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In vivo erosion of orthopedic screws prepared from nacre (mother of pearl)

机译:从珍珠母制备的矫形螺钉的体内侵蚀

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摘要

BACKGROUND: Biodegradable biomaterials have been proposed to prepare orthopedic devices. Nacre is a natural aragonitic material made of calcium carbonate and is bioerodible.WORKING HYPOTHESIS: We postulated that nacre is biodegradable without provoking bone erosion and favors bone apposition.MATERIAL AND METHODS: We prepared orthopedic screws from nacre of the giant oyster Pinctada maxima. Threaded screws (3.5mm diameter) were implanted in 6 ewes in the upper tibial metaphysis (3 to 4 screws per animal). Their trajectory was transcortical and intramedullary to the opposite cortex. Animals were kept for 3months (n=2) and 6 months (n=4). They did not develop local inflammation. Before euthanasia, they received a double calcein labeling. Bone samples were analyzed by X-ray nanotomography and histology after embedding in poly(methyl methacrylate). The fractal dimension of the screw profiles (measured by the box-counting method) was used to quantify surface erosion.RESULTS: 3D nanotomography showed a gradual erosion of the threads, which was confirmed by a decreased fractal dimension. Histologically, multinucleated cells (non-osteoclastic appearance) were visible at the surface of the screws. No ruffled border was seen in these cells but they had extensions creeping in the organic matter between the aragonite tablets. Bone apposition was noted in the transcortical path of the screws with limited osteoconduction at the endosteum. Mineralization rate was increased in these zones composed of woven bone in contact with the nacre.DISCUSSION AND CONCLUSION: Screws prepared from nacre have the advantage of an in vivo resorbability by macrophage-derived cells and an osteoconductive apposition in contact with the material without triggering a local inflammatory reaction.
机译:背景:已经提出了可生物降解的生物材料来制备骨科器械。珍珠母是一种由碳酸钙制成的天然芦荟材料,具有生物蚀性。将螺钉(直径3.5mm)植入胫骨上干physi端的6根羊中(每只动物3至4个螺钉)。他们的轨迹是经皮层和髓内到相对的皮质。将动物饲养3个月(n = 2)和6个月(n = 4)。他们没有发生局部炎症。安乐死之前,他们获得了双重钙黄绿素标签。包埋在聚甲基丙烯酸甲酯中后,通过X射线断层扫描和组织学分析骨样品。结果:3D纳米断层扫描显示螺纹逐渐腐蚀,这由减小的分形尺寸所证实。组织学上,在螺钉表面可见多核细胞(无破骨细胞外观)。在这些细胞中没有看到皱纹的边界,但是它们在文石片之间的有机物中具有蠕变的延伸。注意到在骨皮质的骨皮质传导受限的螺钉的经皮路径中有骨并置。讨论和结论:由珍珠层制备的螺钉具有巨噬细胞衍生细胞在体内可吸收的优点,并且与材料接触时具有骨传导性,而不会触发纤维化,因此矿化率增加。局部炎症反应。

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