Department of Biological and Agricultural Engineering, University of California, Davis, California 95616, United States.
Department of Food Science and Technology, University of California, Davis, California 95616, United States.
ACS Appl Bio Mater. 2023 Jun 19;6(6):2459-2467. doi: 10.1021/acsabm.3c00265. Epub 2023 Jun 5.
The emerging infectious diseases have created one of the major practical needs to develop active packaging materials with durable antibacterial and antiviral properties for the food industry. To meet this demand, the development of new technologies applicable to food contact surfaces is highly desired but challenging. The recent discovery of the photoactive properties of vitamin K (VK) derivatives has raised great expectations as promising candidates in functional film development due to the generation of biocidal reactive oxygen species (ROS) by these compounds. Inspired by the excellent photoactivity of one of the light-stable VK derivatives, menadione (VK), under visible daylight irradiation, we demonstrate a protocol for the fabrication of daylight-mediated biocidal packaging materials by incorporating VK into a poly (ethylene-co-vinyl acetate) (EVA) matrix. The VK (i.e., 1-5% w/w) incorporated EVA films successfully demonstrated the production of ROS and antibacterial and antiviral performance against , , and T7 bacteriophage, respectively, under daylight exposure conditions. The results revealed that the addition of a proper percentage of VK significantly enhanced the ROS productivity of the films and created a novel daylight-induced microbial killing performance on the films. The biocidal functions of the films are long-lasting and rechargeable when exposed to light repeatedly, making them a viable contender for replacing currently available conventional packaging films.
新兴传染病为食品工业开发具有耐用抗菌和抗病毒性能的活性包装材料创造了主要实际需求之一。为了满足这一需求,非常需要开发适用于食品接触表面的新技术,但具有挑战性。由于这些化合物会产生杀菌活性氧 (ROS),VK 衍生物的光活性的最新发现引起了人们的极大期望,因为它们是功能性薄膜开发的有前途的候选物。受一种光稳定 VK 衍生物,即维生素 K3(VK3)在可见光照射下的优异光活性的启发,我们展示了一种通过将 VK3 掺入聚(乙烯-共-醋酸乙烯酯)(EVA)基质中来制备日光介导的杀菌包装材料的方案。VK3(即 1-5%w/w)掺入的 EVA 薄膜在日光暴露条件下成功地证明了 ROS 的产生以及对 、 、和 T7 噬菌体的抗菌和抗病毒性能。结果表明,添加适当百分比的 VK3 可显著提高薄膜的 ROS 产生能力,并在薄膜上产生新颖的日光诱导微生物杀伤性能。当反复暴露于光时,薄膜的杀菌功能持久且可再充电,使它们成为替代当前可用的常规包装薄膜的可行竞争者。