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血管内皮生长因子抗体对磨损颗粒诱导的骨溶解的抑制作用

[Inhibitory effects of vascular endothelial growth factor antibody on wear particle-induced osteolysis].

作者信息

Dai Min, Zhong Yanchun, Zong Ling, Yang Xiaogang, Cheng Ming, Yang Kanghua

机构信息

Department of Orthopedics, the First Affiliated Hospital of Nanchang University, Nanchang Jiangxi, 330006, P.R.China.

出版信息

Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 2012 Jun;26(6):647-51.

Abstract

OBJECTIVE

To observe the effect of local injection of vascular endothelial growth factor (VEGF) and VEGF antibody on the wear particle-induced osteolysis in the mouse air pouch model and to investigate the role of VEGF in the process of aseptic loosening of prosthesis.

METHODS

The stem of metal hip prosthesis was obtained from the revision surgery. Metallic wear particles were made by vacuum ball milling. Wear particles suspension was prepared into the concentration of 10 mg/mL with PBS. Fifty female Kunming mice (aged 8-10 weeks, weighing about 25 g) were selected. Of 50 mice, 10 were used as the donors of bone graft, the other 40 were equally divided into control group (group A), particle group (group B), VEGF group (group C), and VEGF inhibited group (group D). Air pouches were made on the back of 40 mice by injecting sterile air subcutaneously. At 8th day, a graft of calvaria from the donor mice was implanted in air pouch. In groups B, C, and D, 0.5 mL wear particles suspension was injected into the air pouches, and in group A, 0.5 mL PBS was injected. Once a day at 6th and 7th days during the air pouch preparation and one time every two days after bone implantation, 0.2 mL recombinant human VEGF (rhVEGF) and VEGF antibody (Bevacizumab) were injected into the air pouches in groups C and D, respectively. In group A and group B, 0.2 mL saline was injected. Pouch tissues and bone were harvested at 2 weeks after bone implantation for HE staining, real-time fluorescent quantitative PCR and ELISA analyses.

RESULTS

All mice survived to the end of experiment. The gross observation showed that there were mild redness, swelling, and less neovascularization in air pouches in group A. There were obvious redness, swelling, and more exudative and neovascularization in groups B, C, and D, most obvious in group C, the next in group B, then in group D. The histological and molecular biological analysis showed that inflammatory responses and osteolysis were obvious in group B and the pouch membrane thickness, the cell density, transforming growth factor alpha, interleukin 1beta, and VEGF were significantly higher than those in group A (P < 0.05). The inflammatory responses and osteolysis were most obvious in group C and the above-mentioned indexes were significantly higher than those in group B (P < 0.05). There were some inflammatory responses and osteolysis in group D, but the indexes were significantly lower than those in group B (P < 0.05) and were significantly higher than those in group A (P < 0.05).

CONCLUSION

VEGF can promote inflammatory responses and osteolysis in aseptic loosening of prosthesis. VEGF antibody can effectively inhibit wear particle-induced osteolysis.

摘要

目的

观察局部注射血管内皮生长因子(VEGF)及VEGF抗体对小鼠气袋模型中磨损颗粒诱导的骨溶解的影响,并探讨VEGF在假体无菌性松动过程中的作用。

方法

金属髋关节假体柄取自翻修手术。通过真空球磨制备金属磨损颗粒。用磷酸盐缓冲液(PBS)将磨损颗粒悬液配制成浓度为10 mg/mL。选取50只雌性昆明小鼠(8 - 10周龄,体重约25 g)。50只小鼠中,10只作为骨移植供体,另外40只平均分为对照组(A组)、颗粒组(B组)、VEGF组(C组)和VEGF抑制组(D组)。对40只小鼠背部皮下注射无菌空气制成气袋。第8天,将供体小鼠的颅骨移植到气袋中。B、C、D组气袋内注射0.5 mL磨损颗粒悬液,A组注射0.5 mL PBS。在制备气袋的第6天和第7天每天1次,骨植入后每2天1次,分别向C组和气袋内注射0.2 mL重组人VEGF(rhVEGF),向D组气袋内注射VEGF抗体(贝伐单抗)。A组和B组注射0.2 mL生理盐水。骨植入后2周收集气袋组织和骨进行苏木精 - 伊红(HE)染色、实时荧光定量聚合酶链反应(PCR)和酶联免疫吸附测定(ELISA)分析。

结果

所有小鼠均存活至实验结束。大体观察显示,A组气袋有轻度发红、肿胀,新生血管较少。B、C、D组有明显发红、肿胀,渗出和新生血管较多,C组最明显,其次是B组,然后是D组。组织学和分子生物学分析显示,B组炎症反应和骨溶解明显,气袋膜厚度、细胞密度、转化生长因子α、白细胞介素1β和VEGF均显著高于A组(P < 0.05)。C组炎症反应和骨溶解最明显,上述指标显著高于B组(P < 0.05)。D组有一些炎症反应和骨溶解,但指标显著低于B组(P < 0.05)且显著高于A组(P < 0.05)。

结论

VEGF可促进假体无菌性松动中的炎症反应和骨溶解。VEGF抗体可有效抑制磨损颗粒诱导的骨溶解。

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