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磷酸钙骨水泥复合碱性成纤维细胞生长因子和血管内皮生长因子修复兔桡骨骨缺损的实验研究

[Experimental study of calcium phosphate cement mixed with bFGF and VEGF to repair bone defects in rabbit radius].

作者信息

Xie Qiu'en, He Aiyong, Song Kunxiu

机构信息

Department of Orthopaedics, Second Xiangya Hospital, Central South University, Changsha 410011, China.

出版信息

Zhong Nan Da Xue Xue Bao Yi Xue Ban. 2010 Jun;35(6):622-9. doi: 10.3969/j.issn.1672-7347.2010.06.014.

Abstract

OBJECTIVE

To explore the synergistic effect of basic fibroblast growth factor (bFGF) and vascular endothelial growth factor (VEGF) on the growth of bone tissue.

METHODS

A total of 36 rabbits were randomly divided into 4 groups with 9 rabbits (18 sides of the anterior limb) in each group, including group A,B,C, and D. For all rabbits 1.0 cm bone defects was created in both sides of the radius. These bone defect regions were implanted with corresponding composites: group A with calcium phosphate cement (CPC) only, group B with CPC/bFGF, group C with CPC/VEGF while group D with both bFGF and VEGF. At the 3rd, 6th, and 12th week after the operation, 6 specimens from each group were randomly selected. The effects were partly assessed by X-ray film examination, bone mineral density (BMD) measurements, biomechanical test and histological observation.

RESULTS

X-ray showed that at the 12th week the bone defects in group D were completely repaired with CPC generally degraded,whereas bone defects in group B and C were only basically repaired. BMD measurements showed that at the 12th week the BMD of group D was significantly higher than that of group B and C (P < 0.05). Biomechanical testing(at the 12th week) showed that the maximum bending load of group D was significantly higher than that of group B and C (P < 0.05). Histological observation indicated that at the 12th week, woven bone had become mature lamellar bone in group D. At the same time, the normal relation of cortical bone and marrow had resumed, and so had the normal structure of trabecula. However, the recanalization of bone marrow cavity could not be seen in group B and C.

CONCLUSION

These 3 kinds of composite: CPC/bFGF, CPC/VEGF and CPC/ bFGF+VEGF can promote the growth of bone tissue and speed up the repair of bone defects. The composite of CPC/bFGF+VEGF is better than the other two composites in promoting the growth of bone tissues, indicating that bFGF and VEGF have a synergistic effect on the growth of bone tissue.

摘要

目的

探讨碱性成纤维细胞生长因子(bFGF)与血管内皮生长因子(VEGF)对骨组织生长的协同作用。

方法

将36只兔随机分为4组,每组9只兔(前肢18侧),分别为A、B、C、D组。对所有兔双侧桡骨制造1.0 cm骨缺损。这些骨缺损区域植入相应复合材料:A组仅植入磷酸钙骨水泥(CPC),B组植入CPC/bFGF,C组植入CPC/VEGF,D组植入bFGF和VEGF。术后第3、6、12周,每组随机抽取6个标本。部分效果通过X线片检查、骨密度(BMD)测量、生物力学测试和组织学观察进行评估。

结果

X线显示,第12周时D组骨缺损完全修复,CPC基本降解,而B组和C组骨缺损仅基本修复。BMD测量显示,第12周时D组BMD显著高于B组和C组(P<0.05)。生物力学测试(第12周)显示,D组最大弯曲载荷显著高于B组和C组(P<0.05)。组织学观察表明,第12周时,D组编织骨已成熟为板层骨。同时,皮质骨与骨髓的正常关系恢复,小梁正常结构也恢复。然而,B组和C组未见骨髓腔再通。

结论

CPC/bFGF、CPC/VEGF和CPC/bFGF+VEGF这3种复合材料均可促进骨组织生长,加速骨缺损修复。CPC/bFGF+VEGF复合材料在促进骨组织生长方面优于其他两种复合材料,表明bFGF和VEGF对骨组织生长具有协同作用。

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