Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal role in bone tissue engineering. Recently, we synthesized an aliphatic polyurethane (PU) scaffold via a foaming method using non-toxic components. Through this procedure a uniform interconnected porous structure was created. Furthermore, hydroxyapatite (HA) particles were introduced into this process to increase the bioactivity of the PU matrix. To evaluate the biological performances of these PU-based scaffolds, their influence on in vitro cellular behavior and in vivo bone forming capacity of the engineered cell-scaffold constructs was investigated in this study. A simulated body fluid test demonstrated that the incorporation of 40 wt % HA ...
AbstractPolyurethane (PU) is a promising polymer to support bone–matrix producing cells due to its d...
Bone graft substitute is a continuously developing field in orthopedics. When compared to tradition ...
Abstract Polyurethane (PU) is a promising polymer to support bone–matrix producing cells due to its ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Polyurethane (PU) is a promising polymer to support bone-matrix producing cells due to its durabilit...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
AbstractPolyurethane (PU) is a promising polymer to support bone–matrix producing cells due to its d...
Bone graft substitute is a continuously developing field in orthopedics. When compared to tradition ...
Abstract Polyurethane (PU) is a promising polymer to support bone–matrix producing cells due to its ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Polyurethane (PU) is a promising polymer to support bone-matrix producing cells due to its durabilit...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
AbstractPolyurethane (PU) is a promising polymer to support bone–matrix producing cells due to its d...
Bone graft substitute is a continuously developing field in orthopedics. When compared to tradition ...
Abstract Polyurethane (PU) is a promising polymer to support bone–matrix producing cells due to its ...