Scattareggia Marchese Adriana, Destro Elena, Boselli Carlo, Barbero Francesco, Malandrino Mery, Cardeti Giusy, Fenoglio Ivana, Lanni Luigi
Istituto Zooprofilattico Sperimentale del Lazio e della Toscana "M. Aleandri", Sede di Roma, Via Appia Nuova 1411, 00178 Rome, Italy.
Department of Chemistry and Interdepartmental Centre for Nanostructured Interfaces and Surfaces (NIS), University of Turin, 10125 Turin, Italy.
Foods. 2022 Sep 20;11(19):2941. doi: 10.3390/foods11192941.
Human listeriosis is a serious foodborne disease of which outbreaks are occurring increasingly frequently in Europe. Around the world, different legal requirements exist to guarantee food safety. Nanomaterials are increasingly used in the food industry as inhibitors of pathogens, and carbon nanomaterials are among the most promising. In the present study, novel carbon nanoparticles loaded with copper (CNP-Cu) were prepared, and their antimicrobial activity against was assessed. CNPs of two sizes were synthesized and characterized by dynamic light scattering (DLS), electrophoretic light scattering (ELS) and electron microscopy (EM). The minimum inhibitory concentration (MIC) of CNP-Cu was determined in accordance with the available standard. To get insights into its mechanism of action, the release of copper ions into a cell media was assessed by inductively coupled plasma optical emission (ICP-OE), and the ability of loaded CNPs to generate cytotoxic reactive oxygen species (ROS) was evaluated by EPR spectroscopy. Finally, the extent of release of copper in a food simulant was assessed. The results demonstrated the antimicrobial effectiveness of CNP-Cu, with growth inhibition up to 85% and a release of copper that was more pronounced in an acidic food simulant. Overall, the results indicate CNP-Cu as a promising agent for the design of active food packaging which is able to improve food shelf-life.
人李斯特菌病是一种严重的食源性疾病,在欧洲其暴发频率日益增加。在全球范围内,存在不同的法律要求以保障食品安全。纳米材料在食品工业中越来越多地用作病原体抑制剂,碳纳米材料是最具潜力的材料之一。在本研究中,制备了负载铜的新型碳纳米颗粒(CNP-Cu),并评估了其对[此处原文缺失相关内容]的抗菌活性。合成了两种尺寸的碳纳米颗粒,并通过动态光散射(DLS)、电泳光散射(ELS)和电子显微镜(EM)进行表征。根据现有标准测定了CNP-Cu的最低抑菌浓度(MIC)。为深入了解其作用机制,通过电感耦合等离子体光发射(ICP-OE)评估了铜离子向细胞培养基中的释放,并通过电子顺磁共振波谱(EPR)评估了负载碳纳米颗粒产生细胞毒性活性氧(ROS)的能力。最后,评估了铜在食品模拟物中的释放程度。结果证明了CNP-Cu的抗菌效果,生长抑制率高达85%,并且在酸性食品模拟物中铜的释放更为明显。总体而言,结果表明CNP-Cu是一种有前景的用于设计活性食品包装的试剂,能够延长食品保质期。