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Preclinical evaluation of a xenogenic hydroxyapatite/ collagen-based bone substitute material

机译:异种羟基磷灰石/胶原基骨替代材料的临床前评估

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Objective: The aim of this study was to evaluate the physical, chemical and biological properties of a bovine xenograft for bone repair.Methods: Physicochemical analysis was performed using X-ray diffraction, Fourier transform infrared spectroscopy and scanning eletron microscopy. In vitro biocompatibility was evaluated throughcytotoxicity and cell adhesion assays using a fibroblast cell line culture and murine pre-osteoblasts, respectively. Furthermore, an in vivo assay using a subcutaneous grafting on a rat model (5 and 10 weeks, synthetic hydroxyapatite as a control material) and yet a long term experiment in criticalsize calvarial defects (6 and 9 months, blood clot and autogenous bone as negative and positivecontrols, respectively).Results: The test material presented a three-dimensional architecture consisting of dense granules and micropores (various sizes), composed of crystalline hydroxyapatite/collagen fibers. Thexenograft was cytocompatible and after 7 days pre-osteoblast spreading on material granules was observed. Histopathological analysis of the implanted material into rat subcutaneous showed the intact xenograft after 10 weeks surrounded by loose connective tissue with a mild inflammatory infiltrate and giant multinuclear cells around the particles (5 and 10 weeks) similar to the synthetic hydroxyapatite. Concerning the critical-size calvarial defects it was observed 1.7 times more new bone formation in the xenograft than the blood clot group (P<0.001), a similar result was verified on autograft. There was no significant variation in the volume density of the xenograft (37.9%±4.3).Conclusion: It was concluded that the xenogenic material is biomimetic, biocompatible, osteoconductive and non-resorbable, therefore being a promising material for bone repair.
机译:目的:本研究的目的是评估牛异种骨修复的物理,化学和生物学特性。方法:利用X射线衍射,傅立叶变换红外光谱和扫描电子显微镜对理化分析结果进行分析。分别通过使用成纤维细胞细胞系培养物和鼠前成骨细胞的细胞毒性和细胞粘附试验评估了体外生物相容性。此外,在大鼠模型(5周和10周,以合成羟基磷灰石为对照材料)上进行皮下移植的体内试验,并在颅骨缺损的关键尺寸(6月和9个月,血块和自体骨阴性)中进行了长期实验结果:测试材料呈现出由致密颗粒和微孔(各种尺寸)组成的三维结构,该结构由结晶性羟基磷灰石/胶原纤维组成。异种移植物具有细胞相容性,并且在成骨细胞前7天后观察到散布在材料颗粒上。对大鼠皮下植入材料的组织病理学分析显示,完整的异种移植物在10周后被松散的结缔组织包围,周围有轻度炎性浸润,并且颗粒周围有巨大的多核细胞(5周和10周),类似于合成的羟基磷灰石。关于临界大小的颅骨缺损,在异种移植物中观察到的新骨形成是血凝块组的1.7倍(P <0.001),在自体移植中也证实了类似的结果。结论:异种材料具有仿生,生物相容性,骨传导性和不可吸收性,因此是一种有前途的骨修复材料。

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