Porous titanium is a kind of promising material for bone substitution, while its bio-inert property results in demand of modifications to improve the osteointegration capacity. In this study, gelatin (Gel) and nano-hydroxyapatite (nHA) were used to construct 3D micro-scaffolds in the pores of porous titanium in the ratios of Gel:nHA = 1:0, Gel:nHA = 1:1, and Gel:nHA = 1:3, respectively. Cell attachment and proliferation, and gene and protein expression levels of osteogenic markers were evaluated in MC3T3-E1 cells, followed by bone regeneration assessment in a rabbit radius defect model. All hybrid scaffolds with different composition ratio were found to have significant promotional effects in cell adhesion, proliferation and differentiation...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
Extracellular Vesicles (EVs) are considered promising nanoscale therapeutics for bone regeneration. ...
Extracellular Vesicles (EVs) are considered promising nanoscale therapeutics for bone regeneration. ...
Porous titanium is a kind of promising material for bone substitution, while its bio-inert property ...
Titanium-based scaffolds are widely used implant materials for bone defect treatment. However, the u...
Porous titanium scaffolds are a promising class of biomaterials for grafting large bone defects, bec...
Several strategies have been used to promote bone repair, with many failing due to the lack of osteo...
Several strategies have been used to promote bone repair, with many failing due to the lack of osteo...
Several strategies have been used to promote bone repair, with many failing due to the lack of osteo...
Several strategies have been used to promote bone repair, with many failing due to the lack of osteo...
The demand of new strategies for the induction of bone regeneration is continuously increasing. Biom...
Bone cell response to 3D bioinspired scaffolds was tested on osteoblast culture supernatants and by ...
Bone cell response to 3D bioinspired scaffolds was tested on osteoblast culture supernatants and by ...
It is desirable to combine load-bearing and bone regeneration capabilities in a single bone tissue e...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
Extracellular Vesicles (EVs) are considered promising nanoscale therapeutics for bone regeneration. ...
Extracellular Vesicles (EVs) are considered promising nanoscale therapeutics for bone regeneration. ...
Porous titanium is a kind of promising material for bone substitution, while its bio-inert property ...
Titanium-based scaffolds are widely used implant materials for bone defect treatment. However, the u...
Porous titanium scaffolds are a promising class of biomaterials for grafting large bone defects, bec...
Several strategies have been used to promote bone repair, with many failing due to the lack of osteo...
Several strategies have been used to promote bone repair, with many failing due to the lack of osteo...
Several strategies have been used to promote bone repair, with many failing due to the lack of osteo...
Several strategies have been used to promote bone repair, with many failing due to the lack of osteo...
The demand of new strategies for the induction of bone regeneration is continuously increasing. Biom...
Bone cell response to 3D bioinspired scaffolds was tested on osteoblast culture supernatants and by ...
Bone cell response to 3D bioinspired scaffolds was tested on osteoblast culture supernatants and by ...
It is desirable to combine load-bearing and bone regeneration capabilities in a single bone tissue e...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
Extracellular Vesicles (EVs) are considered promising nanoscale therapeutics for bone regeneration. ...
Extracellular Vesicles (EVs) are considered promising nanoscale therapeutics for bone regeneration. ...