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Influence of nanoporous titanium niobium alloy surfaces produced via hydrogen peroxide oxidative etching on the osteogenic differentiation of human mesenchymal stromal cells

机译:通过过氧化氢蚀刻产生的纳米氧化钛铌合金表面对人间充质基质细胞的骨质发生分化的影响

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摘要

Titanium niobium alloys exhibit a lower stiffness compared to Ti6Al4V, the 'gold standard' for load-bearing bone implants. Thus, the critical mismatch in stiffness between the implant and adjacent bone tissue could be addressed with TiNb alloys and thereby reduce stress shielding, which can result in bone resorption and subsequent implant loosening; however, the cellular response on the specific material is crucial for sufficient osseointegration. We therefore hypothesize that the response of human mesenchymal stromal cells (hMSC) and osteoblast-like cells on Ti45Nb surfaces can be improved by a novel nanoporous surface structure. For this purpose, an etching technique using hydrogen peroxide electrolyte solution was applied to Ti45Nb. The treated surfaces were characterized using SEM, LSM, AFM, nanoindentation, and contact angle measurements. Cell culture experiments using hMCS and MG-63 were conducted. The H2O2 treatment resulted in surface nanopores, an increase in surface wettability and a reduction in surface hardness. The proliferation of MG-63 was enhanced on TiNb45 compared to Ti6Al4V. MG-63 focal adhesion complexes were detected on all Ti45Nb surfaces, whereas the nanostructures notably increased the cell area and decreased cell solidity, indicating stimulated cell spreading and pseudopodia formation. Alizarin red stainings indicated that the nanoporous surfaces stimulated the osteogenic differentiation of hMSC. It can be concluded that the proposed surface treatment could potentially help to stimulate the osseointegration behaviour of the advantageous low stiff Ti45Nb alloy.
机译:与Ti6Al4V相比,铌铌合金具有较低的刚度,该载量是负载骨植入物的“金标准”。因此,可以用锡合金寻址植入物和相邻骨组织之间的刚度的临界失配,从而减少应力屏蔽,这可能导致骨吸收和随后的植入物松动;然而,对特定材料的细胞响应对于足够的骨整合至关重要。因此,我们假设人间充质基质细胞(HMSC)和成骨细胞样细胞对Ti45NB表面上的响应可以通过新颖的纳米多孔表面结构改善。为此目的,将使用过氧化氢电解质溶液的蚀刻技术应用于Ti45NB。使用SEM,LSM,AFM,纳米狭窄和接触角测量来表征处理过的表面。使用HMC和MG-63进行细胞培养实验。 H 2 O 2处理导致表面纳米孔,表面润湿性的增加和表面硬度降低。与Ti6Al4V相比,TinB45对Mg-63的增殖增强。在所有Ti45NB表面上检测Mg-63焦粘连络合物,而纳米结构显着增加细胞面积并降低细胞稳定性,表明刺激的细胞扩散和伪组形成。茜素红染色表明纳米多孔表面刺激了HMSC的骨质发生分化。可以得出结论,所提出的表面处理可能有助于刺激有利的低硬化Ti45NB合金的骨整合行为。

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