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Novel Engineered Human Fluorescent Osteoblasts for Scaffolds Bioassays

机译:新型工程人类荧光成骨细胞用于支架生物测定

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Many cellular models have been used to investigate bone substitutes including coralderived hydroxylapatite (HA). The aim of this study was to verify whether a new cellular model represented by Saos-eGFP cells can be used to test biomaterials by in vitro assays. SaoseGFP cells which express the enhanced Green Fluorescent Protein (eGFP), were derived from the osteoblast-like cell line Saos-2. To this purpose Saos-eGFP cells were employed to investigate the in-vitro bioactivity of a well characterized coral-derived HA biomaterial, in block and granule forms. This engineered cell line, by evaluating the emitted fluorescence, allowed us to assay (i) cell adhesion, (ii) cell proliferation and (iii) colony capability. Electron microscopy analysis was employed to evaluate the (iv) morphology of cells seeded on the biomaterial surface. (v) Histological analysis of the bone grown after scaffold implantation was carried out in specimens from two clinical cases. Saos-eGFP cells indicate, as established before, that the coralline-HA biomaterials has a good in vitro cytocompatibility when tested with human osteoblast-like cells. Some differences in proliferation activity was detected for the two different forms assayed. Cytocompatibility data from in vitro analyses were confirmed by in vivo behaviour of biomaterials. Our tests suggest that the engineered cell line Saos-eGFP represents a suitable in vitro mode for studying the biocompatibility, the cell adhesion, spreading and proliferation on biomaterials developed for clinical applications. The main advantages of this cellular model are (i) less time consuming and (ii) a reduced cost of the experiments.
机译:许多细胞模型已用于研究包括珊瑚来源的羟磷灰石(HA)的骨替代物。这项研究的目的是验证以Saos-eGFP细胞为代表的新细胞模型是否可以用于通过体外测定法测试生物材料。表达增强的绿色荧光蛋白(eGFP)的SaoseGFP细胞来自成骨细胞样细胞系Saos-2。为此,使用Saos-eGFP细胞来研究特征明确的珊瑚来源的HA生物材料(块状和颗粒状)的体外生物活性。通过评估发射的荧光,该工程细胞系使我们能够测定(i)细胞粘附,(ii)细胞增殖和(iii)集落能力。电子显微镜分析被用来评估(iv)植入生物材料表面的细胞的形态。 (v)对两个临床病例的标本进行了支架植入后生长的骨骼的组织学分析。如前所述,Saos-eGFP细胞表明,当用人类成骨细胞样细胞进行测试时,coralline-HA生物材料具有良好的体外细胞相容性。对于所测定的两种不同形式,检测到了增殖活性的一些差异。来自体外分析的细胞相容性数据通过生物材料的体内行为得到证实。我们的测试表明,工程细胞系Saos-eGFP代表了一种合适的体外模式,用于研究为临床应用开发的生物材料上的生物相容性,细胞粘附,扩散和增殖。这种细胞模型的主要优点是(i)耗时少和(ii)实验成本降低。

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