College of Food Science and Engineering, Yangzhou University, Yangzhou, China.
School of Food Science and Technology, Jiangnan University, Wuxi, China.
Crit Rev Food Sci Nutr. 2021;61(22):3876-3891. doi: 10.1080/10408398.2020.1809345. Epub 2020 Aug 25.
Modern food processing environment provides an ideal condition for biofilms formation by foodborne and spoilage microorganisms on different food contact surfaces. It is widely acknowledged that biofilm has become a serious problem in the food industry, as the biofilm growth mode induces microbial resistance to chemical disinfection. The persistence of biofilms after cleaning and disinfection procedures may result in foodborne illness and food spoilage, emphasizing the importance of preventing biofilms in food production facilities. The use of conventional disinfection technologies alone may not help to achieve the goal of producing safe food products with high quality. Hurdle technology provides a great option for the effective control of biofilms formed on food contact surfaces. Thus, a better understanding of biofilm behavior in response to different disinfectants, as well as seeking potential hurdle technologies to control biofilms are essential. In this review, we discuss the factors that influence the efficiency of disinfectants, and elaborate possible mechanisms which are behind the apparent high antimicrobial resistance of biofilms, and as well as mechanisms which are involved in effective hurdle technologies to control biofilms.
现代食品加工环境为食源性和腐败微生物在不同食品接触表面形成生物膜提供了理想条件。人们普遍认识到,生物膜的形成已经成为食品工业中的一个严重问题,因为生物膜的生长模式导致微生物对化学消毒产生抗性。清洗和消毒程序后生物膜的持续存在可能导致食源性疾病和食品变质,强调了在食品生产设施中预防生物膜的重要性。仅使用常规消毒技术可能无法实现生产高质量安全食品的目标。障碍技术为控制食品接触表面形成的生物膜提供了一个很好的选择。因此,更好地了解生物膜对不同消毒剂的反应行为,以及寻找潜在的障碍技术来控制生物膜是至关重要的。在这篇综述中,我们讨论了影响消毒剂效率的因素,并详细阐述了可能的机制,这些机制是生物膜表现出明显的高抗微生物性的背后原因,以及参与控制生物膜的有效障碍技术的机制。