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Evaluation of cytocompatibility of bioglass-niobium granules with human primary osteoblasts: a multiparametric approach

机译:用人初级成骨细胞评价生物胶 - 铌颗粒的细胞组合性:一种多剂量方法

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The pursuit for an ideal bone substitute remains the main focus of many tissue engineering researchers. Among the myriad types of grafts available, synthetic bone grafts are of special importance, because it is available in large amounts, reduce the surgical trauma and eliminate the risk of diseases' transmission. In this context, bioactive glasses have received attention mostly due to its described biocompatibility and rapid rate of surface reactivity when compared with other materials, allowing for faster interactions with the local tissue. The addition of niobium to this material has been shown as increasing the chemical resistance of the compound and providing greater stability. However, alterations on the chemical composition of biomaterials may impact on its biocompatibility. Therefore, the aim of this study was to evaluate the in vitro biocompatibility of bioglass-Niobium (BgNb) granules, in comparison with standard commercial bioglass (Biogran?) throughout an interesting multiparametrical approach, employing Phenol 2% and dense polystyrene beads as positive and negative controls, respectively. Extracts from each material were prepared by 24 hours incubation in culture medium (DMEM). Human primary osteoblasts were then exposed for 24 hours to each extract and cell viability was evaluated by three parameters: mitochondrial activity (XTT method), membrane integrity (neutral red dye uptake) and cell density (crystal violet dye exclusion test). BgNb extracts were highly compatible, since the levels of viable cells were similar to the control group (unexposed cells), on all parameters studied. The mean cell density on the Biogran? group was slightly lower than BgNb, even though this material was also non-cytotoxic. The excellent in vitro response for BgNb granules indicates the suitability of this material to future studies on its biological and physical properties when applied in vivo.
机译:追求理想的骨代替仍然是许多组织工程研究人员的主要焦点。在无数类型的贪污可用类型中,合成骨移植物具有特殊重要性,因为它有大量可用,减少手术创伤并消除疾病传播的风险。在这种情况下,与其他材料相比,生物活性玻璃主要受到其在其描述的生物相容性和表面反应性的快速速率,允许与局部组织更快的相互作用。已经显示出加入该材料的铌,以增加化合物的耐化学性并提供更大的稳定性。然而,生物材料的化学成分的改变可能会影响其生物相容性。因此,该研究的目的是评估生物胶 - 铌(BGNB)颗粒的体外生物相容性,与标准的商业生物胶(BioGranα)相比,在各种有趣的多气法处理,使用苯酚2%和致密的聚苯乙烯珠作为阳性和致密的聚苯乙烯珠分别为阴性对照。通过在培养基(DMEM)中孵育24小时,制备来自每种材料的提取物。然后将人的原发性成骨细胞暴露于每个提取物中,通过三个参数评价细胞活力:线粒体活性(XTT方法),膜完整性(中性红染料吸收)和细胞密度(晶体紫染料排除试验)。 BGNB提取物高度相容,因为在研究的所有参数上,活细胞水平与对照组(未曝光细胞)类似。 BioGran的平均细胞密度?对于这种材料也是非细胞毒性,组略低于BGNB。 BGNB颗粒的优异体外反应表明,当在体内施用时,这种材料对其生物和物理性质的未来研究。

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