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静电自组装法在交替浸渍法中在 Ti-6Al-7Nb 合金上沉积富含咖啡酸的生物功能壳聚糖层

Electrostatic self-assembly approach in the deposition of bio-functional chitosan-based layers enriched with caffeic acid on Ti-6Al-7Nb alloys by alternate immersion.

机构信息

AGH University of Science and Technology, Faculty of Materials Science and Ceramics, A. Mickiewicza Av. 30, 30 059 Kraków, Poland; AGH University of Science and Technology, Academic Centre for Materials and Nanotechnology, A. Mickiewicza Av. 30, 30 059 Kraków, Poland.

Jagiellonian University, Faculty of Chemistry, Gronostajowa 2, 30 387 Kraków, Poland.

出版信息

Biomater Adv. 2022 May;136:212791. doi: 10.1016/j.bioadv.2022.212791. Epub 2022 Apr 4.

Abstract

Tailoring surface properties by layer-by-layer (LBL) deposition directed on the construction of complex multilayer coatings with nanoscale precision enables the development of novel structures and devices with desired functional properties (i.e., osseointegration, bactericidal activity, biocorrosion protection). Herein, electrostatic self-assembly was applied to fabricate biopolymer-based coatings involving chitosan (CSM) and alginate (AL) enriched with caffeic acid (CA) on Ti-6Al-7Nb alloyed surfaces. The method of CA grafting onto the chitosan backbone (CA-g-CSM) as well as all used reagents for implant functionalization were chosen as green and sustainable approach. The final procedure of surface modification of the Ti-6Al-7Nb alloy consists of three steps: (i) chemical treatment in Piranha solution, (ii) plasma chemical-activation of the Ti alloy surface in a RF CVD (Radio Frequency Chemical Vapour Deposition) reactor using Ar, O and NH gaseous precursors, and (iii) a multi-step deposition of bio-functional coatings via dip-coating method. Corrosion tests have revealed that the resulting chitosan-based coatings, also these involving CA, block the specimen surface and hinder corrosion of titanium alloy. Furthermore, the antioxidant layers are characterized by beneficial level of roughness (R up ca. 350 nm) and moderate hydrophilicity (59°) with the dispersion part of conducive surface energy ca. 30 mJ/m. Noteworthy, all coatings are biocompatible as the intact morphology of cultured eukaryotic cells ensured proper growth and proliferation, while exhibit bacteriostatic character, particularly in contact with Gram-(-) bacteria (E. coli). The study indicates that the applied simple sustainable strategy has contributed significantly to obtaining homogeneous, stable, and biocompatible while antibacterial biopolymer-based coatings.

摘要

通过逐层(LBL)沉积对复杂多层涂层进行精确的纳米级表面修饰,可以在所需功能特性(即骨整合、杀菌活性、生物腐蚀防护)的指导下,开发出具有新颖结构和器件。在此,静电自组装被应用于构建基于生物聚合物的涂层,该涂层涉及壳聚糖(CSM)和海藻酸钠(AL),并富含咖啡酸(CA),用于 Ti-6Al-7Nb 合金表面。CA 接枝到壳聚糖主链上的方法(CA-g-CSM)以及用于植入物功能化的所有试剂都被选择为绿色和可持续的方法。Ti-6Al-7Nb 合金表面修饰的最终步骤包括三个步骤:(i)在 Piranha 溶液中进行化学处理,(ii)在 RF CVD(射频化学气相沉积)反应器中使用 Ar、O 和 NH 气体前体对 Ti 合金表面进行等离子体化学活化,以及(iii)通过浸涂法进行多步生物功能涂层沉积。腐蚀测试表明,所得的壳聚糖基涂层,包括那些涉及 CA 的涂层,阻止了试样表面的腐蚀。此外,抗氧化层的粗糙度(R 约为 350nm)适中,亲水性(59°)适中,表面能分散部分约为 30mJ/m。值得注意的是,所有涂层均具有生物相容性,因为培养的真核细胞的完整形态确保了适当的生长和增殖,同时表现出抑菌特性,特别是与革兰氏阴性(E.coli)细菌接触时。该研究表明,所应用的简单可持续策略对获得均匀、稳定、生物相容且具有抗菌性的生物聚合物基涂层具有重要贡献。

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