首页> 外文期刊>International Journal of Medical Sciences >Feasible Advantage of Bioactive/Bioresorbable Devices Made of Forged Composites of Hydroxyapatite Particles and Poly-L-lactide in Alveolar Bone Augmentation: A Preliminary Study
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Feasible Advantage of Bioactive/Bioresorbable Devices Made of Forged Composites of Hydroxyapatite Particles and Poly-L-lactide in Alveolar Bone Augmentation: A Preliminary Study

机译:羟基磷灰石颗粒与聚L-丙交酯的锻造复合材料制成的生物活性/生物可吸收装置在牙槽骨增强中的可行性优势:初步研究

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Purpose : We aimed to document the clinical usefulness of uncalcined and unsintered hydroxyapatite (u-HA) particles and poly-L-lactide (PLLA) composite materials and their advantageous properties. Methods : Between April 2016 and March 2018, five patients required anterior maxillary alveolar ridge augmentation using fixation with u-HA/PLLA screws for an onlay block bone graft harvested from the mandibular ramus at our institute. Bone biopsies were obtained from the dental implantation site following bone healing for histomorphometric and immunohistochemical (IHC) measurements. Results : Many stromal cells were positive for Osterix, RUNX2, and SOX9 but were negative for CD68. On cell counting, based on IHC staining for Osterix, RUNX2, SOX9 and CD68 from peripheral u-HA/PLLA screw or bone areas, both areas consistently showed no significant difference in terms of Osterix, RUNX2, and SOX9. Hematoxylin-eosin staining revealed direct bone connection to the biomaterials, and no inflammatory cells infiltrated the areas surrounding the bone or artificial material. Area between the bone and u-HA/PLLA screw was seamless with no boundary. Round small cells and immature fibroblasts were noted. The new bone showed the presence of bone lamellae, normal osteocytes, and osteoblasts. Conclusion : The u-HA/PLLA materials showed excellent biodegradability and bioactive osteoconductivity. In addition, this material induced no apparent inflammatory or foreign body reactions following implantation, and it directly bonded to the human bone. Therefore, this u-HA/PLLA material seems ideal and most suitable for use as a substitute for osteosynthesis.
机译:目的:我们旨在证明未煅烧和未烧结的羟基磷灰石(u-HA)颗粒和聚L-丙交酯(PLLA)复合材料的临床实用性及其优越的性能。方法:2016年4月至2018年3月,五名患者需要使用u-HA / PLLA螺钉固定从我们研究所的下颌骨上获得的块状植骨进行前上牙槽隆起。从骨植入后的牙齿植入部位获得骨活检组织,用于组织形态学和免疫组织化学(IHC)测量。结果:许多基质细胞对Osterix,RUNX2和SOX9呈阳性,但对CD68呈阴性。在细胞计数方面,基于IHC对外围u-HA / PLLA螺钉或骨骼区域中的Osterix,RUNX2,SOX9和CD68进行染色,两个区域在Osterix,RUNX2和SOX9方面均无显着差异。苏木精-伊红染色显示骨骼与生物材料直接相连,并且没有炎性细胞渗入骨骼或人造材料周围的区域。骨与u-HA / PLLA螺钉之间的区域是无缝的,没有边界。注意到圆形小细胞和未成熟的成纤维细胞。新骨显示出骨片,正常骨细胞和成骨细胞的存在。结论:u-HA / PLLA材料具有优异的生物降解性和生物活性骨传导性。此外,这种材料在植入后不会引起明显的炎症或异物反应,并且直接与人体骨骼结合。因此,这种u-HA / PLLA材料似乎是理想的,最适合用作骨合成的替代物。

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