Department of Biological and Agricultural Engineering, University of California, One Shields Avenue, Davis, California 95616, United States.
Department of Food Science and Technology, University of California, One Shields Avenue, Davis, California 95616, United States.
ACS Appl Bio Mater. 2024 Mar 18;7(3):1842-1851. doi: 10.1021/acsabm.3c01247. Epub 2024 Feb 28.
The growing concerns regarding foodborne illnesses related to fresh produce accentuate the necessity for innovative material solutions, particularly on surfaces that come into close contact with foods. This study introduces a sustainable, efficient, and removable antimicrobial and antifouling coating ideally suited for hydrophobic food-contact surfaces such as low-density polyethylene (LDPE). Developed through a crosslinking reaction involving tannic acid, gelatin, and soy protein hydrolysate, these coatings exhibit proper stability in aqueous washing solutions and effectively combat bacterial contamination and prevent biofilm formation. The unique surface architecture promotes the formation of halamine structures, enhancing antimicrobial efficacy with a rapid contact killing effect and reducing microbial contamination by up to 5 log cfu·cm against both (Gram-negative) and (Gram-positive). Notably, the coatings are designed for at least five recharging cycles under mild conditions (pH6, 20 ppm free active chlorine) and can be easily removed with hot water or steam to refresh the depositions. This removal process not only conveniently aligns with existing sanitation protocols in the fresh produce industry but also facilitates the complete eradication of potential developed biofilms, outperforming uncoated LDPE coupons. Overall, these coatings represent sustainable, cost-effective, and practical advancements in food safety and are promising candidates for widespread adoption in food processing environments.
人们越来越关注与新鲜农产品相关的食源性疾病,这凸显了创新材料解决方案的必要性,特别是在与食品密切接触的表面。本研究介绍了一种可持续、高效且可移除的抗菌和防污涂层,非常适合疏水性食品接触表面,如低密度聚乙烯(LDPE)。该涂层通过涉及单宁酸、明胶和大豆蛋白水解物的交联反应开发而成,在水性洗涤溶液中具有适当的稳定性,并能有效抵抗细菌污染,防止生物膜形成。独特的表面结构促进了卤胺结构的形成,具有快速接触杀菌效果,抗菌效果显著,对革兰氏阴性菌和革兰氏阳性菌的减少率高达 5 个对数 CFU·cm。值得注意的是,该涂层在温和条件(pH6、20ppm 游离有效氯)下至少可进行五次再充电循环,并且可以用热水或蒸汽轻松去除,以更新沉积物。这种去除过程不仅与新鲜农产品行业现有的卫生协议相吻合,而且还方便地彻底消除了潜在的已开发生物膜,优于未涂层的 LDPE 优惠券。总的来说,这些涂层是食品安全方面可持续、具有成本效益且实用的进展,是在食品加工环境中广泛采用的有前途的候选物。