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Osteogenic cell differentiation on H-terminated and O-terminated nanocrystalline diamond films

机译:H端和O端纳米晶体金刚石薄膜上的成骨细胞分化

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摘要

Nanocrystalline diamond (NCD) films are promising materials for bone implant coatings because of their biocompatibility, chemical resistance, and mechanical hardness. Moreover, NCD wettability can be tailored by grafting specific atoms. The NCD films used in this study were grown on silicon substrates by microwave plasma-enhanced chemical vapor deposition and grafted by hydrogen atoms (H-termination) or oxygen atoms (O-termination). Human osteoblast-like Saos-2 cells were used for biological studies on H-terminated and O-terminated NCD films. The adhesion, growth, and subsequent differentiation of the osteoblasts on NCD films were examined, and the extracellular matrix production and composition were quantified. The osteoblasts that had been cultivated on the O-terminated NCD films exhibited a higher growth rate than those grown on the H-terminated NCD films. The mature collagen fibers were detected in Saos-2 cells on both the H-terminated and O-terminated NCD films; however, the quantity of total collagen in the extracellular matrix was higher on the O-terminated NCD films, as were the amounts of calcium deposition and alkaline phosphatase activity. Nevertheless, the expression of genes for osteogenic markers – type I collagen, alkaline phosphatase, and osteocalcin – was either comparable on the H-terminated and O-terminated films or even lower on the O-terminated films. In conclusion, the higher wettability of the O-terminated NCD films is promising for adhesion and growth of osteoblasts. In addition, the O-terminated surface also seems to support the deposition of extracellular matrix proteins and extracellular matrix mineralization, and this is promising for better osteoconductivity of potential bone implant coatings.
机译:纳米晶金刚石(NCD)膜具有生物相容性,耐化学性和机械硬度,是用于骨植入物涂层的有前途的材料。此外,可以通过接枝特定原子来调整NCD的润湿性。本研究中使用的NCD薄膜通过微波等离子体增强的化学气相沉积法在硅基板上生长,并通过氢原子(H端基)或氧原子(O端基)接枝。人类成骨细胞样Saos-2细胞用于H末端和O末端NCD膜的生物学研究。检查成骨细胞在NCD膜上的粘附,生长和随后的分化,并对细胞外基质的产生和组成进行定量。在O端NCD膜上培养的成骨细胞比在H端NCD膜上培养的成骨细胞具有更高的生长速率。在H端和O端NCD膜上的Saos-2细胞中检测到成熟的胶原纤维。然而,在O端NCD膜上,细胞外基质中的总胶原蛋白含量更高,钙沉积量和碱性磷酸酶活性也更高。尽管如此,成骨标记物的基因(I型胶原蛋白,碱性磷酸酶和骨钙素)的表达在H端和O端膜上可比,甚至在O端膜上更低。总之,O端NCD膜的较高润湿性有望促进成骨细胞的粘附和生长。此外,O端表面似乎也支持细胞外基质蛋白的沉积和细胞外基质的矿化作用,这有望改善潜在的骨植入物涂层的骨传导性。

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