A commonly applied strategy in the field of tissue engineering (TE) is the use of temporary three-dimensional scaffolds for supporting and guiding tissue formation in various in vitro strategies and in vivo regeneration approaches. The interactions of these scaffolds with highly sensitive bioentities such as living cells and tissues primarily occur through the material surface. Hence, surface chemistry and topological features have principal roles in coordinating biological events at the molecular, cellular and tissue levels on timescales ranging from seconds to weeks. However, tailoring the surface properties of scaffolds with a complex shape and architecture remains a challenge in materials science. Commonly applied wet chemical tr...
One of the treatments for recurrent or complicated osteomyelitis is by local antibiotherapy mediated...
The improvement of scaffold performances as cell carriers in a tissue implant is still a challenge i...
One promising strategy to reconstruct bone defects relies on 3D printed porous structures. In spite ...
A commonly applied strategy in the field of tissue engineering (TE) is the use of temporary three-di...
Plasma and chemical induced graft polymerization of acrylic monomers on starch-based biomaterials h...
In regenerate tissue in an in vitro environment, scientists usually need to create a biomimic cellul...
This study points out how the plasma modification of PCL porous scaffolds, produced by Solvent Casti...
Synthetic biodegradable polymers are commonly used as scaffolds for tissue engineering despite their...
Various types of synthetic polyesters have been developed as biomaterials for tissue engineering. Th...
In design of a tissue engineering scaffold, surface physicochemistry is one of the most important is...
Cellular adhesion and proliferation inside three-dimensional synthetic scaffolds represent a major c...
A primary research focus in tissue engineering addresses the factors that drive cell growth in scaf...
Tissue engineering is a rapidly emerging aiming at overcoming the limitations of conventional transp...
One promising strategy to reconstruct bone defects relies on 3D printed porous structures. In spite ...
Polymers are widely used in bioengineering for a wide range of applications, including substrates fo...
One of the treatments for recurrent or complicated osteomyelitis is by local antibiotherapy mediated...
The improvement of scaffold performances as cell carriers in a tissue implant is still a challenge i...
One promising strategy to reconstruct bone defects relies on 3D printed porous structures. In spite ...
A commonly applied strategy in the field of tissue engineering (TE) is the use of temporary three-di...
Plasma and chemical induced graft polymerization of acrylic monomers on starch-based biomaterials h...
In regenerate tissue in an in vitro environment, scientists usually need to create a biomimic cellul...
This study points out how the plasma modification of PCL porous scaffolds, produced by Solvent Casti...
Synthetic biodegradable polymers are commonly used as scaffolds for tissue engineering despite their...
Various types of synthetic polyesters have been developed as biomaterials for tissue engineering. Th...
In design of a tissue engineering scaffold, surface physicochemistry is one of the most important is...
Cellular adhesion and proliferation inside three-dimensional synthetic scaffolds represent a major c...
A primary research focus in tissue engineering addresses the factors that drive cell growth in scaf...
Tissue engineering is a rapidly emerging aiming at overcoming the limitations of conventional transp...
One promising strategy to reconstruct bone defects relies on 3D printed porous structures. In spite ...
Polymers are widely used in bioengineering for a wide range of applications, including substrates fo...
One of the treatments for recurrent or complicated osteomyelitis is by local antibiotherapy mediated...
The improvement of scaffold performances as cell carriers in a tissue implant is still a challenge i...
One promising strategy to reconstruct bone defects relies on 3D printed porous structures. In spite ...