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Response of Human Osteoblast to n-HA/PEEK—Quantitative Proteomic Study of Bio-effects of Nano-Hydroxyapatite Composite

机译:人成骨细胞对n-HA / PEEK的反应—纳米羟基磷灰石复合材料生物效应的定量蛋白质组学研究

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摘要

Nano-sized hydroxyapatite (n-HA) is considered as a bio-active material, which is often mixed into bone implant material, polyetheretherketone (PEEK). To reveal the global protein expression modulations of osteoblast in response to direct contact with the PEEK composite containing high level (40%) nano-sized hydroxyapatite (n-HA/PEEK) and explain its comprehensive bio-effects, quantitative proteomic analysis was conducted on human osteoblast-like cells MG-63 cultured on n-HA/PEEK in comparison with pure PEEK. Results from quantitative proteomic analysis showed that the most enriched categories in the up-regulated proteins were related to calcium ion processes and associated functions while the most enriched categories in the down-regulated proteins were related to RNA process. This enhanced our understanding to the molecular mechanism of the promotion of the cell adhesion and differentiation with the inhibition of the cell proliferation on n-HA/PEEK composite. It also exhibited that although the calcium ion level of incubate environment hadn’t increased, merely the calcium fixed on the surface of material had influence to intracellular calcium related processes, which was also reflect by the higher intracellular Ca2+ concentration of n-HA/PEEK. This study could lead to more comprehensive cognition to the versatile biocompatibility of composite materials. It further proves that proteomics is useful in new bio-effect discovery.
机译:纳米羟基磷灰石(n-HA)被认为是一种生物活性材料,通常混入骨植入材料聚醚醚酮(PEEK)中。为了揭示成骨细胞在直接与含有高水平(40%)纳米羟基磷灰石(n-HA / PEEK)的PEEK复合材料直接接触后的整体蛋白表达调节并解释其全面的生物效应,在此进行了定量蛋白质组分析与纯PEEK相比,在n-HA / PEEK上培养的人成骨样细胞MG-63。定量蛋白质组学分析的结果表明,上调蛋白中最丰富的类别与钙离子过程及其相关功能有关,而下调蛋白中最丰富的类别与RNA过程有关。这增强了我们对促进细胞黏附和分化并抑制n-HA / PEEK复合材料细胞增殖的分子机制的理解。研究还表明,尽管培养环境中的钙离子水平没有增加,但仅固定在材料表面的钙对细胞内钙相关过程有影响,这也可以由较高的细胞内Ca 2 + 反映出来。 sup> n-HA / PEEK的浓度。这项研究可能会导致更全面地认识复合材料的通用生物相容性。它进一步证明了蛋白质组学在新的生物效应发现中很有用。

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