higher failure strength than many commercially availab...
Basic (apatite-based) calcium phosphate cements (CPCs), and acidic (brushite and monetite-based) CPC...
Dicalcium phosphate cement preparation requires the addition of setting retarders to meet clinical r...
Synthetic calcium phosphate (CaP) ceramics represent the most widely used biomaterials for bone rege...
The chemical properties of calcium phosphate cements (CPCs) are very similar to the mineral phase of...
In this study, a calcium polyphosphate cement (CpPC) consisting of basic components was investigated...
ABSTRACT: We developed a novel calcium phosphate cement (CPC) by combining the silk fibroin and oste...
Calcium phosphate cements (CPCs) consist of a combination of calcium phosphates and a liquid phase, ...
Compared to cortical bone and polymeric bone cements, the mechanical properties of calcium phosphate...
Compared to cortical bone and polymeric bone cements, the mechanical properties of calcium phosphate...
The gold standard for bone replacement today, autologous bone, suffers from several disadvantages, s...
Biomaterials utilized in biomedical applications are of various characteristics and cements are uniq...
Basic (apatite-based) calcium phosphate cements (CPCs), and acidic (brushite and monetite-based) CPC...
Purpose: To evaluate the ability of macroporous tricalcium phosphate cement (CPC) scaffolds to enabl...
Basic (apatite-based) calcium phosphate cements (CPCs), and acidic (brushite and monetite-based) CPC...
Basic (apatite-based) calcium phosphate cements (CPCs), and acidic (brushite and monetite-based) CPC...
Basic (apatite-based) calcium phosphate cements (CPCs), and acidic (brushite and monetite-based) CPC...
Dicalcium phosphate cement preparation requires the addition of setting retarders to meet clinical r...
Synthetic calcium phosphate (CaP) ceramics represent the most widely used biomaterials for bone rege...
The chemical properties of calcium phosphate cements (CPCs) are very similar to the mineral phase of...
In this study, a calcium polyphosphate cement (CpPC) consisting of basic components was investigated...
ABSTRACT: We developed a novel calcium phosphate cement (CPC) by combining the silk fibroin and oste...
Calcium phosphate cements (CPCs) consist of a combination of calcium phosphates and a liquid phase, ...
Compared to cortical bone and polymeric bone cements, the mechanical properties of calcium phosphate...
Compared to cortical bone and polymeric bone cements, the mechanical properties of calcium phosphate...
The gold standard for bone replacement today, autologous bone, suffers from several disadvantages, s...
Biomaterials utilized in biomedical applications are of various characteristics and cements are uniq...
Basic (apatite-based) calcium phosphate cements (CPCs), and acidic (brushite and monetite-based) CPC...
Purpose: To evaluate the ability of macroporous tricalcium phosphate cement (CPC) scaffolds to enabl...
Basic (apatite-based) calcium phosphate cements (CPCs), and acidic (brushite and monetite-based) CPC...
Basic (apatite-based) calcium phosphate cements (CPCs), and acidic (brushite and monetite-based) CPC...
Basic (apatite-based) calcium phosphate cements (CPCs), and acidic (brushite and monetite-based) CPC...
Dicalcium phosphate cement preparation requires the addition of setting retarders to meet clinical r...
Synthetic calcium phosphate (CaP) ceramics represent the most widely used biomaterials for bone rege...