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Cell-mediated BMP-2 liberation promotes bone formation in a mechanically unstable implant environment.

机译:细胞介导的BMP-2释放在机械不稳定的植入物环境中促进骨骼形成。

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摘要

The flexible alloplastic materials that are used in bone-reconstruction surgery lack the mechanical stability that is necessary for sustained bone formation, even if this process is promoted by the application of an osteogenic agent, such as BMP-2. We hypothesize that if BMP-2 is delivered gradually, in a cell-mediated manner, to the surgical site, then the scaffolding material's lack of mechanical stability becomes a matter of indifference. Flexible discs of Ethisorb were functionalized with BMP-2, which was either adsorbed directly onto the material (rapid release kinetics) or incorporated into a calcium-phosphate coating (slow release kinetics). Unstabilized and titanium-plate-stabilized samples were implanted subcutaneously in rats and retrieved up to 14 days later for a histomorphometric analysis of bone and cartilage volumes. On day 14, the bone volume associated with titanium-plate-stabilized discs bearing an adsorbed depot of BMP-2 was 10-fold higher than that associated with their mechanically unstabilized counterparts. The bone volume associated with discs bearing a coating-incorporated depot of BMP-2 was similar in the mechanically unstabilized and titanium-plate-stabilized groups, and comparable to that associated with the titanium-plate-stabilized discs bearing an adsorbed depot of BMP-2. Hence, if an osteogenic agent is delivered in a cell-mediated manner (via coating degradation), ossification can be promoted even within a mechanically unstable environment.
机译:用于骨重建手术的柔性同种异体材料缺乏持续骨形成所必需的机械稳定性,即使此过程是通过应用成骨剂(例如BMP-2)促进的。我们假设,如果BMP-2以细胞介导的方式逐渐递送至手术部位,则支架材料缺乏机械稳定性将变得无关紧要。 Ethisorb的柔性圆盘用BMP-2功能化,该BMP-2直接吸附到材料上(快速释放动力学)或掺入磷酸钙涂层中(缓慢释放动力学)。将不稳定和钛板稳定的样品皮下植入大鼠体内,并在长达14天后取回,以进行骨和软骨体积的组织形态分析。在第14天,与带有BMP-2吸附储库的钛板稳定椎间盘相关的骨量比与其机械不稳定的对应物相关的骨量高10倍。在机械不稳定的和钛板稳定的组中,与带有BMP-2涂层结合贮库的椎间盘相关的骨体积相似,并且与与具有BMP-2的吸附库的钛板稳定的椎间盘相关联的骨体积相似。 2。因此,如果成骨剂以细胞介导的方式(通过涂层降解)被递送,则即使在机械不稳定的环境中也可以促进骨化。

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