Department of Chemical, Materials and Production Engineering, University of Naples Federico II, Piazzale V. Tecchio 80, 80125, Naples, Italy.
Department of Biology, University of Naples Federico II, Via Cintia 4, 80126, Naples, Italy.
Colloids Surf B Biointerfaces. 2021 Jun;202:111671. doi: 10.1016/j.colsurfb.2021.111671. Epub 2021 Mar 2.
Hybrid Melanin-TiO nanoparticles are promising bioinspired antibacterial agents for biomedical coatings and food-packaging fields. However, due to a very low colloidal stability, they showed a high tendency to self-aggregate and rapidly precipitate, making not easy their use in aqueous medium to produce homogeneous antimicrobial coatings or nanocomposites. A valid strategy to improve their dispersion is the combination with a hydrophilic water-soluble polymer such as poly-vinyl-alcohol (PVA), which is a good choice to improve the colloidal stability of nanoparticles and to modulate their agglomeration. In this work, we propose an in-situ synthetic approach based on the hydrothermal route, by which the hybrid Melanin-TiO nanoparticles were prepared starting from the inorganic and organic precursors in the presence of PVA. Combined approach of TEM, XRD, TG/DSC, EPR and DLS techniques allows for assessing the PVA role in the formation of hybrids and on their morphological features as well as colloidal stability and aqueous dispersion. Antibacterial tests demonstrated the biocide activity of PVA/Melanin-TiO nanoparticles against Escherichia coli bacterial cultures, which resulted partially influenced by the PVA content. This study provides key information on the mutual influence of organic/inorganic components on the functional properties of the final hybrid nanocomposites, contributing to define a much more far-reaching implementation in the synthesis of bioinspired polymer-based nanocomposites.
杂化黑色素-TiO 纳米粒子是一种有前途的仿生抗菌剂,可用于生物医学涂层和食品包装领域。然而,由于其胶体稳定性非常低,它们具有很高的自聚集和快速沉淀的趋势,使得它们不易在水介质中使用,以产生均匀的抗菌涂层或纳米复合材料。提高其分散性的有效策略是与亲水性水溶性聚合物(如聚乙烯醇(PVA))结合,这是改善纳米颗粒胶体稳定性和调节其聚集的好选择。在这项工作中,我们提出了一种基于水热法的原位合成方法,通过该方法,在 PVA 的存在下,从无机和有机前体制备了杂化黑色素-TiO 纳米粒子。TEM、XRD、TG/DSC、EPR 和 DLS 技术的综合方法允许评估 PVA 在形成杂化物及其形态特征以及胶体稳定性和水分散性方面的作用。抗菌测试证明了 PVA/黑色素-TiO 纳米粒子对大肠杆菌细菌培养物的杀菌活性,这部分受到 PVA 含量的影响。这项研究提供了关于有机/无机成分对最终杂化纳米复合材料功能特性的相互影响的关键信息,有助于在仿生聚合物基纳米复合材料的合成中定义更广泛的应用。