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Evaluation of osteogenic cell culture and osteogenic/peripheral blood mononuclear human cell co-culture on modified titanium surfaces

机译:在改性钛表面上评估成骨细胞培养和成骨/外周血单核人细胞共培养

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摘要

This study aimed to determine the effect of a bioactive ceramic coating on titanium in the nanothickness range on human osteogenic cells, peripheral blood mononuclear cells (PBMC) and on osteogenic cells co-cultured with PBMC without exogenous stimuli. Cell viability, proliferation, adhesion, cytokine release (IL1β, TGFβ1, IL10 and IL17) and intracellular stain for osteopontin and alkaline phosphatase were assessed. Morphologic evaluation showed smaller and less spread cell aspects in co-culture relative to osteogenic cell culture. Cell viability, proliferation and adhesion kinetics were differently influenced by surface texture/chemistry in culture versus co-culture. Cytokine release was also influenced by the interaction between mononuclear and osteogenic cells (mediators released by mononuclear cells acted on osteogenic cells and vice versa). In general, 'multi-cell type' interactions played a more remarkable role than the surface roughness or chemistry utilized on the in vitro cellular events related to initial stages of bone formation.
机译:这项研究旨在确定生物活性陶瓷涂层在纳米厚度范围内对人体成骨细胞,外周血单核细胞(PBMC)以及与PBMC共培养而无外源刺激的成骨细胞上纳米厚度的影响。评估了骨桥蛋白和碱性磷酸酶的细胞活力,增殖,粘附,细胞因子释放(IL1β,TGFβ1,IL10和IL17)以及细胞内染色。形态学评估显示,与成骨细胞培养相比,共培养中细胞的分布面积较小,分布较少。细胞活力,增殖和粘附动力学受培养与共培养的表面质地/化学的不同影响。细胞因子的释放还受到单核细胞与成骨细胞之间相互作用的影响(单核细胞释放的介质作用于成骨细胞,反之亦然)。通常,“多细胞类型”相互作用的作用比表面粗糙度或化学作用在与骨骼形成初期有关的体外细胞事件中发挥的作用更为显着。

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