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首页> 外文期刊>Biomedical materials >Generation of an rhBMP-2-loaded beta-tricalcium phosphate/hydrogel composite and evaluation of its efficacy on peri-implant bone formation
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Generation of an rhBMP-2-loaded beta-tricalcium phosphate/hydrogel composite and evaluation of its efficacy on peri-implant bone formation

机译:负载rhBMP-2的β-磷酸三钙/水凝胶复合材料的产生及其对种植体周围骨形成的功效的评估

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Dental implant insertion on a site with low bone quality or bone defect should be preceded by a bone graft or artificial bone graft insertion to heal the defect. We generated a betatricalcium phosphate (β-TCP) and poloxamer 407-based hydrogel composite and penetration of the β-TCP/hydrogel composite into the peri-implant area of bone was evaluated by porous bone block experiments. The maximum penetration depth for porous bone blocks and dense bone blocks were 524 μm and 464 μm, respectively. We report the in-vivo performance of a composite of β-TCP/hydrogel composite as a carrier of recombinant human bone morphogenetic protein (rhBMP-2), implanted into a rabbit tibial defect model. Three holes drilled into each tibia of eight male rabbits were (1) grafted with dental implant fixtures; (2) filled with β-TCP/hydrogel composite (containing 5 μg of rhBMP-2), followed by grafting of the dental implant fixtures. Four weeks later, bone-implant contact ratio and peri-implant bone formation were analyzed by radiography, micro-CT and histology of undecalcified specimens. The micro-CT results showed a significantly higher level of trabecular thickness and new bone and peri-implant new bone formation in the experimental treatment compared to the control treatment. Histomorphometry revealed a significantly higher bone-implant contact ratio and peri-implant bone formation with the experimental treatment. The use of β-TCP/poloxamer 407 hydrogel composite as a carrier of rhBMP-2 significantly promoted new bone formation around the dental implant fixture and it also improved the quality of the new bone formed in the tibial marrow space.
机译:在低骨质或骨缺损部位植入牙科植入物之前,应先植骨或人工植骨,以修复缺损。我们生成了β-磷酸三钙(β-TCP)和泊洛沙姆407基水凝胶复合材料,并通过多孔骨阻滞实验评估了β-TCP/水凝胶复合材料对骨周围植入区域的渗透性。多孔骨块和致密骨块的最大穿透深度分别为524μm和464μm。我们报告的β-TCP/水凝胶复合材料作为重组人骨形态发生蛋白(rhBMP-2)的载体植入体内的性能,植入到兔胫骨缺损模型中。在八只雄性兔子的每个胫骨上钻三个孔(1)用牙科植入物固定器移植; (2)填充β-TCP/水凝胶复合材料(含5μgrhBMP-2),然后移植牙种植体。四周后,通过射线照相,显微CT和未脱钙标本的组织学分析了骨-植入物的接触率和植入物周围的骨形成。显微CT结果显示,与对照治疗相比,实验治疗中的小梁厚度,新骨和种植体周围新骨形成的水平明显更高。组织形态计量学显示,实验处理显着提高了骨-植入物的接触率和植入物周围的骨形成。使用β-TCP/泊洛沙姆407水凝胶复合材料作为rhBMP-2的载体可显着促进牙齿种植体固定装置周围新骨的形成,并且还改善了在胫骨骨髓腔中形成的新骨的质量。

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