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首页> 外文期刊>Journal of Indian Society of Periodontology >Effects of bioactive glass, hydroxyapatite and bioactive glass – Hydroxyapatite composite graft particles in the treatment of infrabony defects
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Effects of bioactive glass, hydroxyapatite and bioactive glass – Hydroxyapatite composite graft particles in the treatment of infrabony defects

机译:生物活性玻璃,羟基磷灰石和生物活性玻璃-羟基磷灰石复合接枝颗粒在治疗骨缺损中的作用

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Background:Several synthetic alloplastic materials have been used in the past as an implant in infrabony defects with a goal to reconstruct the lost part of attachment apparatus via new osseous tissue formation. The present study was undertaken to evaluate and compare clinico-radiographically, the effect of bioactive glass (BG), hydroxyapatite (HA), and BG-HA composite bone graft particles in the treatment of human infra-bony periodontal defects.Materials and Methods:Indigenous synthetic HA, BG, and BG-HA composite bone graft materials were developed in the laboratory. Twenty eight infrabony periodontal defects were equally distributed (i.e., seven defects) into four groups. The defects were treated separately with three types of graft materials and non-grafted manner (open flap debridement alone, control) to evaluate both the soft and hard tissue responses after six months of surgery. Evaluation was done by studying different parameters such as plaque index, gingival index, relative attachment level, probing pocket depth, and radiographic bone fill in Intra Oral Peri-Apical radiograph.Results:The healing of defects was uneventful and free of any biological complications. The gain in relative attachment level, reduction of probing pocket depth, and bone fill was statistically significant in all four groups. BG and BG-HA synthetic bone graft implanted sites showed significant bone fill (P<0.05) than hydroxyapatite and unimplanted control sites.Conclusion:The performance of BG and its composite was better compared to HA and open flap debridement alone for the reconstruction of infrabony defects. The BG-HA composite particles may effectively be used as an alternative bone graft material for infrabony defects.
机译:背景:过去,几种合成同种异体材料已被用作骨下缺损的植入物,目的是通过新的骨组织形成来重建附着装置的丢失部分。本研究旨在通过临床X射线摄影评估和比较生物活性玻璃(BG),羟基磷灰石(HA)和BG-HA复合骨移植颗粒在治疗人下颌骨牙周缺损中的作用。在实验室开发了本地合成的HA,BG和BG-HA复合骨移植材料。将二十八个下颌骨牙周缺损平均分布(即七个缺损)分成四组。用三种类型的移植材料和非移植方式(仅开放皮瓣清创术,对照)分别治疗缺损,以评估六个月手术后的软组织和硬组织反应。通过研究牙周指数,牙龈指数,相对附着水平,探查囊袋深度和放射成像的骨填充度等参数对口腔内根尖周X线片进行评估。结果:缺陷的愈合是平稳的,没有任何生物并发症。在所有四个组中,相对附着水平的增加,探查袋深度的减少和骨填充的增加在统计学上都是显着的。 BG和BG-HA合成骨移植物的植入部位比羟基磷灰石和未植入的对照部位具有显着的骨填充(P <0.05)。结论:BG及其复合材料的性能优于单纯HA和开放皮瓣清创术重建下骨缺陷。 BG-HA复合颗粒可有效用作骨下缺损的替代骨移植材料。

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