食品科学 ›› 2026, Vol. 47 ›› Issue (17): 342-357.doi: 10.7506/spkx1002-6630-20260114-124

• 专题论述 • 上一篇    下一篇

肠道类器官模型在食源性致病微生物研究中的进展与挑战

郑军龙,付贵,张小蓝,韩星,杨晨,赵勇,张昭寰   

  1. (1.上海海洋大学食品学院,食品与健康国际联合研究中心,上海 201306;2.农业农村部(上海)水产品贮藏保鲜质量安全风险评估实验室,上海 201306;3.上海水产品加工及贮藏工程技术研究中心,上海 201306)
  • 出版日期:2026-09-15 发布日期:2026-09-03
  • 基金资助:
    “十四五”国家重点研发计划项目(2024YFD2402204)

Advances and Challenges of Intestinal Organoid Models in Research on Foodborne Pathogenic Microorganisms

ZHENG Junlong, FU Gui, ZHANG Xiaolan, HAN Xing, YANG Chen, ZHAO Yong, ZHANG Zhaohuan   

  1. (1. International Research Center for Food and Health, College of Food Science and Technology, Shanghai Ocean University, Shanghai 201306, China; 2. Laboratory of Quality & Safety Risk Assessment for Aquatic Product on Storage and Preservation (Shanghai), Ministry of Agriculture and Rural Affairs, Shanghai 201306, China; 3. Shanghai Engineering Research Centre of Aquatic-Product Processing & Preservation, Shanghai 201306, China)
  • Online:2026-09-15 Published:2026-09-03

摘要: 食源性致病微生物严重威胁公共卫生与食品安全,深入研究其致病机制急需能高度模拟人体肠道复杂微环境的模型。传统细胞系与动物模型在此方面存在局限,难以满足机制探索与防控研发的精准需求。肠道类器官作为一种新兴的三维体外模型,以其能再现肠道细胞多样性、空间结构及关键生理功能的独特优势,为攻克上述瓶颈提供了革新性研究平台。本文系统阐述了该平台的构建方法、技术特点及其在食源性致病微生物研究中的应用。重点综述肠道类器官模型在揭示细菌、病毒及寄生虫的入侵机制、毒力作用、宿主免疫应答及上皮屏障损伤中的关键发现。进一步探讨通过微流控、共培养等工程化策略提升类器官仿生复杂性的最新进展,并剖析当前在力学模拟、多器官整合与标准化等领域所面临的核心挑战与未来方向。本文可为深入理解宿主与病原体互作、开发新型防控策略提供理论参考与技术视角。

关键词: 肠道类器官;食源性致病微生物;宿主-病原体相互作用

Abstract: Foodborne pathogenic microorganisms pose a serious threat to public health and food safety. In-depth investigation of their pathogenic mechanisms and interactions with the host urgently requires models that can accurately simulate the complex microenvironment of the human intestine. Traditional cell lines and animal models have limitations in this regard and struggle to meet the precise requirements for mechanistic exploration and the development of prevention and control strategies. As an emerging three-dimensional in vitro model, intestinal organoids, with their unique advantages of reproducing the diversity, spatial structure, and key physiological functions of intestinal cells, provide an innovative research platform to overcome the above-mentioned bottlenecks. This paper systematically describes the construction methods and technical characteristics of this platform, as well as its application in research on foodborne pathogenic microorganism. It focuses on reviewing the key findings from intestinal organoid models in revealing the invasion mechanisms and virulence of pathogenic bacteria, viruses, and parasites, host immune responses to these pathogens, and epithelial barrier damage caused by them. This article further explores the latest progress in enhancing the biomimetic complexity of organoids through engineering strategies such as microfluidics and co-culture, and analyzes the core challenges and future directions in the fields of mechanical simulation, multi-organ integration, and standardization. This paper provides a theoretical reference and technical perspective for an in-depth understanding of host-pathogen interactions and the development of new prevention and control strategies.

Key words: intestinal organoids; foodborne pathogenic microorganisms; host-pathogen interactions

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