Cell seeding into scaffolds plays a crucial role in the development of efficient bone tissue engineering constructs. Hence, it becomes imperative to identify the key factors that quantitatively predict reproducible and efficient seeding protocols. In this study, the optimization of a cell seeding process was investigated using design of experiments (DOE) statistical methods. Five seeding factors (cell type, scaffold type, seeding volume, seeding density, and seeding time) were selected and investigated by means of two response parameters, critically related to the cell seeding process: cell seeding efficiency (CSE) and cell-specific viability (CSV). In addition, cell spatial distribution (CSD) was analyzed by Live/Dead staining assays. Anal...
Cell seeding is challenging in the case of additively manufactured 3-dimensional scaffolds, as the o...
Cell seeding on 3D scaffolds is a very delicate step in tissue engineering applications, influencing...
The use of filling biomaterials or tissue-engineered large bone implant-coupling biocompatible mater...
The repair of large and complex bone defects could be helped by a cell-based bone tissue engineering...
Cell seeding in a biomaterial is an important process for tissue engineering applications. It helps ...
In regenerative medicine studies, cell seeding efficiency is not only optimized by changing the chem...
Cell seeding in a biomaterial is an important process for tissue engineering applications. It helps ...
Seeding cells efficiently and uniformly onto three-dimensional scaffolds is a key element for engine...
An adequate cell seeding technique is essential for effective bone regeneration on cell seeded const...
Tissue engineering scaffolds are potential candidates to develop bone grafts with autologous propert...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...
There is an increasing demand for bone graft substitutes that are used as osteoconductive scaffolds ...
Item does not contain fulltextThe objective of the present study was to learn more about the effect ...
Scaffolds seeded with multipotent precursor cells were hypothesized to heal critically sized bone de...
Obtaining an efficient, uniform and reproducible cell seeding of porous tubular scaffolds constitute...
Cell seeding is challenging in the case of additively manufactured 3-dimensional scaffolds, as the o...
Cell seeding on 3D scaffolds is a very delicate step in tissue engineering applications, influencing...
The use of filling biomaterials or tissue-engineered large bone implant-coupling biocompatible mater...
The repair of large and complex bone defects could be helped by a cell-based bone tissue engineering...
Cell seeding in a biomaterial is an important process for tissue engineering applications. It helps ...
In regenerative medicine studies, cell seeding efficiency is not only optimized by changing the chem...
Cell seeding in a biomaterial is an important process for tissue engineering applications. It helps ...
Seeding cells efficiently and uniformly onto three-dimensional scaffolds is a key element for engine...
An adequate cell seeding technique is essential for effective bone regeneration on cell seeded const...
Tissue engineering scaffolds are potential candidates to develop bone grafts with autologous propert...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...
There is an increasing demand for bone graft substitutes that are used as osteoconductive scaffolds ...
Item does not contain fulltextThe objective of the present study was to learn more about the effect ...
Scaffolds seeded with multipotent precursor cells were hypothesized to heal critically sized bone de...
Obtaining an efficient, uniform and reproducible cell seeding of porous tubular scaffolds constitute...
Cell seeding is challenging in the case of additively manufactured 3-dimensional scaffolds, as the o...
Cell seeding on 3D scaffolds is a very delicate step in tissue engineering applications, influencing...
The use of filling biomaterials or tissue-engineered large bone implant-coupling biocompatible mater...