Biologically active metal ions in low doses have the potential to accelerate bone defect healing. For successful remodelling the interaction of bone graft materials with both bone-forming osteoblasts and bone resorbing osteoclasts is crucial. In the present study brushite forming calcium phosphate cements (CPC) were doped with Co2+, Cu2+ and Cr3+ and the influence of these materials on osteoclast differentiation and activity was examined. Human osteoclasts were differentiated from human peripheral blood mononuclear cells (PBMC) both on the surface and in indirect contact to the materials on dentin discs. Release of calcium, phosphate and bioactive metal ions was determined using ICP-MS both in the presence and absence of the cells. While Co...
Abstract Calcium silicate-based cements differ markedly in their radiopacifiers and the presence of ...
This study describes a medium-throughput system based on deposition of calcium phosphate films in mu...
The chemical properties of calcium phosphate cements (CPCs) are very similar to the mineral phase of...
Biologically active metal ions in low doses have the potential to accelerate bone defect healing. Fo...
Biologically active metal ions in low doses have the potential to accelerate bone defect healing. Fo...
Metal ions Originating from mechanical debris and Corrosive wear of prosthetic implant alloys accumu...
The identification and characterization of biocompatible materials that augment bone cell proliferat...
Materials that augment bone cell proliferation and osteogenic activity have important therapeutic im...
BACKGROUND: Biomineralized collagen, consisting of fibrillar type-I collagen with embedded hydroxyap...
Advisors: Sahar Vahabzadeh.Committee members: Sherine F. Elsawa; Federico Sciammarella.Includes illu...
Calcium phosphate-based materials (CaP) have been widely used as bone graft substitutes with a decen...
<p>Cell culture supernatants from cement samples (6mm diameter, 1 mm height) during direct cultivati...
The balance of bone formation and resorption is the result of a regulated crosstalk between osteobla...
In this study, a calcium polyphosphate cement (CpPC) consisting of basic components was investigated...
Nowadays, considerable efforts have been focused on various calcium phosphate based cement composit...
Abstract Calcium silicate-based cements differ markedly in their radiopacifiers and the presence of ...
This study describes a medium-throughput system based on deposition of calcium phosphate films in mu...
The chemical properties of calcium phosphate cements (CPCs) are very similar to the mineral phase of...
Biologically active metal ions in low doses have the potential to accelerate bone defect healing. Fo...
Biologically active metal ions in low doses have the potential to accelerate bone defect healing. Fo...
Metal ions Originating from mechanical debris and Corrosive wear of prosthetic implant alloys accumu...
The identification and characterization of biocompatible materials that augment bone cell proliferat...
Materials that augment bone cell proliferation and osteogenic activity have important therapeutic im...
BACKGROUND: Biomineralized collagen, consisting of fibrillar type-I collagen with embedded hydroxyap...
Advisors: Sahar Vahabzadeh.Committee members: Sherine F. Elsawa; Federico Sciammarella.Includes illu...
Calcium phosphate-based materials (CaP) have been widely used as bone graft substitutes with a decen...
<p>Cell culture supernatants from cement samples (6mm diameter, 1 mm height) during direct cultivati...
The balance of bone formation and resorption is the result of a regulated crosstalk between osteobla...
In this study, a calcium polyphosphate cement (CpPC) consisting of basic components was investigated...
Nowadays, considerable efforts have been focused on various calcium phosphate based cement composit...
Abstract Calcium silicate-based cements differ markedly in their radiopacifiers and the presence of ...
This study describes a medium-throughput system based on deposition of calcium phosphate films in mu...
The chemical properties of calcium phosphate cements (CPCs) are very similar to the mineral phase of...