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Comparison of Two Xenograft Materials Used in Sinus Lift Procedures: Material Characterization and In Vivo Behavior

机译:鼻窦提升手术中使用的两种异种移植材料的比较:材料表征和体内行为

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Detailed information about graft material characteristic is crucial to evaluate their clinical outcomes. The present study evaluates the physico-chemical characteristics of two xenografts manufactured on an industrial scale deproteinized at different temperatures (non-sintered and sintered) in accordance with a protocol previously used in sinus lift procedures. It compares how the physico-chemical properties influence the material’s performance in vivo by a histomorphometric study in retrieved bone biopsies following maxillary sinus augmentation in 10 clinical cases. An X-ray diffraction analysis revealed the typical structure of hydroxyapatite (HA) for both materials. Both xenografts were porous and exhibited intraparticle pores. Strong differences were observed in terms of porosity, crystallinity, and calcium/phosphate. Histomorphometric measurements on the bone biopsies showed statistically significant differences. The physic-chemical assessment of both xenografts, made in accordance with the protocol developed on an industrial scale, confirmed that these products present excellent biocompatibilitity, with similar characteristics to natural bone. The sintered HA xenografts exhibited greater osteoconductivity, but were not completely resorbable (30.80 ± 0.88% residual material). The non-sintered HA xenografts induced about 25.92 ± 1.61% of new bone and a high level of degradation after six months of implantation. Differences in the physico-chemical characteristics found between the two HA xenografts determined a different behavior for this material.
机译:有关移植材料特性的详细信息对于评估其临床结局至关重要。本研究评估了在工业规模上生产的两种异种移植物的物理化学特性,这些异种移植物根据先前在鼻窦举升手术中使用的规程在不同温度(非烧结和烧结)下进行了脱蛋白处理。通过组织形态计量学研究,对10例上颌窦增大后的取回的骨活检组织进行了形态计量学研究,比较了理化性质如何影响材料在体内的性能。 X射线衍射分析揭示了两种材料的典型羟基磷灰石(HA)结构。两种异种移植物都是多孔的,并表现出颗粒内的孔。在孔隙度,结晶度和钙/磷酸盐方面观察到了很大的差异。骨活检组织形态测量显示统计学上的显着差异。根据工业规模开发的方案对两种异种移植物进行理化评估,证实这些产品具有出色的生物相容性,并具有与天然骨相似的特性。烧结的HA异种移植物表现出更大的骨传导性,但不完全可吸收(残留材料为30.80±0.88%)。植入六个月后,未烧结的HA异种移植物诱导了约25.92±1.61%的新骨,并且降解程度很高。两种HA异种移植物之间发现的理化特性差异决定了该材料的不同行为。

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