Materias S.r.l., Corso N. Protopisani, 80146 Napoli, Italy.
Institute of Biosciences and BioResources, National Research Council (CNR-IBBR), 80131 Napoli, Italy.
Int J Mol Sci. 2019 Jan 30;20(3):601. doi: 10.3390/ijms20030601.
Food packaging is not only a simple protective barrier, but a real "active" component, which is expected to preserve food quality, safety and shelf-life. Therefore, the materials used for packaging production should show peculiar features and properties. Specifically, antimicrobial packaging has recently gained great attention with respect to both social and economic impacts. In this paper, the results obtained by using a polymer material functionalized by a small synthetic peptide as "active" packaging are reported. The surface of Polyethylene Terephthalate (PET), one of the most commonly used plastic materials in food packaging, was plasma-activated and covalently bio-conjugated to a bactenecin-derivative peptide named 1018K6, previously characterized in terms of antimicrobial and antibiofilm activities. The immobilization of the peptide occurred at a high yield and no release was observed under different environmental conditions. Moreover, preliminary data clearly demonstrated that the "active" packaging was able to significantly reduce the total bacterial count together with yeast and mold spoilage in food-dairy products. Finally, the functionalized-PET polymer showed stronger efficiency in inhibiting biofilm growth, using a strain isolated from food products. The use of these "active" materials would greatly decrease the risk of pathogen development and increase the shelf-life in the food industry, showing a real potential against a panel of microorganisms upon exposure to fresh and stored products, high chemical stability and re-use possibility.
食品包装不仅是一种简单的保护屏障,还是一种真正的“活性”成分,有望保持食品的质量、安全性和保质期。因此,用于包装生产的材料应具有特殊的特性和性能。具体而言,抗菌包装在社会和经济方面都受到了极大的关注。本文报告了使用经小合成肽功能化的聚合物材料作为“活性”包装的结果。聚对苯二甲酸乙二醇酯(PET)的表面是通过等离子体激活并通过共价生物偶联到一种先前在抗菌和抗生物膜活性方面进行了表征的名为 1018K6 的杀菌素衍生肽而进行功能化的。肽的固定化产率很高,在不同的环境条件下均未观察到释放。此外,初步数据清楚地表明,“活性”包装能够显著降低食品乳制品中总细菌数以及酵母和霉菌的变质。最后,功能化的 PET 聚合物在抑制生物膜生长方面表现出更强的效率,使用了一种从食品产品中分离出的菌株。在接触新鲜和储存产品、高化学稳定性和可重复使用性的情况下,这些“活性”材料的使用将大大降低病原体发展的风险并延长食品工业的保质期,对一系列微生物具有实际潜力。