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Silver Nanocluster-Embedded Zein Films as Antimicrobial Coating Materials for Food Packaging

机译:嵌入式玉米蛋白膜作为食品包装的抗微生物涂料

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摘要

Highly efficient antimicrobial agents with low toxicity and resistance have been enthusiastically pursued to address public concerns on microbial contamination in food. Silver nanoclusters (AgNCs) are known for their ultrasmall sizes and unique optical and chemical properties. Despite extensive studies of AgNCs for biomedical applications, previous research on their application as antimicrobials for food applications is very limited. Here, for the first time, by incorporating AgNCs (~2 nm in diameter) into zein films that are widely used as food packaging materials, we developed a novel coating material with potent antimicrobial activity, low toxicity to human cells, and low potential to harm the environment. In addition, we systematically evaluated the antimicrobial activities and cytotoxicity of AgNCs-embedded zein films and compared them to zein films embedded with AgNO3 or Ag nanoparticles with diameters of 10 and 60 nm (AgNP10 and AgNP60, respectively). At equivalent silver concentrations, AgNCs and AgNO3 solutions exhibited considerably higher antimicrobial activities than those of AgNP10 and AgNP60 solutions. Moreover, AgNCs exhibited less cytotoxicity to human cells than AgNO3, with a half maximal inhibitory concentration (IC50) of 34.68 μg/mL for AgNCs, compared to 9.14 μg/mL for AgNO3. Overall, the novel AgNCs coating developed in this research has great potential for antimicrobial applications in food packaging materials due to its high antimicrobial efficacy, ultrasmall size, and low cytotoxicity.
机译:具有低毒性和抗高效的抗菌药物已经积极开展,以解决食品中微生物污染公众的关注。银纳米团簇(AgNCs)是众所周知的超小尺寸和独特的光学和化学性质。尽管AgNCs用于生物医学应用的广泛的研究,对他们的作为抗菌剂用于食品应用程序以前的研究是非常有限的。这里,对于第一次,通过掺入AgNCs(直径为2nm)到玉米醇溶蛋白膜,其被广泛用作食品包装材料中,我们开发了一种新的涂层材料具有有效的抗微生物活性,毒性低到人细胞,并且低电势,以危害环境。此外,我们系统的评价的抗微生物活性和AgNCs包埋玉米醇溶蛋白膜的细胞毒性和它们相比(分别为AgNP10和AgNP60)到玉米醇溶蛋白嵌入用AgNO 3或Ag纳米颗粒与10的直径和60nm的膜。在相当于银的浓度,AgNCs和AgNO3溶液显示出比那些AgNP10和AgNP60解决方案的显着更高的抗微生物活性。此外,表现出AgNCs少的细胞毒性对人体细胞的比的AgNO 3,具有34.68微克/毫升的用于AgNCs的半数抑制浓度(IC 50),相比于9.14微克/毫升为硝酸银。总体而言,新的AgNCs本研究开发的涂料,由于其较高的抗菌效能,超小尺寸和低毒性具有用于食品包装材料的抗菌应用的巨大潜力。

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