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Biological response of a recently developed nanocomposite based on calcium phosphate cement and sol-gel derived bioactive glass fibers as substitution of bone tissues

机译:最近开发的基于磷酸钙水泥和溶胶-凝胶衍生的生物活性玻璃纤维作为骨组织替代物的纳米复合材料的生物响应

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摘要

Calcium phosphate cements (CPCs) have been used in a number of medical and dental procedures due to their excellent osteoconductivity and bone replacement capability. However, the low mechanical properties of CPCs prohibit their usage in many unsupported defects and stress bearing locations. Bioactive glass fiber (BGF) reinforced-CPC with enhanced mechanical property has been recently developed [Nezafati et al. 2011, Ceramics International]. In the present study, the in vitro bioactivity and cellular properties of the CPC optimally reinforced with 15 vol% BGFs were evaluated and compared with a control group, i.e. unreinforced CPC. The samples were soaked in simulated body fluid (SBF) for different time intervals and were then characterized by various techniques. Carbonate substituted apatite crystals with oriented plate-like morphology were also found on the surface of the samples. Furthermore, rat-derived osteoblastic cells were seeded on the samples for different times and evaluated in terms of proliferation, morphology and alkaline phosphatase (ALP) activity. In addition, the proliferation of osteoblastic cells on samples and increasing in level of alkaline phosphatase enzyme were observed as a function of time. The obtained results indicated that the reinforced composite made of CPC and BGFs could be considered as a highly bioactive material for bone tissue defect treatment after successful passage of in vivo experiments.
机译:磷酸钙水泥(CPC)由于其出色的骨传导性和骨骼替代能力而被用于许多医疗和牙科手术中。但是,CPC的低机械性能使其无法用于许多不受支持的缺陷和承受应力的位置。最近开发了具有增强的机械性能的生物活性玻璃纤维(BGF)增强CPC [Nezafati等。 2011,国际陶瓷展]。在本研究中,评估了以15%(体积)BGF最佳增强的CPC的体外生物活性和细胞特性,并将其与对照组即未增强的CPC进行了比较。将样品浸泡在模拟体液(SBF)中不同的时间间隔,然后通过各种技术进行表征。在样品表面上还发现了碳酸盐取代的磷灰石晶体,其取向为板状形态。此外,将大鼠来源的成骨细胞在不同时间播种在样品上,并根据增殖,形态和碱性磷酸酶(ALP)活性进行评估。另外,观察到成骨细胞在样品上的增殖和碱性磷酸酶水平的升高是时间的函数。获得的结果表明,在体内实验成功通过后,由CPC和BGF制成的增强复合材料可以被认为是用于治疗骨组织缺损的高生物活性材料。

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