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The Ca concentration of compact femoral bone tissue is expected to be relatively constant throughout life.
These three-dimensional porous titanium-apatite hybrid scaffolds are expected to find application in bone tissue regeneration.
With the excellent biocompatibility and bioactivity of apatite coating layer, this highly porous biodegradable organic/inorganic composite is expected to be desirable for bone tissue engineering.
We did not observe any cases with greater than expected inflammation in the healing bone tissue or with a severity suggestive of osteomyelitis or peri-prosthetic infection.
Herein, the novel materials are expected to have potential application for bone tissue engineering.
With the improvement in knowledge and techniques of bone-targeted nanofibrous matrices, bone tissue engineering is expected to be realized in the near future.
The skeletal organ may undergo mineral loss with increasing age for various reasons, but the Ca concentration in mg g−1 in the remaining compact bone tissue is not expected to change.
Bone tissue engineering therefore is expected to be a more effective way in treating bone diseases.
Therefore, this composite is expected to be a potential scaffold for bone tissue engineering applications.
This new type of CNTs/HA scaffolds is expected to have a promising applications in bone tissue engineering, targeted drug delivery system and other biomedical fields.
As the mineralized electrospun scaffold has a similar structure as the natural bone, it is expected to be a potential cell carrier in bone tissue engineering.
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