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Enhanced corrosion resistance and cytocompatibility of biomimetic hyaluronic acid functionalised silane coating on AZ31 Mg alloy for orthopaedic applications

机译:AZ31镁合金上用于骨科应用的仿生透明质酸官能化硅烷涂层的增强的耐腐蚀性和细胞相容性

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摘要

This paper reports the corrosion resistant and cytocompatible properties of the hyaluronic acid-silane coating on AZ31 Mg alloy. In this study, the osteoinductive properties of high molecular weight hyaluronic acid (HA, 1-4 MDa) and the corrosion protection of silane coatings were incorporated as a composite coating on biodegradable AZ31 Mg alloy for orthopaedic applications. The multi-step fabrication of coatings first involved dip coating of a passivated AZ31 Mg alloy with a methyltriethoxysilane-tetraethoxysilane sol-gel to deposit a dense, cross-linked and corrosion resistant silane coating (AZ31-MT). The second step was to create an amine-functionalised surface by treating coated alloy with 3-aminopropyl-triethoxy silane (AZ31-MT-A) which facilitated the immobilisation of HA via EDC-NHS coupling reactions at two different concentrations i.e 1 mg.ml(-1) (AZ31-MT-A-HA1) and 2 mg.ml(-1) (AZ31-MT-A-HA2). These coatings were characterised by Fourier transform infrared spectroscopy, atomic force microscopy and static contact angle measurements which confirmed the successful assembly of the full coatings onto AZ31 Mg alloy. The influence of HA-silane coating on the corrosion of Mg alloy was investigated by electrical impedance spectroscopy and long-term immersion studies measurements in HEPES buffered DMEM. The results showed an enhanced corrosion resistance of HA functionalised silane coated AZ31 substrate over the uncoated equivalent alloy. Furthermore, the cytocompatibility of MC3T3-E1 osteoblasts was evaluated on HA-coated AZ31-MT-A substrates by live-dead staining, quantification of total cellular DNA content, scanning electron microscope and alkaline phosphatase activity. The results showed HA concentration-dependent improvement of osteoblast cellular response in terms of enhanced cell adhesion, proliferation and differentiation. These findings hold great promise in employing such biomimetic multifunctional coatings to improve the corrosion resistance and cytocompatibility of biodegradable Mg-based alloy for orthopaedic applications.
机译:本文报道了AZ31 Mg合金上的透明质酸-硅烷涂层的耐腐蚀性和细胞相容性。在这项研究中,将高分子量透明质酸(HA,1-4 MDa)的骨诱导性能和硅烷涂层的防腐性能作为可生物降解的AZ31 Mg合金的复合涂层纳入骨科应用。涂层的多步骤制造首先涉及用甲基三乙氧基硅烷-四乙氧基硅烷溶胶-凝胶对钝化的AZ31 Mg合金进行浸涂,以沉积致密,交联且耐腐蚀的硅烷涂层(AZ31-MT)。第二步是通过用3-氨基丙基-三乙氧基硅烷(AZ31-MT-A)处理涂层合金来创建胺官能化表面,该涂层有助于通过两种不同浓度(即1 mg.ml)的EDC-NHS偶联反应固定HA (-1)(AZ31-MT-A-HA1)和2 mg.ml(-1)(AZ31-MT-A-HA2)。这些涂层通过傅里叶变换红外光谱,原子力显微镜和静态接触角测量进行了表征,这证实了将整个涂层成功组装到AZ31 Mg合金上。 HA-硅烷涂层对Mg合金腐蚀的影响通过电阻抗光谱法和HEPES缓冲DMEM中的长期浸没研究测量进行了研究。结果表明,与未涂覆的等效合金相比,HA官能化的硅烷涂覆的AZ31基材具有更高的耐腐蚀性。此外,通过活死染色,定量总细胞DNA含量,扫描电子显微镜和碱性磷酸酶活性,评估了HA包被的AZ31-MT-A底物上MC3T3-E1成骨细胞的细胞相容性。结果显示,在增强的细胞黏附,增殖和分化方面,HA浓度依赖于成骨细胞的细胞反应。这些发现为采用这种仿生多功能涂层改善用于骨科应用的可生物降解镁基合金的耐腐蚀性和细胞相容性提供了广阔的前景。

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  • 来源
    《Journal of materials science》 |2018年第9期|144.1-144.11|共11页
  • 作者单位

    Dublin Inst Technol, Ctr Res Engn & Surface Technol, Kevin St, Dublin 8, Ireland;

    Trinity Coll Dublin, Trinity Ctr Bioengn, Trinity Biomed Sci Inst, Dublin 2, Ireland;

    Trinity Coll Dublin, Trinity Ctr Bioengn, Trinity Biomed Sci Inst, Dublin 2, Ireland;

    Dublin Inst Technol, Ctr Res Engn & Surface Technol, Kevin St, Dublin 8, Ireland;

    Dublin Inst Technol, Sch Food Sci & Environm Hlth, Cathal Brugha St, Dublin 1, Ireland;

    Dublin Inst Technol, Ctr Res Engn & Surface Technol, Kevin St, Dublin 8, Ireland;

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