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Osteoconductive properties of poly(96L/4D-lactide)/beta-tricalcium phosphate in long term animal model

机译:聚(96L / 4D-丙交酯)/β-磷酸三钙在长期动物模型中的骨传导特性

摘要

The objective of this study was to determine the effect of calcium phosphate mineral content on the bone in-growth at the expense of composite of co-polylactide polymer charged with 2 different ratios of β-TCP granules (10 and 24 w-% of β-TCP). The evaluation was realized in a long term rabbit bone model. After 24, 48 and 76 weeks, the implants were examined by micro CT, scanning electron microscopy (SEM) using backscattered electron (BSE) and light microscopy (polarized and blue light microscopy). No foreign body reaction was detected during the 76 weeks follow-up in any of the test samples. Polymer hydrolysis began at approximately 24 weeks, by 76 weeks, the pure polymer implant had begun to release P(96L/4D)LA particles and show signs of peripheral localized bone resorption. A decrease in the amount of CaP was noticed between 24 and 76 weeks in both 10 wt-% and 24 wt-% β-TCP/P(96L/4D)LA composites. The study showed that the highest bone in-growth was with 24 wt-% β-TCP/P(96L/4D)LA composite. Bone in-growth and mineralization were evident for the composites associated with specific peripheral bone architecture. Fluorescent labelling demonstrated high bone in-growth and remodeling at the interface, while for pure co-polymer no bone remodeling or bone activity was maintained after 48 weeks. The study demonstrated the positive effect of calcium phosphate content into P(96L/4D)LA. This kind of composite is a suitable resorbable osteoconductive matrix, which provides long term stability required for ligament fixation device.
机译:这项研究的目的是确定磷酸钙矿物质含量对骨骼生长的影响,但要以共聚丙交酯聚合物的复合物为代价,该复合物以2种不同比例的β-TCP颗粒(β的10和24 w-% -TCP)。该评估是在长期兔骨模型中实现的。 24、48和76周后,通过微型CT,使用背向散射电子(BSE)的扫描电子显微镜(SEM)和光学显微镜(偏光和蓝光显微镜)检查植入物。在76周的随访中,任何测试样品中均未检测到异物反应。聚合物水解大约在24周开始,到76周,纯聚合物植入物开始释放P(96L / 4D)LA颗粒,并显示出周围局部骨吸收的迹象。在10wt%和24wt%β-TCP/ P(96L / 4D)LA复合材料中,CaP的量在24至76周之间有所减少。研究表明,最大的骨向内生长是使用​​24 wt%的β-TCP/ P(96L / 4D)LA复合材料。与特定外周骨结构相关的复合材料的骨生长和矿化作用明显。荧光标记显示出高的骨向内生长和界面处的重塑,而对于纯共聚物,在48周后没有保持骨重塑或骨活性。该研究表明磷酸钙含量对P(96L / 4D)LA具有积极作用。这种复合材料是合适的可吸收骨传导性基质,可提供韧带固定装置所需的长期稳定性。

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