首页> 外文期刊>International journal of oral and maxillofacial surgery >Influence of surface modifications on the degradation of standard-sized magnesium plates and healing of mandibular osteotomies in miniature pigs
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Influence of surface modifications on the degradation of standard-sized magnesium plates and healing of mandibular osteotomies in miniature pigs

机译:表面改性对微型猪颌骨骨质术劣化及颌骨骨质术愈合的影响

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摘要

Biodegradable magnesium alloys are suitable osteosynthesis materials. Despite the alloy composition, surface modifications appear to have an influence on the degradation process and biocompatibility. The aim of this study was to investigate the impact of hydrogenation and fluoridation of the surface in a mandibular osteotomy model. Standard-sized plates and screws were implanted in an osteotomy at the mandibular angle in nine miniature pigs. The plates and screws were harvested together with the adjacent tissues at 8 weeks after surgery and were investigated by micro-computed tomography and histological analysis. The bone healing of the osteotomy was undisturbed, independent of the surface properties. The adjacent bone tissue showed new bone formation at the implant surface; however, formation of some lacunae could be observed. The corrosion was between 9.8% and 11.6% (fluoridated < hydrogenated < non-modified) in histological specimens, while radiologically neither the volume nor the density of the osteosynthesis material was reduced in any treatment group. The soft tissues exhibited full biocompatibility with every surface property. In summary, surface modification by hydrogenation and fluoridation did not significantly influence bone healing, biocompatibility, or corrosion kinetics of the magnesium osteosynthesis at the mandibular angle.
机译:可生物降解的镁合金是合适的骨质合成材料。尽管合金组成,表面改性似乎对降解过程和生物相容性产生影响。本研究的目的是研究氢化和氟化表面在下颌骨质切断模型中的影响。标准尺寸的板和螺钉在九粒子的下颌角度植入骨质图中。在手术后8周将板和螺钉与相邻组织一起收获,并通过微计算断层扫描和组织学分析研究。骨质图的骨愈合未受干扰,与表面性质无关。邻近的骨组织在植入物表面上显示出新的骨形成;然而,可以观察到一些空隙的形成。腐蚀在组织学标本中的9.8%和11.6%(氟化物<氢化<未修饰)之间,在放射学上,在任何治疗组中,骨合成材料的体积和密度都没有降低。软组织表现出全部化学性质的完全生物相容性。总之,通过氢化和氟化物的表面改性并未显着影响镁骨骨合成的骨愈合,生物相容性或腐蚀动力学以下颌角度。

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