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首页> 外文期刊>Bosnian Journal of Basic Medical Sciences >Injectable calcium phosphate cement and fibrin sealant recombined human bone morphogenetic protein-2 composite in vertebroplasty: an animal study.
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Injectable calcium phosphate cement and fibrin sealant recombined human bone morphogenetic protein-2 composite in vertebroplasty: an animal study.

机译:注射成型的磷酸钙水泥和纤维蛋白封闭剂在椎体成形术中重组了人骨形态发生蛋白2复合物:一项动物研究。

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摘要

Polymethylmethacrylate (PMMA) is currently the most commonly-used material, but it may induce adjacent vertebral fracture due to low degradation and high strength. Our study evaluated the feasibility of injectable calcium phosphate cement (ICPC) and fibrin sealant (FS) as an injectable compound carrier of human bone morphogenetic protein-2 (rhBMP-2) in New Zealand rabbits for vertebroplasty. Results showed ICPC/FS/rhBMP-2 composites induced alkaline phosphatase most effectively at 2 and 4 weeks after implantation. Histological examination confirmed that new bone and vessels developed at 4 weeks in the ICPC/FS/rhBMP-2 group. At 8 weeks, parts of the ICPC/FS/rhBMP-2 cement degraded with mature bone tissues and neovascularization. New bone was observed by MicroCT to form early and massively, and the ossification was almost synchronous with the material degradation. In the PMMA Group, however, no new bone formation or material degradation was found. The stiffness and tension of vertebral bodies implanted with ICPC/FS/rhBMP-2 were weaker than those of normal vertebral bodies as well as vertebral bodies implanted with PMMA at 4 weeks (p0.05), while they were significantly lower, compared with vertebral bodies implanted with PMMA (p<0.05). It is concluded that, with good characteristics of osteoinductivity, the bone substitution is synchronous with material degradation.
机译:聚甲基丙烯酸甲酯(PMMA)是目前最常用的材料,但由于降解率低和强度高,可能会引起相邻的椎骨骨折。我们的研究评估了可注射磷酸钙水泥(ICPC)和血纤蛋白封闭剂(FS)作为新西兰骨兔椎骨成形术中人骨形态发生蛋白2(rhBMP-2)的可注射复合载体的可行性。结果表明,ICPC / FS / rhBMP-2复合材料在植入后2和4周最有效地诱导了碱性磷酸酶。组织学检查证实,ICPC / FS / rhBMP-2组在第4周出现了新的骨骼和血管。在第8周时,部分ICPC / FS / rhBMP-2水泥随成熟的骨组织和新血管形成而降解。 MicroCT观察到新骨形成早期且大量,并且骨化与材料降解几乎同步。但是,在PMMA组中,未发现新的骨形成或材料降解。植入ICPC / FS / rhBMP-2的椎体的刚度和张力比正常椎体和植入PMMA的椎体在4周时要弱(p0.05),但与椎体相比明显降低植入PMMA的尸体(p <0.05)。结论是,具有良好的骨诱导特性,骨替代与材料降解同步。

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