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首页> 外文期刊>Acta biomaterialia >Morphological zeta-potential variation of nanoporous anodic alumina layers and cell adherence.
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Morphological zeta-potential variation of nanoporous anodic alumina layers and cell adherence.

机译:纳米多孔阳极氧化铝层的形态ζ电势变化和细胞粘附。

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摘要

Nanoscale surface modification of biomedical implant materials offers enhanced biological activity concerning protein adsorption and cell adherence. Nanoporous anodic alumina oxide (AAO) layers were prepared by electrochemical oxidation of thin Al-seed layers in 0.22 M C2H2O4, applying anodization voltages of 20-60 V. The AAO layers are characterized by a mean pore diameter varying from 15 to 40 nm, a mean pore distance of 40-130 nm, a total porosity of ≈ 10% and a thickness of 560 ± 40 nm. Zeta potential and isoelectric point (iep) were derived from streaming potential measurements and correlated to the topology variation of the nanoporous AAO layers. With decreasing pore diameter a shift of iep from ≈ 7.9 (pore diameter 40 nm) to ≈ 6.7 (pore diameter 15 nm) was observed. Plain alumina layers, however, possess an iep of ≈ 9. Compared to the plain alumina surface an enhanced adherence and activity of hFOB cells was observed on the nanoporous AAO after 24h culture with a maximum at a pore size of 40 nm. The topology-induced change of the electrochemical surface state may have a strong impact on protein adsorption as well as on cell adhesion, which offers a high potential for the development of bioactive AAO coatings on various biomaterial substrates.
机译:生物医学植入物材料的纳米级表面改性提供了有关蛋白质吸附和细胞粘附的增强的生物活性。纳米多孔阳极氧化铝(AAO)层是通过在0.22 M C2H2O4中对Al种子薄层进行电化学氧化,施加20-60 V的阳极氧化电压而制备的。AAO层的特征在于平均孔径为15至40 nm,平均孔距为40-130 nm,总孔隙率约为10%,厚度为560±40 nm。 Zeta电位和等电点(iep)是从流动电位测量得出的,并且与纳米多孔AAO层的拓扑变化相关。随着孔径的减小,观察到iep从≈7.9(孔径40 nm)到≈6.7(孔径15 nm)的变化。但是,普通氧化铝层的iep约为9。与普通氧化铝表面相比,培养24小时后,在纳米多孔AAO上观察到hFOB细胞的粘附性和活性增强,最大孔径为40 nm。拓扑结构引起的电化学表面状态变化可能会对蛋白质吸附以及细胞粘附产生强烈影响,这为在各种生物材料基材上开发生物活性AAO涂层提供了巨大潜力。

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