State Key Laboratory of Food Science and Technology, Nanchang University, Nanchang, China.
Crit Rev Food Sci Nutr. 2024;64(5):1429-1447. doi: 10.1080/10408398.2022.2116559. Epub 2022 Sep 6.
Micro(nano)plastics (MNPs) in human food system have been broadly recognized by researchers and have drawn an increasing public attention to their potential health risks, particularly the risk to the intestinal system regarding the long-term exposure to MNPs through food consumption. This study aims to review the environmental properties (formation and composition) of MNPs and MNPs pollution in human food system following the order of food production, food processing and food consumption. The current analytic and identical technologies utilized by researchers are also summarized in this review. In fact, parts of commonly consumed food raw materials, processed food and the way to take in food all become the possible sources for human MNPs ingestion. In addition, the available literatures investigating MNPs-induced intestinal adverse effect are discussed from in vitro models and in vivo mammalian experiments, respectively. Particle translocation, cytotoxicity, damaged gut barrier, intestinal inflammation as well as microbial alteration are mostly reported. Moreover, the practical remediation strategies for MNPs pollution are also illustrated in the last section. This review is expected to provide a research insight for foodborne MNPs and arouse more public awareness of MNPs pollution in food and potential risk for human intestinal health.
微塑料(MNPs)在人类食品系统中已被研究人员广泛认知,并引起了公众对其潜在健康风险的日益关注,特别是通过食物摄入长期暴露于 MNPs 对肠道系统的风险。本研究旨在按照食品生产、食品加工和食品消费的顺序,综述 MNPs 在人类食品系统中的环境特性(形成和组成)和 MNPs 污染。本综述还总结了研究人员目前使用的分析和鉴定技术。事实上,部分常见食用原料、加工食品以及摄入食物的方式都可能成为人类摄入 MNPs 的来源。此外,还分别从体外模型和体内哺乳动物实验两个方面讨论了研究 MNPs 诱导的肠道不良反应的文献。大多数报道的是颗粒移位、细胞毒性、肠道屏障受损、肠道炎症和微生物改变。此外,在最后一节还说明了针对 MNPs 污染的实际修复策略。本综述期望为食源 MNPs 提供研究见解,并引起公众对食品中 MNPs 污染及其对人类肠道健康潜在风险的更多关注。