首页> 外文期刊>The International journal of oral & maxillofacial implants >Injectable Bone Substitute Material on the Basis beta-TCP and Hyaluronan Achieves Complete Bone Regeneration While Undergoing Nearly Complete Degradation
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Injectable Bone Substitute Material on the Basis beta-TCP and Hyaluronan Achieves Complete Bone Regeneration While Undergoing Nearly Complete Degradation

机译:基于Beta-TCP和透明质酸的可注射骨替代材料在接受几乎完全降解的同时实现了完全的骨再生

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Purpose: In this prospective study, the regenerative potential and pathways of a new injectable bone substitute (IBS) material composed of beta-tricalcium phosphate (beta-TCP) and hyaluronan were investigated for its application in alveolar bone regeneration within extraction sockets. Materials and Methods: The bone substitute material was implanted in 44 extraction sockets after removal of teeth not worth preserving in the maxillary and mandibular arches of 21 patients. Four months after augmentation, bone biopsy samples were harvested simultaneously with implant placement for histologic and histomorphometric analysis of tissue reaction and determination of tissue formation (newly formed bone, connective tissue, and remaining IBS) within the augmentation bed. Furthermore, the inserted bone-level implants (C-Tech Esthetic Line) were followed up clinically and radiologically for at least 1 year after prosthetic loading to determine the potential impact of tissue reaction to the IBS on implant stability and performance. Results: The histologic and histomorphometric analyses revealed a gentle tissue reaction with mainly mononuclear and only few multinucleated giant cells within the implantation bed. Histomorphometric analysis revealed mainly newly formed bone tissue (44.92% +/- 5.16%) and connective tissue (52.49% +/- 6.43%). Only a few remnants of the IBS (2.59% +/- 2.05%) could be found. The IBS, with its easy application and fluidity, seemed to be suitable for three-dimensional stable defects such as the intact extraction socket. Conclusion: The IBS contributed to an osteoconductive tissue reaction while undergoing a time-controlled degradation. Clinical and radiological follow-up investigation of the implants inserted in the regenerated area revealed that the IBS contributed to a long-term stable implantation bed for dental implants. The appearance of the IBS can be described as a bulk that is formed within the augmentation bed and that promotes new bone formation through an osteoconductive procedure.
机译:目的:在该前瞻性研究中,研究了由β-三磷酸钙(Beta-TCP)和透明质酸组成的新可注射骨替代(IBS)材料的再生潜力和途径,以在萃取插座内的肺泡骨再生中应用。材料和方法:在去除在21例患者的上颌和下颌拱门中不值得保留的牙齿之后,骨替代材料在44个提取插座中植入。增强后四个月,骨活检样品同时收获植入物放置,用于组织反应的组织学和组织反应组织和组织反应分析和组织形成(新形成的骨,结缔组织,剩余物有所值)在增强床内。此外,在假体负载下临床和放射性地进行插入的骨级植入物(C-Tech美学系)至少1年,以确定组织反应对IBS植入稳定性和性能的潜在影响。结果:组织学和组织素分析揭示了一种温和的组织反应,主要是单核和植入床内的几个多核巨细胞。组织素质分析主要显示出新形成的骨组织(44.92%+/- 5.16%)和结缔组织(52.49%+/- 6.43%)。可以发现IBS的几个残余物(2.59%+/- 2.05%)。具有易于应用和流动性的IBS似乎适用于三维稳定缺陷,例如完整的提取插座。结论:IBS在经历时间控制降解的同时导致骨导电组织反应。插入再生区域中插入的植入物的临床和放射后续调查显示,IBS为牙科植入物的长期稳定植入床。 IBS的外观可以描述为在增强床内形成的体积,并且通过骨导电程序促进新的骨形成。

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