Torres Dominguez Eduardo, Nguyen Phong H, Hunt Heather K, Mustapha Azlin
Dept. of Biomedical, Biological & Chemical Engineering, Univ. of Missouri, Columbia, MO, 65211, U.S.A.
Food Science Program, Univ. of Missouri, Columbia, MO, 65211, U.S.A.
Compr Rev Food Sci Food Saf. 2019 Nov;18(6):1825-1858. doi: 10.1111/1541-4337.12502. Epub 2019 Oct 16.
Food contact surfaces (FCS) in food processing facilities may become contaminated with a number of unwanted microorganisms, such as Listeria monocytogenes, Escherichia coli O157:H7, and Staphylococcus aureus. To reduce contamination and the spread of disease, these surfaces may be treated with sanitizers or have active antimicrobial components adhered to them. Although significant efforts have been devoted to the development of coatings that improve the antimicrobial effectiveness of FCS, other important coating considerations, such as hardness, adhesion to a substrate, and migration of the antimicrobial substance into the food matrix, have largely been disregarded to the detriment of their translation into practical application. To address this gap, this review examines the mechanical properties of antimicrobial coatings (AMC) applied to FCS and their interplay with their antimicrobial properties within the framework of relevant regulatory constraints that would apply if these were used in real-world applications. This review also explores the various assessment techniques for examining these properties, the effects of the deposition methods on coating properties, and the potential applications of such coatings for FCS. Overall, this review attempts to provide a holistic perspective. Evaluation of the current literature urges a compromise between antimicrobial effectiveness and mechanical stability in order to adhere to various regulatory frameworks as the next step toward improving the industrial feasibility of AMC for FCS applications.
食品加工设施中的食品接触表面(FCS)可能会被多种有害微生物污染,如单核细胞增生李斯特菌、大肠杆菌O157:H7和金黄色葡萄球菌。为了减少污染和疾病传播,这些表面可用消毒剂处理,或附着有活性抗菌成分。尽管人们在开发提高FCS抗菌效果的涂层方面付出了巨大努力,但其他重要的涂层考量因素,如硬度、与基材的附着力以及抗菌物质向食品基质中的迁移,在很大程度上被忽视了,这不利于它们转化为实际应用。为了弥补这一差距,本综述在相关监管限制的框架内,研究了应用于FCS的抗菌涂层(AMC)的机械性能及其与抗菌性能的相互作用,这些限制在实际应用中是适用的。本综述还探讨了用于检测这些性能的各种评估技术、沉积方法对涂层性能的影响以及此类涂层在FCS中的潜在应用。总体而言,本综述试图提供一个全面的视角。对当前文献的评估促使在抗菌效果和机械稳定性之间达成妥协,以便遵守各种监管框架,这是提高AMC在FCS应用中的工业可行性的下一步。