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Andronescu, E. et al. Synthesis and characterization of collagen/hydroxyapatite: magnetite composite material for bone cancer treatment.
Porous calcium silicates (CaSiO3, WT) are regarded as a potential bioactive material for bone tissue engineering.
Therefore, IBRC may be a promising degradable material for bone repair and bone tissue engineering.
Incorporating strontium phosphate into nanofibers provides a potential material for bone tissue engineering.
We hypothesized that TiO2 doped calcium borosilicate glasses are most cytocompatible material for bone implants.
The composites were expected to be useful as a scaffold material for bone tissue engineering.
The present work describes the manufacturing process of biodegradable porous material for bone tissue engineering application.
Porous TiO2 ceramic has attracted considerable research interest as a scaffold material for bone tissue engineering.
In a recent study this polymer was shown to be a promising material for bone regeneration.
Thus, the developed scaffolds have potential to be used as a bone substitute material for bone tissue engineering application.
This strontium-doped borate-based bioactive glass could be a potential scaffold material for bone tissue engineering.
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