Wang Ziyuan, Yang Haihong, Li Zhaofeng, Liu Jie
Key Laboratory of Geriatric Nutrition and Health, Beijing Technology and Business University, Ministry of Education, Beijing 100048, China.
National Center of Technology Innovation for Grain Industry, Comprehensive Utilization of Edible By-Products, Beijing Technology and Business University, Beijing 100048, China.
Foods. 2024 Dec 9;13(23):3980. doi: 10.3390/foods13233980.
Increasing antibiotic resistance is one of the world's greatest health problems, and biocide use in food disinfection, alongside other application fields, could increase antibiotic resistance. Effective and eco-friendly food decontamination treatment with minimal chemical intervention in food production is urgently needed. Synergistic antimicrobial interaction of photoactive compounds and blue-light-emitting diodes have recently been proven effective in agricultural and environmental applications. Curcumin-based non-thermal treatment has been reviewed in this work for the development of a safe and effective decontamination tool that could be adapted to the food industry. The antimicrobial mechanism of the synergistic interaction and the inhibitory efficacy against foodborne pathogens (bacteria in both vegetative form and spore, as well as in biofilms) are discussed. Further studies on curcumin and its derivative, as well as light illumination patterns, were compared for enhanced bactericidal efficacy. Moreover, studies relating to photodynamic inactivation treatment for food sanitation and food quality enhancement (cereal grains and other food products) were summarized, as well as the impact on food organoleptic and nutritional quality.
抗生素耐药性不断增加是全球最严重的健康问题之一,在食品消毒以及其他应用领域使用杀生剂可能会增加抗生素耐药性。迫切需要在食品生产中进行有效的、环保的食品去污处理,同时尽量减少化学干预。最近已证明,光活性化合物与蓝光发光二极管的协同抗菌相互作用在农业和环境应用中有效。本文综述了基于姜黄素的非热处理方法,以开发一种安全有效的去污工具,该工具可应用于食品工业。讨论了协同相互作用的抗菌机制以及对食源性病原体(营养型和孢子型细菌以及生物膜中的细菌)的抑制效果。比较了对姜黄素及其衍生物以及光照模式的进一步研究,以提高杀菌效果。此外,还总结了与用于食品卫生和提高食品质量(谷物和其他食品)的光动力灭活处理相关的研究,以及对食品感官和营养质量的影响。