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首页> 外文期刊>Dental Materials Journal >A novel hydroxyapatite fiber material for the regeneration of critical-sized rabbit calvaria defects
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A novel hydroxyapatite fiber material for the regeneration of critical-sized rabbit calvaria defects

机译:一种新型羟基磷灰石纤维材料,用于重新调整急性大小的兔Calvaria缺陷

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摘要

Hydroxyapatite (HA) [Ca_(10) (PO_(4))_(6) (OH)_(2)] has a high degree of chemical similarity with the mineral composition of animal bone. Hydroxyapatite fiber scaffold (HAF) is a biological material with a highly interconnected porous structure. We aimed to study the physical and biological characteristics of HAF and compare the osteogenic effects of HAF, natural osteogenic materials (NOM), and carbonate apatite (CO_(3)Ap-DP) in the parietal defects of a rabbit’s skull. X-ray analysis and histological assessment showed that HAF followed a trend of early initial osteogenesis and bone trabecular structure formation, especially at the cortical bone portion.Compared to the other two materials, HAF was more absorptive. Results indicated that HAF had the same osteoconductive and new bone formation properties as NOM and CO_(3)Ap-DP. These findings will provide options for future material development and novel protocols for use in surgeries, ultimately leading to better patient outcomes.
机译:羟基磷灰石(HA)[CA_(10)(PO_(4))_(6)(OH)_(2)]具有高度的化学相似性与动物骨的矿物成分。 羟基磷灰石纤维支架(HAF)是一种具有高度相互连接的多孔结构的生物材料。 我们旨在研究HAF的物理和生物学特性,并比较HAF,天然成骨材料(NOM)和碳酸盐磷灰石(CO_(3)AP-DP)在兔子头骨的顶缺陷中的成骨缺陷作用。 X射线分析和组织学评估表明,HAF遵循早期初始骨肉骨质发生和骨小梁结构形成的趋势,特别是在皮质骨部分。对于其他两种材料,HAF更吸收。 结果表明,HAF具有与NOM和CO_(3)AP-DP相同的骨导电性和新的骨形成性能。 这些调查结果将为未来的材料开发和新颖协议提供用于手术的备选方案,最终导致更好的患者结果。

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