Ortega-Sanz Irene, Rajkovic Andreja
Department of Food Technology, Safety and Health, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, 9000 Ghent, Belgium.
Foods. 2025 Jul 10;14(14):2432. doi: 10.3390/foods14142432.
Recent studies have detected microplastics (MPs) in seafood and various food products worldwide, including poultry, fish, salt, beverages, fruits, and vegetables. This widespread contamination makes human exposure through consumption unavoidable and raises concerns for food safety and human health. MPs provide physical support to microorganisms for biofilm formation, protecting them from extreme conditions and facilitating their persistence in the environment. However, little is known about the impact of MPs in the transmission of foodborne pathogens and subsequent spread of infectious diseases like campylobacteriosis, the most common foodborne illness caused by a bacterium, . This review explores the sources of MP contamination in the food chain and offers a comprehensive overview of MP presence in animals, food products, and beverages. Moreover, we compile the available studies linking MPs and and examine the potential impact of these particles on the transmission of along the food chain with a particular focus on poultry, the main source and reservoir for the pathogen. While the environmental and toxicological effects of MPs are increasingly understood, their influence on the virulence of and the spread of antimicrobial resistance remains underexplored. Further studies are needed to develop standardized methods for isolating and identifying MPs, enabling comprehensive investigations and more effective monitoring and risk mitigation strategies.
最近的研究在全球范围内的海鲜及各种食品中检测到了微塑料,包括家禽、鱼类、盐、饮料、水果和蔬菜。这种广泛的污染使得人类通过食用接触微塑料不可避免,引发了对食品安全和人类健康的担忧。微塑料为微生物形成生物膜提供物理支撑,保护它们免受极端条件影响,并促进它们在环境中的持久存在。然而,关于微塑料在食源性病原体传播以及随后像弯曲杆菌病(由一种细菌引起的最常见食源性疾病)等传染病传播中的影响,人们了解甚少。本综述探讨了食物链中微塑料污染的来源,并全面概述了微塑料在动物、食品和饮料中的存在情况。此外,我们汇总了将微塑料与[此处原文缺失部分内容]联系起来的现有研究,并研究了这些颗粒对[此处原文缺失部分内容]沿食物链传播的潜在影响,特别关注家禽,它是该病原体的主要来源和宿主。虽然人们对微塑料的环境和毒理学影响的认识日益加深,但它们对抗微生物耐药性的毒力和传播的影响仍未得到充分研究。需要进一步开展研究,以开发用于分离和识别微塑料的标准化方法,从而能够进行全面调查,并制定更有效的监测和风险缓解策略。