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Interaction of Human Osteoblast-Like Saos-2 and MG-63 Cells with Thermally Oxidized Surfaces of a Titanium-Niobium Alloy

机译:人成骨细胞样Saos-2和MG-63细胞与钛铌合金热氧化表面的相互作用

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摘要

An investigation was made of the adhesion, growth and differentiation of osteoblast-like MG-63 and Saos-2 cells on titanium (Ti) and niobium (Nb) supports and on TiNb alloy with surfaces oxidized at 165°C under hydrothermal conditions and at 600°C in a stream of air. The oxidation mode and the chemical composition of the samples tuned the morphology, topography and distribution of the charge on their surfaces, which enabled us to evaluate the importance of these material characteristics in the interaction of the cells with the sample surface. Numbers of adhered MG-63 and Saos-2 cells correlated with the number of positively-charged (related with the Nb2O5 phase) and negatively-charged sites (related with the TiO2 phase) on the alloy surface. Proliferation of these cells is correlated with the presence of positively-charged (i.e. basic) sites of the Nb2O5 alloy phase, while cell differentiation is correlated with negatively-charged (acidic) sites of the TiO2 alloy phase. The number of charged sites and adhered cells was substantially higher on the alloy sample oxidized at 600°C than on the hydrothermally treated sample at 165°C. The expression values of osteoblast differentiation markers (collagen type I and osteocalcin) were higher for cells grown on the Ti samples than for those grown on the TiNb samples. This was more particularly apparent in the samples treated at 165°C. No considerable immune activation of murine macrophage-like RAW 264.7 cells on the tested samples was found. The secretion of TNF-α by these cells into the cell culture media was much lower than for either cells grown in the presence of bacterial lipopolysaccharide, or untreated control samples. Thus, oxidized Ti and TiNb are both promising materials for bone implantation; TiNb for applications where bone cell proliferation is desirable, and Ti for induction of osteogenic cell differentiation.
机译:研究了成骨细胞样的MG-63和Saos-2细胞在165°C的水热条件下和温度下在钛(Ti)和铌(Nb)载体上以及表面上被氧化的TiNb合金上的粘附,生长和分化。气流中600°C。样品的氧化模式和化学组成可调节其表面上电荷的形态,形貌和分布,这使我们能够评估这些材料特性在细胞与样品表面相互作用中的重要性。粘附的MG-63和Saos-2细胞的数量与合金表面上带正电(与Nb2O5相有关)和带负电的部位(与TiO2相有关)的数量相关。这些细胞的增殖与Nb2O5合金相带正电(即碱性)的位点相关,而细胞分化与TiO2合金相带负电(酸性)的位点相关。在165℃下经水热处理的样品上,在600℃下被氧化的合金样品上的带电部位和粘附的细胞的数量显着更高。 Ti样品上生长的细胞的成骨细胞分化标志物(I型胶原和骨钙素)的表达值高于TiNb样品上的细胞。这在165℃下处理的样品中尤其明显。在测试样品上未发现鼠巨噬细胞样RAW 264.7细胞有明显的免疫激活作用。与在细菌脂多糖存在下生长的细胞或未处理的对照样品相比,这些细胞向细胞培养基中分泌的TNF-α要低得多。因此,氧化的Ti和TiNb都是用于骨植入的有前途的材料。 TiNb用于需要骨细胞增殖的应用,Ti用于诱导成骨细胞分化。

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