Item does not contain fulltextThe osteoinductive properties of porous titanium fiber mesh, with or without a calcium phosphate coating and loaded with recombinant human bone morphogenic protein-2 (rhBMP-2) or rhBMP-2 and native bovine BMP (S-300) were investigated in a rat ectopic assay model. A total of 112 calcium phosphate-coated and 112 noncoated porous titanium implants, either loaded with rhBMP-2 and S-300 or loaded with rhBMP-2 alone, were subcutaneously placed in 56 Wistar-King rats. The rats were killed 5, 10, 20, and 40 days postoperatively, and the implants were retrieved.Histologic analysis demonstrated that all growth factor and carrier combinations induced ectopic cartilage and bone formation at 5 and 10 days, respectively. At...
In order to evaluate loading methods and the dose dependency of bone morphogenetic protein 2 (BMP-2)...
The objective of this study was to examine the osteoinductive capacity of different concentrations o...
BACKGROUND AND OBJECTIVE: The potential of the Escherichia coli-expressed recombinant human bone mor...
Item does not contain fulltextOn the basis of currently available knowledge, we hypothesize that the...
The osteogenic activity of calcium phosphate (CaP)-coated and noncoated porous titanium (Ti) fiber m...
Item does not contain fulltextThe osteoconductive properties of porous titanium (Ti) fiber mesh with...
This study investigated the effect of a calcium phosphate (CaP) coating onto a polycaprolactone melt...
Item does not contain fulltextTitanium (Ti) fiber mesh is a candidate scaffold material for the crea...
Introduction: Using a rat model, we evaluated the kinetics and histomorphometry of ectopic bone form...
We have previously shown that proteins can be incorporated into the latticework of calcium phosphate...
Contains fulltext : 48660.pdf (publisher's version ) (Closed access)Much research ...
The ectopic bone formation of recombinant human bone morphogenetic protein-2(rhBMP-2) was evaluated ...
Contains fulltext : 47324.pdf (publisher's version ) (Closed access)Scaffold mater...
Titanium fiber mesh scaffolds have been shown to be a suitable material for culture of primary marro...
In order to evaluate loading methods and the dose dependency of bone morphogenetic protein 2 (BMP-2)...
In order to evaluate loading methods and the dose dependency of bone morphogenetic protein 2 (BMP-2)...
The objective of this study was to examine the osteoinductive capacity of different concentrations o...
BACKGROUND AND OBJECTIVE: The potential of the Escherichia coli-expressed recombinant human bone mor...
Item does not contain fulltextOn the basis of currently available knowledge, we hypothesize that the...
The osteogenic activity of calcium phosphate (CaP)-coated and noncoated porous titanium (Ti) fiber m...
Item does not contain fulltextThe osteoconductive properties of porous titanium (Ti) fiber mesh with...
This study investigated the effect of a calcium phosphate (CaP) coating onto a polycaprolactone melt...
Item does not contain fulltextTitanium (Ti) fiber mesh is a candidate scaffold material for the crea...
Introduction: Using a rat model, we evaluated the kinetics and histomorphometry of ectopic bone form...
We have previously shown that proteins can be incorporated into the latticework of calcium phosphate...
Contains fulltext : 48660.pdf (publisher's version ) (Closed access)Much research ...
The ectopic bone formation of recombinant human bone morphogenetic protein-2(rhBMP-2) was evaluated ...
Contains fulltext : 47324.pdf (publisher's version ) (Closed access)Scaffold mater...
Titanium fiber mesh scaffolds have been shown to be a suitable material for culture of primary marro...
In order to evaluate loading methods and the dose dependency of bone morphogenetic protein 2 (BMP-2)...
In order to evaluate loading methods and the dose dependency of bone morphogenetic protein 2 (BMP-2)...
The objective of this study was to examine the osteoinductive capacity of different concentrations o...
BACKGROUND AND OBJECTIVE: The potential of the Escherichia coli-expressed recombinant human bone mor...