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首页> 外文期刊>Biomaterials >The surface properties of nanocrystalline diamond and nanoparticulate diamond powder and their suitability as cell growth support surfaces.
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The surface properties of nanocrystalline diamond and nanoparticulate diamond powder and their suitability as cell growth support surfaces.

机译:纳米晶金刚石和纳米颗粒金刚石粉末的表面特性及其作为细胞生长支持表面的适用性。

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Nanocrystalline diamond (NCD) films and nanoparticulate diamond powder (DP) are the two main representatives of diamond at the nanoscale. This study was designed to investigate the suitability of these biomaterials as cell growth supports and to determine surface characteristic properties best suited to cell attachment and proliferation. Surface topography, chemical termination and wetting properties of NCD- and DP-coated borosilicate glass substrates were correlated to attachment, proliferation and differentially regulated gene expression of human renal epithelial cells (HK-2 cell line) cultured on these surfaces. Hydrogen-terminated NCD (NCD-H) surfaces were shown to inhibit cell attachment, which indicates that the lack of functional polar groups prevents adherent cells from settling on a surface, whether nanostructured or not. In contrast to NCD-H, oxygen-terminated NCD (NCD-O) as well as DP surfaces demonstrated improved cell attachment, as compared to borosilicate glass, which is a commonly used material for cell growth supports. NCD-O not only revealed an increased cell attachment, but also a markedly increased proliferation rate. Finally, none of the investigated surface modifications appeared to cause adverse cellular reactions or markedly alter cellular phenotype.
机译:纳米晶金刚石(NCD)膜和纳米微粒金刚石粉(DP)是金刚石在纳米尺度上的两个主要代表。这项研究旨在调查这些生物材料作为细胞生长支持物的适用性,并确定最适合细胞附着和增殖的表面特征。 NCD和DP涂层的硼硅酸盐玻璃基板的表面形貌,化学终止和润湿特性与在这些表面上培养的人肾上皮细胞(HK-2细胞系)的附着,增殖和差异调控的基因表达相关。氢封端的NCD(NCD-H)表面显示抑制细胞附着,这表明缺乏功能性极性基团会阻止粘附细胞沉降在表面上,无论是否为纳米结构。与NCD-H相比,与通常用作细胞生长支持材料的硼硅酸盐玻璃相比,氧封端的NCD(NCD-O)以及DP表面表现出改善的细胞附着性。 NCD-O不仅显示出细胞附着增加,而且增殖速率也显着增加。最后,所研究的表面修饰似乎均未引起不良细胞反应或明显改变细胞表型。

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