An adequate cell seeding technique is essential for effective bone regeneration on cell seeded constructs of porous tricalcium phosphates. In previous studies, dynamic cell seeding, in which an external force is applied to seed cells on a biomaterial, resulted in more homogeneous cell seeding in low porosity scaffolds than static seeding. The optimal cell seeding technique for high porosity scaffolds has not been defined yet. Human mesenchymal stem cells were isolated from bone marrow and characterized. The cells were seeded on low porosity (45%) and high porosity (90%) tricalcium phosphate scaffolds using a static and a vacuum seeding technique. LIVE/DEAD (R) staining of the cell-scaffold complexes followed by confocal laser scanning micro...
Internal pores in calcium phosphate (CaP) scaffolds pose an obstacle in cell seeding efficiency. Pre...
Item does not contain fulltextThe objective of the present study was to learn more about the effect ...
The specific aim of this study was to gain insight into the influence of scaffold pore size, pore sh...
An adequate cell seeding technique is essential for effective bone regeneration on cell seeded const...
The aim of this study was to develop and evaluate a simple and rapid cell seeding procedure for both...
In regenerative medicine studies, cell seeding efficiency is not only optimized by changing the chem...
Seeding cells efficiently and uniformly onto three-dimensional scaffolds is a key element for engine...
The repair of large and complex bone defects could be helped by a cell-based bone tissue engineering...
The advance of rapid prototyping techniques has significantly improved control over the pore network...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...
Cell seeding is challenging in the case of additively manufactured 3-dimensional scaffolds, as the o...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
Cell seeding into scaffolds plays a crucial role in the development of efficient bone tissue enginee...
Internal pores in calcium phosphate (CaP) scaffolds pose an obstacle in cell seeding efficiency. Pre...
Item does not contain fulltextThe objective of the present study was to learn more about the effect ...
The specific aim of this study was to gain insight into the influence of scaffold pore size, pore sh...
An adequate cell seeding technique is essential for effective bone regeneration on cell seeded const...
The aim of this study was to develop and evaluate a simple and rapid cell seeding procedure for both...
In regenerative medicine studies, cell seeding efficiency is not only optimized by changing the chem...
Seeding cells efficiently and uniformly onto three-dimensional scaffolds is a key element for engine...
The repair of large and complex bone defects could be helped by a cell-based bone tissue engineering...
The advance of rapid prototyping techniques has significantly improved control over the pore network...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...
Cell seeding is challenging in the case of additively manufactured 3-dimensional scaffolds, as the o...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
Cell seeding into scaffolds plays a crucial role in the development of efficient bone tissue enginee...
Internal pores in calcium phosphate (CaP) scaffolds pose an obstacle in cell seeding efficiency. Pre...
Item does not contain fulltextThe objective of the present study was to learn more about the effect ...
The specific aim of this study was to gain insight into the influence of scaffold pore size, pore sh...