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Increased elastic modulus of plasma polymer coatings reinforced with detonation nanodiamond particles improves osteogenic differentiation of mesenchymal stem cells

机译:爆轰纳米金刚石颗粒增强的等离子聚合物涂层的弹性模量提高改善了间充质干细胞的成骨分化

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摘要

In the present study we demonstrated that composite PPHMDS/DND coatings with elastic moduli close to those of mature bone tissue (0.2-2.8 GPa) stimulated growth and osteogenic differentiation of human adipose-derived mesenchymal stem cells (hADMSCs). Composite coatings were prepared by a method of plasma polymerization (PP) where detonation nanodiamond (DND) particles in different amounts (0.1, 0.5, and 1 mg/mL) were added to hexamethyldisiloxane (HMDS) before plasma deposition. This method allows variation only in the reduced elastic modulus (Er´) with increase in the particle concentration, while the other surface properties, including surface wettability and topography, did not change. The response of hAD-MSCs to the increasing stifness showed an effect on adhesion and osteogenic differentiation but not on cell proliferation. Matrix mineralization and cell spreading were maximized on PPHMDS/DND coatings with the highest elastic modulus (2.826 GPa), while the differences in proliferation rates among the samples were negligible. In general, PPHMDS/DND coatings provide better conditions for growth and osteogenic differentiation of hAD-MSCs in comparison to glass coverslips, confirming their suitability for osteo-integration applications. Additionally, our findings support the hypothesis that biomaterials with elasticity similar to that of the native tissue can improve the differentiation potential of mesenchymal stem cells.
机译:在本研究中,我们证明了弹性模量接近成熟骨组织(0.2-2.8 GPa)的复合PPHMDS / DND涂层刺激了人脂肪间充质干细胞(hADMSCs)的生长和成骨分化。通过等离子聚合(PP)方法制备复合涂层,其中在等离子沉积之前将不同数量(0.1、0.5和1 mg / mL)的爆轰纳米金刚石(DND)颗粒添加到六甲基二硅氧烷(HMDS)中。这种方法只允许随着颗粒浓度的增加而降低的弹性模量(Er')发生变化,而其他表面特性(包括表面润湿性和形貌)不变。 hAD-MSC对刚度增加的反应显示出对粘附和成骨分化的影响,但对细胞增殖没有影响。在具有最高弹性模量(2.826 GPa)的PPHMDS / DND涂层上,基体矿化和细胞扩散得以最大化,而样品之间的增殖速率差异可以忽略不计。通常,与玻璃盖玻片相比,PPHMDS / DND涂层为hAD-MSC的生长和成骨分化提供了更好的条件,从而证实了它们适用于骨整合应用。此外,我们的发现支持这样的假设,即具有与天然组织相似的弹性的生物材料可以提高间充质干细胞的分化潜能。

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