The study aim was to evaluate the effect of bone marrow stromal cells (BMSCs) cultured in titanium fiber mesh and implanted in a rat cranial defect. A total of 24 titanium meshes were placed in a tube containing 10 ml BMSC suspension (3 x 10(6)cells/ml) and the tube was rotated on a rotation plate (2 rpm) during 3 h. Thereafter, meshes with cells were subcultured for 1 day under standard conditions. Cell-loaded implants and non-cell-loaded controls were placed in a 8 mm cranial defect and retrieved after 3, 15 and 30 days of implantation. Histology showed that after 3 days of implantation, the mesh porosity of both implant groups was mainly invaded with blood cells. On the other hand, at 15 days of implantation, the cell-loaded implants wer...
Abstract The therapeutic method traditionally used in bone defect reconstruction is autologous bone ...
Scaffold materials for bone tissue engineering often are supplemented with bone morphogenetic protei...
Bone marrow stromal cells contain a population of progenitor cells which are capable of differentiat...
Item does not contain fulltextThe study aim was to evaluate the effect of bone marrow stromal cells ...
Item does not contain fulltextThe aim of this study was to investigate the in vivo performance in bo...
Item does not contain fulltextThe objective of this study was to examine the effect of cell culture ...
Porous titanium fiber mesh (TFM) is considered a suitable scaffold material for bone reconstruction....
Titanium (Ti) fiber mesh is a candidate scaffold material for the creation of bone graft substitutes...
The objective of this study was to evaluate the effect of two cell culture techniques, static and fl...
The osteogenic activity of calcium phosphate (CaP)-coated and noncoated porous titanium (Ti) fiber m...
Titanium fiber mesh scaffolds have been shown to be a suitable material for culture of primary marro...
Item does not contain fulltextThe objective of the present study was to learn more about the effect ...
Alternative materials for bone grafts are gaining greater importance in dentistry and orthopaedics, ...
Much research has been done to develop the ideal bone graft substitute (BGS). One approach to develo...
For man-made percutaneous devices (PD), it is known that anchoring will improve the clinical success...
Abstract The therapeutic method traditionally used in bone defect reconstruction is autologous bone ...
Scaffold materials for bone tissue engineering often are supplemented with bone morphogenetic protei...
Bone marrow stromal cells contain a population of progenitor cells which are capable of differentiat...
Item does not contain fulltextThe study aim was to evaluate the effect of bone marrow stromal cells ...
Item does not contain fulltextThe aim of this study was to investigate the in vivo performance in bo...
Item does not contain fulltextThe objective of this study was to examine the effect of cell culture ...
Porous titanium fiber mesh (TFM) is considered a suitable scaffold material for bone reconstruction....
Titanium (Ti) fiber mesh is a candidate scaffold material for the creation of bone graft substitutes...
The objective of this study was to evaluate the effect of two cell culture techniques, static and fl...
The osteogenic activity of calcium phosphate (CaP)-coated and noncoated porous titanium (Ti) fiber m...
Titanium fiber mesh scaffolds have been shown to be a suitable material for culture of primary marro...
Item does not contain fulltextThe objective of the present study was to learn more about the effect ...
Alternative materials for bone grafts are gaining greater importance in dentistry and orthopaedics, ...
Much research has been done to develop the ideal bone graft substitute (BGS). One approach to develo...
For man-made percutaneous devices (PD), it is known that anchoring will improve the clinical success...
Abstract The therapeutic method traditionally used in bone defect reconstruction is autologous bone ...
Scaffold materials for bone tissue engineering often are supplemented with bone morphogenetic protei...
Bone marrow stromal cells contain a population of progenitor cells which are capable of differentiat...