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Engineering microdent structures of bone implant surfaces to enhance osteogenic activity in MSCs

机译:工程化骨植入物表面的微齿结构以增强MSC中的成骨活性

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Problems persist with the integration of hip and dental implants with host bone tissues, which may result in long-term implant failure. Previous studies have found that implants bearing irregular surfaces can facilitate osseointegration. An improvement to this approach would use implant surfaces harboring a well-defined surface microstructure to decrease variability in implant surfaces. In this study, we tested whether well-defined surfaces with arrays of microdents (each with depth approximately 3 μm) significantly affected the morphology, proliferation, and osteogenic activity of mesenchymal stem cells (MSCs). Arrays of microdents tested had diameters of 9 μm, 12 μm, and 18 μm, while spacing between arrays ranged from 8 μm to 34 μm. Effects on MSC morphology (cell spreading area) and proliferation were also quantified, with both significantly decreasing on micropatterned surfaces (p0.05) on smaller and denser microdents. In contrast, MSCs were found to deposit more calcified matrix on smaller and denser arrays of microdents. MSCs on a pattern with arrays of microdents with a diameter of 9 μm and a spacing 8 μm deposited 3–4 times more calcified matrix than on a smooth surface (p0.05). These findings show that well-defined surface microtopographies promote osteogenic activity, which can be used on implant surfaces to improve integration with the host bone tissue. Highlights ? Arrays of microdents regulate functions of mesenchymal stem cells. ? Denser arrays of smaller microdents cause lower cell spreading and proliferation. ? Denser arrays of smaller microdents cause a higher level of calcified matrix.
机译:髋骨和牙科植入物与宿主骨组织的整合仍然存在问题,这可能导致植入物长期失败。先前的研究发现,带有不规则表面的植入物可以促进骨整合。对这种方法的改进将使用具有良好定义的表面微观结构的植入物表面,以减少植入物表面的变异性。在这项研究中,我们测试了带有微齿阵列(每个深度约3μm)的轮廓分明的表面是否显着影响间充质干细胞(MSC)的形态,增殖和成骨活性。测试的微齿阵列的直径为9μm,12μm和18μm,而阵列之间的间距范围为8μm至34μm。还量化了对MSC形态(细胞扩散区域)和增殖的影响,在较小和较密的微凹痕的微图案表面均显着降低(p <0.05)。相反,发现MSC在较小和密集的小齿阵列上沉积更多的钙化基质。 MSC的图案上有直径为9μm,间距为8μm的微齿阵列,其沉积的钙化基质比在光滑表面上多3-4倍(p <0.05)。这些发现表明,轮廓分明的表面微观形貌可促进成骨活性,可将其用于植入物表面以改善与宿主骨组织的整合。强调 ?一系列微齿调节间充质干细胞的功能。 ?较小的微齿的Denser阵列导致较低的细胞扩散和增殖。 ?较小微齿的Denser阵列会导致较高水平的钙化基质。

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