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首页> 外文期刊>Journal of Oral and Maxillofacial Surgery >Fracture Healing and Bone Remodeling With Human Standard-Sized Magnesium Versus Polylactide–Co-Glycolide Plate and Screw Systems Using a Mini-Swine Craniomaxillofacial Osteotomy Fixation Model
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Fracture Healing and Bone Remodeling With Human Standard-Sized Magnesium Versus Polylactide–Co-Glycolide Plate and Screw Systems Using a Mini-Swine Craniomaxillofacial Osteotomy Fixation Model

机译:使用迷你猪Craniomaomaxilloom截骨骨膜术固定模型与人标准镁镁与聚酰胺 - 共乙二醇板和螺杆系统进行骨折愈合和骨质重塑

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PurposeThis study compared the degradation profile, safety, and efficacy of bioresorbable magnesium alloy and polylactide–co-glycolide (PLGA) polymer osteosynthesis systems for the treatment of fractures in a load-sharing maxillofacial environment using a new mini-swine fracture fixation model. Materials and MethodsTwo types of clinically relevant situations were evaluated in 5 Yucatan miniature pigs. Defined porcine midface osteotomies of the supraorbital rim and zygoma were created and fixed with either a coated magnesium (test animals) or PLGA plate and screw osteosynthesis system (control animals). After surgery, the mini-pigs were able to recover for either 1 or 9?months with continuous in?vivo post-implantation monitoring. Standardized computed tomography (CT) imaging was taken immediately postoperatively and at termination for all animals. The 9-month cohort also underwent CT at 2, 4, and 6?months after surgery. At necropsy, osteotomy sites and bone-implant units were harvested, and healing was evaluated by micro-CT, histopathology, and histomorphometry. ResultsAfter clinical and radiologic follow-up examination, all fracture sites healed well for both the magnesium and polymer groups regardless of time point. Complete bone union and gradually disappearing osteotomy lines were observed across all implantation sites, with no major consistency change in periprosthetic soft tissue or in soft tissue calcification. Macroscopic and microscopic examination showed no negative influence of gas formation observed with magnesium during the healing process. Histopathologic analysis showed similar fracture healing outcomes for both plating systems with good biocompatibility as evidenced by a minimal or mild tissue reaction. ConclusionsThis study confirms that WE43 magnesium alloy exhibited excellent fracture healing properties before its full degradation without causing any substantial inflammatory reactions in a long-term porcine model.?Compared with PLGA implants, magnesium represents a promising new biomaterial with reduced implant sizes and improved mechanical properties to support fracture healing in a load-sharing environment.
机译:PTPOSethis研究比较了生物可吸收镁合金和聚乳糖 - 共乙酰胺(PLGA)聚合物溶质合成系统的降解型材,安全性和功效,用于使用新的猪断裂固定模型治疗载荷分布颌面环境中的骨折。在尤卡坦丹微型猪中评估了临床相关情况的材料和方法类型。使用涂覆的镁(试验动物)或PLGA板和螺纹骨合成系统(对照动物)产生并固定猪血管边缘和Zygoma的定义猪中间截骨瘤。手术后,迷你猪能够恢复1或9个月,在植入后的植入后的植入后监测。标准化的计算机断层扫描(CT)成像立即术后和所有动物终止进行。 9个月的队列在手术后2,4和6个月内也接受了CT。在尸检中,收获骨质切开位点和骨植入单元,通过微型CT,组织病理学和组织化学评估愈合。结果临床和放射学后续检查,所有骨折位点对于无论时间点,镁和聚合物组均匀愈合。在所有植入部位观察到完全骨联合和逐渐消失的截端线,在任何植入部位或软组织钙化中没有主要的一致性变化。宏观和微观检查显示在愈合过程中没有用镁观察气体形成的负面影响。组织病理学分析显示出具有良好生物相容性的电镀系统的类似骨折愈合结果,如最小或轻度组织反应所证明的。结论STERHIS研究证实,WE43镁合金在其全部降解之前表现出优异的骨折愈合性能,而不会在长期猪模型中引起任何显着炎症反应。与PLGA植入物进行了分类,镁代表了具有降低的植入尺寸和改善的机械性能的新生物材料在负载共享环境中支持骨折愈合。

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