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负载骨形态发生蛋白并涂覆磷酸钙的钛网中的异位骨形成。

Ectopic bone formation in titanium mesh loaded with bone morphogenetic protein and coated with calcium phosphate.

作者信息

Vehof J W, Mahmood J, Takita H, van't Hof M A, Kuboki Y, Spauwen P H, Jansen J A

机构信息

Departments of Biomaterials and Preventive and Restorative Dentistry, College of Dental Science, University Medical Center Nijmegen, The Netherlands.

出版信息

Plast Reconstr Surg. 2001 Aug;108(2):434-43. doi: 10.1097/00006534-200108000-00024.

Abstract

The osteoinductive properties of porous titanium fiber mesh, with or without a calcium phosphate coating and loaded with recombinant human bone morphogenic protein-2 (rhBMP-2) or rhBMP-2 and native bovine BMP (S-300) were investigated in a rat ectopic assay model. A total of 112 calcium phosphate-coated and 112 noncoated porous titanium implants, either loaded with rhBMP-2 and S-300 or loaded with rhBMP-2 alone, were subcutaneously placed in 56 Wistar-King rats. The rats were killed 5, 10, 20, and 40 days postoperatively, and the implants were retrieved. Histologic analysis demonstrated that all growth factor and carrier combinations induced ectopic cartilage and bone formation at 5 and 10 days, respectively. At 20 days, bone formation increased and was characterized by trabecular bone and bone marrow-like tissue. At 40 days, more lamellar bone and hemopoietic bone marrow-like tissue were present. At both times, more bone had been formed in calcium phosphate-coated implants than in noncoated samples. Further, in rhBMP-2 and S-300-loaded specimens, bone formation was higher than in rhBMP-2 only-loaded specimens. In rhBMP-2 only-loaded specimens, bone formation was mainly localized inside the mesh material, whereas in specimens loaded with both rhBMP-2 and S-300, the bone was localized inside and surrounding the titanium mesh. The histological findings were confirmed by calcium content and alkaline phosphatase activity measurements. In addition, all specimens showed osteocalcin expression as early as 5 days postoperatively. Our results show that the combination of titanium mesh with BMPs can induce ectopic bone formation and that this bone formation seems to be similar to "enchondral" ossification. In addition, a thin calcium phosphate coating can have a beneficial effect on the bone-inducing properties of a scaffold material. Finally, rhBMP-2 and native BMP act synergistically in ectopic bone induction.

摘要

在大鼠异位试验模型中,研究了有或无磷酸钙涂层、负载重组人骨形态发生蛋白-2(rhBMP-2)或rhBMP-2与天然牛骨形态发生蛋白(S-300)的多孔钛纤维网的骨诱导特性。将总共112个涂有磷酸钙和112个未涂覆的多孔钛植入物,分别负载rhBMP-2和S-300或仅负载rhBMP-2,皮下植入56只Wistar-King大鼠体内。术后5、10、20和40天处死大鼠,取出植入物。组织学分析表明,所有生长因子和载体组合分别在5天和10天时诱导异位软骨和骨形成。在20天时,骨形成增加,其特征为小梁骨和骨髓样组织。在40天时,出现更多的板层骨和造血骨髓样组织。在这两个时间点,涂有磷酸钙的植入物中形成的骨都比未涂覆的样本多。此外,在负载rhBMP-2和S-300的标本中,骨形成高于仅负载rhBMP-2的标本。在仅负载rhBMP-2的标本中,骨形成主要位于网孔材料内部,而在同时负载rhBMP-2和S-300的标本中,骨位于钛网内部和周围。通过钙含量和碱性磷酸酶活性测量证实了组织学结果。此外,所有标本在术后5天就显示出骨钙素表达。我们的结果表明,钛网与骨形态发生蛋白的组合可诱导异位骨形成,并且这种骨形成似乎类似于“软骨内”骨化。此外薄磷酸钙涂层可对支架材料的骨诱导特性产生有益影响。最后,rhBMP-2和天然骨形态发生蛋白在异位骨诱导中起协同作用。

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