一种仿生材料移植一年后骨再生的组织学评价。

M. Figliuzzi, Rossella De Fazio, Rosamaria Tiano, S. De Franceschi, D. Pacifico, F. Mangano, L. Fortunato
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引用次数: 5

摘要

目的使用替代材料是牙周病治疗骨内缺损修复的方法之一。科学研究的进步导致了新一代的生物材料的合成来源化学计量不稳定,因此真正可吸收。我们的研究方向是合成一种生物材料,Engipore®(Finceramica, Faenza, Italy),这是一种最新的羟基磷灰石骨替代品,具有与天然骨相似的化学和形态学特性,可用于治疗骨下牙周缺损。本研究的目的是评价Engipore®治疗骨内牙周缺损的疗效。方法对100例龈下袋≥8/ 10mm的牙颌toptic患者进行研究。组织学评估是在移植一年后进行的。结果1年后收集的组织学样本显示大量新骨形成,成熟的板层骨组织围绕着Engipore®残留颗粒,看起来完全骨整合。周围结缔组织没有炎症迹象。结论:组织学检查结果表明,在正确选择患者和病变并应用适当的手术技术后,这种类型的生物材料在治疗牙周缺损时作为填充物诱导新骨形成的最佳方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Histological evaluation of a biomimetic material in bone regeneration after one year from graft.
AIM The use of substitute materials is one of the solutions used in periodontology for the reconstruction of intrabony defects. Advances in scientific research gave rise to a new generation of biomaterials of synthetic origin stoichiometrically unstable and therefore really absorbable. Our research is directed precisely towards a biomaterial synthesis, Engipore® (Finceramica, Faenza, Italy) which is a bone substitute of the latest hydroxyapatite-based generation, that possesses chemical and morphological properties similar to those of natural bone in the treatment of infrabony periodontal defects. Aim of this study was to evaluate the efficacy of Engipore® in the treatment of intrabony periodontal defects. METHODS The study was conducted on 100 parodontopatics patients, which had gingival pockets of at least infrabonies 8/10 mm. The histological evaluation was performed with samples after one year from the graft. RESULTS The histological samples collected after one year showed an abundant new bone formation, with mature lamellar bone tissue surrounding the residual particles of Engipore® that appear completely osteointegrated. The surrounding connective tissue shows no signs of inflammation. CONCLUSIONS The results obtained in our research demonstrated that, after a proper selection of patients and lesions, and applying an adequate surgical technique, this type of biomaterial in the treatment of periodontal defects acts in an optimal manner as a filler inducing the formation of new bone as evidenced by histological examinations.
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