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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Repair of segmental defects in rabbit humeri with titanium fiber mesh cylinders containing recombinant human bone morphogenetic protein-2 (rhBMP-2) and a synthetic polymer
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Repair of segmental defects in rabbit humeri with titanium fiber mesh cylinders containing recombinant human bone morphogenetic protein-2 (rhBMP-2) and a synthetic polymer

机译:用含重组人骨形态发生蛋白2(rhBMP-2)和合成聚合物的钛纤维网状圆柱修复兔肱骨节段性缺损

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摘要

To develop a new technology that enhances the regeneration potential of bone and the repair of large intercalated defects in long bone, recombinant human bone morphogenetic protein-2 (BMP-2; 20 mug or 40 mug) was mixed in a polymer gel (poly-lactic acid-polyethyleneglycol block copolymer; PLA-PEG; 200 mg) and incorporated into titanium fiber-mesh cylinders. Three 5-mm cylinders were placed end-to-end to fill a 15-mm defect created in the humeri of adult rabbits and were stabilized by an intramedullary rod. In controls, the titanium fiber-mesh cylinders were combined with PLA-PEG in the absence of BMP. Six weeks after implantation, new bone had formed on the surface of the implant and had bridged the defect. All of the defects (5/5) treated by cylinders containing 120 mug (40 mug X 3) of BMP were repaired completely. New bone formation was also found inside the pores of the cylinders. The defect was not repaired in the control animals. These results demonstrate that these new composite implants fabricated by combining rhBMP, synthetic degradable polymers and compatible biomaterials enhance the regeneration potential of bone. Thus, it is possible that large skeletal defects can be repaired using this prosthesis in lieu of autogenous bone graft.
机译:为了开发增强骨骼再生潜力和修复长骨中较大的插层缺损的新技术,将重组人骨形态发生蛋白2(BMP-2; 20杯或40杯)混合在聚合物凝胶中(聚乳酸-聚乙二醇嵌段共聚物; PLA-PEG; 200 mg),并掺入钛纤维网筒中。将三个5毫米圆柱体端对端放置,以填补成年兔子肱骨中产生的15毫米缺损,并通过髓内棒使其稳定。在对照中,在不存在BMP的情况下,将钛纤维网筒与PLA-PEG结合。植入六周后,新骨在植入物表面形成并弥合了缺损。用装有120杯(40杯X 3)的BMP的钢瓶处理的所有缺陷(5/5)都得到了完全修复。在圆柱孔内还发​​现了新的骨骼形成。该缺陷在对照动物中未得到修复。这些结果表明,这些新的复合植入物是通过将rhBMP,合成可降解聚合物和相容的生物材料结合在一起制成的,可以增强骨骼的再生潜力。因此,有可能使用该假体代替自体骨移植物修复大的骨骼缺损。

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