Hui Aiping, Yang Fangfang, Yan Rui, Kang Yuru, Wang Aiqin
Key Laboratory of Clay Mineral Applied Research of Gansu Province, Center of Eco-Material and Green Chemistry, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China.
Nanomaterials (Basel). 2021 Nov 28;11(12):3230. doi: 10.3390/nano11123230.
A synergistic antibacterial strategy is effective in enhancing the antibacterial efficacy of a single antibacterial material. Plant essential oils (PEOs) are safe antibacterial agents. However, some of their characteristics such as intense aroma, volatility, and poor thermal stability limit their antibacterial activity and applications. In this paper, five kinds of PEOs were incorporated onto ZnO/palygorskite (ZnO/PAL) nanoparticles by a simple adsorption process to form organic-inorganic nanocomposites (PEOs/ZnO/PAL) with excellent antibacterial properties. TEM and SEM analyses demonstrated that ZnO nanoparticles uniformly anchored onto the surface of rod-like PAL, and that the structure of ZnO/PAL maintained after the incorporation of ZnO nanoparticles and PEOs. It was found that carvacrol/ZnO/palygorskite (CAR/ZnO/PAL) exhibited higher antibacterial activities than other PEOs/ZnO/PAL nanocomposites, with minimum inhibitory concentration (MIC) values of 0.5 mg/mL and 1.5 mg/mL against () and (), respectively. Moreover, the antibacterial efficiency of CAR/ZnO/PAL nanocomposites was superior to that of ZnO/PAL and pure CAR, demonstrating the synergistic effect that occurs in the combined system. PAL serving as a carrier for the combination of organic PEOs and ZnO nanoparticles is an effective strategy for enhanced, clay-based, organic-inorganic hybrid antibacterial nanocomposites.
一种协同抗菌策略在增强单一抗菌材料的抗菌效果方面是有效的。植物精油(PEOs)是安全的抗菌剂。然而,它们的一些特性,如强烈的香气、挥发性和较差的热稳定性,限制了它们的抗菌活性和应用。在本文中,通过简单的吸附过程将五种PEOs负载到ZnO/凹凸棒石(ZnO/PAL)纳米颗粒上,以形成具有优异抗菌性能的有机-无机纳米复合材料(PEOs/ZnO/PAL)。透射电子显微镜(TEM)和扫描电子显微镜(SEM)分析表明,ZnO纳米颗粒均匀地锚定在棒状PAL的表面,并且在引入ZnO纳米颗粒和PEOs后,ZnO/PAL的结构得以保持。结果发现,香芹酚/ZnO/凹凸棒石(CAR/ZnO/PAL)比其他PEOs/ZnO/PAL纳米复合材料表现出更高的抗菌活性,对()和()的最低抑菌浓度(MIC)值分别为0.5 mg/mL和1.5 mg/mL。此外,CAR/ZnO/PAL纳米复合材料的抗菌效率优于ZnO/PAL和纯CAR,证明了组合体系中存在协同效应。PAL作为有机PEOs和ZnO纳米颗粒组合的载体,是增强基于粘土的有机-无机杂化抗菌纳米复合材料的有效策略。