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Biocompatibility of a porous alumina ceramic scaffold coated with hydroxyapatite and bioglass

机译:涂有羟基磷灰石和生物玻璃的多孔氧化铝陶瓷支架的生物相容性

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摘要

This study aimed to evaluate the osteointegration and genotoxic potential of a bioactive scaffold, composed of alumina and coated with hydroxyapatite and bioglass, after their implantation in tibias of rats. For this purpose, Wistar rats underwent surgery to induce a tibial bone defect, which was filled with the bioactive scaffolds. Histology analysis (descriptive and morphometry) of the bone tissue and the single-cell gel assay (comet) in multiple organs (blood, liver, and kidney) were used to reach this aim after a period of 30, 60, 90, and 180 days of material implantation. The main findings showed that the incorporation of hydroxyapatite and bioglass in the alumina scaffolds produced a suitable environment for bone ingrowth in the tibial defects and did not demonstrate any genotoxicity in the organs evaluated in all experimental periods. These results clearly indicate that the bioactive scaffolds used in this study present osteogenic potential and still exhibit local and systemic biocompatibility. These findings are promising once they convey important information about the behavior of this novel biomaterial in biological system and highlight its possible clinical application.
机译:这项研究旨在评估一种生物活性支架的骨整合和遗传毒性潜力,该支架由氧化铝组成并涂有羟基磷灰石和生物玻璃,然后将其植入大鼠胫骨中。为了这个目的,Wistar大鼠进行手术以诱导胫骨缺损,该缺损充满了生物活性支架。在30、60、90和180度的一段时间后,对骨骼组织进行组织学分析(描述性和形态学分析),并在多个器官(血液,肝脏和肾脏)中进行单细胞凝胶测定(彗星分析)以达到此目的。材料植入的天数。主要发现表明,在氧化铝支架中掺入羟基磷灰石和生物玻璃为胫骨缺损的骨骼向内生长提供了合适的环境,并且在所有实验期间未显示出对器官的遗传毒性。这些结果清楚地表明,本研究中使用的生物活性支架具有成骨潜力,并且仍具有局部和全身生物相容性。这些发现一旦传达了有关这种新型生物材料在生物系统中的行为的重要信息,并突出了其可能的临床应用,将是有希望的。

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