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Application of mechanically reinforced 45S5 Bioglass®-derived bioactive glass-ceramic porous scaffolds for bone defect repairing in rabbits / 浙江大学学报·医学版
Journal of Zhejiang University. Medical sciences ; (6): 600-608, 2017.
Article in Chinese | WPRIM | ID: wpr-819075
ABSTRACT

Objective:

To evaluate the application of mechanically reinforced 45S5 Bioglass®-derived glass ceramic porous scaffolds for repair of bone defect in rabbits.

Methods:

The BG-ZnB powders were added into the 45S5 Bioglass® powder/paraffin microsphere mixtures and were sintered at 900℃ to obtain porous scaffolds with highly bioactive BG-ZnB of 0%, 2% or 4% of mass fraction (denoted as 45S5/ZnB0, 45S5/ZnB2, 45S5/ZnB4). Phase composition, porosity and compression properties of three kinds of as-sintered scaffolds were characterized by X-ray analysis, mercury porosimetry, and mechanical test. Thirty-six male New Zealand rabbits with critical-sized femoral bone defects were randomly divided into three groups (45S5/ZnB0 group, 45S5/ZnB2 group and 45S5/ZnB4 group, 12 for each), and were implanted with three kinds of porous scaffolds respectively. X-ray, micro-CT three-dimensional reconstruction and tissue slice staining were used to detected the efficiency of bone regeneration at 6 and 16 weeks after operation. The growth of newly formed bone was observed using HE, Masson staining and EnVision method.

Results:

Phase compositions of 45S5/ZnB2 and 45S5/ZnB4 were the same with 45S5/ZnB0, but the average pore size and porosity of the scaffolds were decreased with the increase of BG-ZnB content. 45S5/ZnB2 and 45S5/ZnB4 scaffolds exhibited higher compressive strength, osteogenesis and trabecular density than those of the 45S5/ZnB0 scaffold (all P

Conclusion:

Low-melt BG-ZnB-assisted sintering is a promising approach to improve the mechanical strength of 45S5 Bioglass®.
Subject(s)
Full text: Available Index: WPRIM (Western Pacific) Main subject: Physiology / Bone and Bones / Ceramics / Chemistry / Porosity / Tissue Scaffolds / Glass Limits: Animals Language: Chinese Journal: Journal of Zhejiang University. Medical sciences Year: 2017 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Main subject: Physiology / Bone and Bones / Ceramics / Chemistry / Porosity / Tissue Scaffolds / Glass Limits: Animals Language: Chinese Journal: Journal of Zhejiang University. Medical sciences Year: 2017 Type: Article