Zhu Weimin, Wang Daping, Zhang Xiaojun, Lu Wei, Han Yun, Ou Yangkan, Zhou Ke, Fen Wenzhe, Liu Jianquan, Peng Liangquan, He Chunlei, Zeng Yanjun
Department of Sports Medicine, Shenzhen Second People's Hospital, Shenzhen, China.
Artif Cells Blood Substit Immobil Biotechnol. 2010 May;38(3):150-6. doi: 10.3109/10731191003712756.
To investigate the repairing ability of nano-hydroxyapatite/recombinant human bone morphogenetic protein-2 (Nano-HA/rhBMP-2) composite artificial bone for bone defect and to provide evidence for its application in clinical repair of bone defect.
The animal model of bone defect was made on unilateral radius of 90 New Zealand white rabbits, which were randomly divided into experimental group (group A, bone defect was repaired with Nano-HA/rhBMP-2 composite artificial bone), control group (group B, bone defect was repaired with Nano-HA artificial bone), and blank group (group C, bone defect was unrepaired). The repairing ability for bone defect was evaluated by gross observation, X-ray examination, scanning electron microscope, radionuclide bone imaging and biomechanical analysis at 4(th), 8(th), and 12th week postoperatively.
Both Nano-HA/rhBMP-2 composite artificial bone and Nano-HA artificial bone could stimulate new bone formation, but the former could stimulate more new bone formation and had better repairing ability for bone defect than that of the latter, with statistically significant difference (P <0.05).
Nano-HA/rhBMP-2 composite artificial bone has good repairing ability for bone defect and it is hopeful to become an ideal repairing material for bone defect.
探讨纳米羟基磷灰石/重组人骨形态发生蛋白-2(Nano-HA/rhBMP-2)复合人工骨对骨缺损的修复能力,为其在骨缺损临床修复中的应用提供依据。
选取90只新西兰白兔,于单侧桡骨制作骨缺损动物模型,随机分为实验组(A组,采用Nano-HA/rhBMP-2复合人工骨修复骨缺损)、对照组(B组,采用Nano-HA人工骨修复骨缺损)和空白组(C组,骨缺损不做修复)。于术后第4、8、12周通过大体观察、X线检查、扫描电子显微镜、放射性核素骨显像及生物力学分析评估骨缺损的修复能力。
Nano-HA/rhBMP-2复合人工骨和Nano-HA人工骨均能刺激新骨形成,但前者刺激形成的新骨更多,对骨缺损的修复能力优于后者,差异有统计学意义(P<0.05)。
Nano-HA/rhBMP-2复合人工骨对骨缺损具有良好的修复能力,有望成为理想的骨缺损修复材料。