Characterization of Iron Oxide Nanotubes Obtained by Anodic Oxidation for Biomedical Applications—In Vitro Studies

Materials Pub Date : 2024-07-23 DOI:10.3390/ma17153627
Rita de Cássia Reis Rangel, A. Rangel, Kerolene Barboza da Silva, A. Escada, Javier Andres Munoz Chaves, F. R. Maia, Sandra Pina, Rui Luís Reis, J. M. Oliveira, Ana Paula Rosifini Alves
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Abstract

To improve the biocompatibility and bioactivity of biodegradable iron-based materials, nanostructured surfaces formed by metal oxides offer a promising strategy for surface functionalization. To explore this potential, iron oxide nanotubes were synthesized on pure iron (Fe) using an anodic oxidation process (50 V–30 min, using an ethylene glycol solution containing 0.3% NH4F and 3% H2O, at a speed of 100 rpm). A nanotube layer composed mainly of α-Fe2O3 with diameters between 60 and 70 nm was obtained. The effect of the Fe-oxide nanotube layer on cell viability and morphology was evaluated by in vitro studies using a human osteosarcoma cell line (SaOs-2 cells). The results showed that the presence of this layer did not harm the viability or morphology of the cells. Furthermore, cells cultured on anodized surfaces showed higher metabolic activity than those on non-anodized surfaces. This research suggests that growing a layer of Fe oxide nanotubes on pure Fe is a promising method for functionalizing and improving the cytocompatibility of iron substrates. This opens up new opportunities for biomedical applications, including the development of cardiovascular stents or osteosynthesis implants.
用于生物医学的阳极氧化氧化铁纳米管的特性--体外研究
为了提高可生物降解铁基材料的生物相容性和生物活性,金属氧化物形成的纳米结构表面为表面功能化提供了一种前景广阔的策略。为了探索这一潜力,我们采用阳极氧化工艺(50 V-30 min,使用含 0.3% NH4F 和 3% H2O 的乙二醇溶液,转速为 100 rpm)在纯铁(Fe)上合成了氧化铁纳米管。得到的纳米管层主要由直径在 60 至 70 纳米之间的 α-Fe2O3 组成。通过使用人类骨肉瘤细胞系(SaOs-2 细胞)进行体外研究,评估了氧化铁纳米管层对细胞活力和形态的影响。结果表明,该层的存在不会损害细胞的活力和形态。此外,在阳极氧化表面上培养的细胞比在非阳极氧化表面上培养的细胞表现出更高的新陈代谢活性。这项研究表明,在纯铁上生长一层氧化铁纳米管是一种很有前景的方法,可以使铁基底功能化并改善其细胞相容性。这为生物医学应用带来了新的机遇,包括开发心血管支架或骨合成植入物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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