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首页> 外文期刊>Journal of biomedical materials research, Part A >Development of a three-dimensional model for rapid evaluation of bone substitutes in vitro: Effect of the 45S5 bioglass
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Development of a three-dimensional model for rapid evaluation of bone substitutes in vitro: Effect of the 45S5 bioglass

机译:建立三维模型以快速评估体外骨替代物:45S5生物玻璃的效果

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The evaluation of innovative bone substitutes requires the development of an optimal model close to physiological conditions. An interesting alternative is the use of an immortalized cell line to construct multicellular spheroids, that is, three-dimensional (3D) cultures. In this study, a modified hanging drops method has resulted in the generation of spheroids with a well-established human fetal osteoblasts line (hFOB 1.19), and tests have been focused on the effect of 45S5 bioglass ionic dissolution products in comparison with two-dimensional (2D) cultures. Depending on cell culture type, quantitative analysis (cell proliferation, viability/cytotoxicity, and cellular cycle) and qualitative analysis (electron microscopy and genes expression) showed a differential effect. Cell proliferation was enhanced in 2D-conditioned cultures in accordance with literature data, but decreased in 3D cultures submitted to the same conditions, without change of gene expression patterns. The decrease of cell proliferation, observed in conditioned spheroids, appears to be in agreement with clinical observations showing the insufficiency of commercially available bioglasses for bone repairing within nonbearing sites, such as periodontal defects or small bone filling, in general. Therefore, we suggest that this model could be adapted to the screening of innovative bioactive materials by laboratory techniques already available and extended monitoring of their bioactivity.
机译:对创新骨替代品的评估需要开发接近生理条件的最佳模型。一个有趣的替代方法是使用永生化细胞系来构建多细胞球体,即三维(3D)培养。在这项研究中,一种改进的悬滴法已经产生了具有完善的人类胎儿成骨细胞系(hFOB 1.19)的球体,并且测试集中于45S5生物玻璃离子溶解产物与二维相比。 (2D)文化。根据细胞培养物的类型,定量分析(细胞增殖,活力/细胞毒性和细胞周期)和定性分析(电子显微镜和基因表达)显示出不同的作用。根据文献数据,在2D条件培养物中,细胞增殖得到增强,而在相同条件下进行的3D培养物中,细胞增殖则下降,而基因表达模式没有改变。在条件球体中观察到的细胞增殖的减少似乎与临床观察结果一致,临床观察结果表明,通常市场上可买到的生物玻璃不足以在非承重部位进行骨修复,例如牙周缺损或小骨填充。因此,我们建议该模型可以通过现有的实验室技术和扩展的生物活性监测方法,适用于筛选创新的生物活性物质。

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