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肠道芯片用于分析肠道微生物群落中细菌-细菌相互作用:在细菌共培养研究中需要什么来探索饮食-微生物群关系?

Gut-on-a-Chip for the Analysis of Bacteria-Bacteria Interactions in Gut Microbial Community: What Would Be Needed for Bacterial Co-Culture Study to Explore the Diet-Microbiota Relationship?

机构信息

Department of Food and Biotechnology, College of Science and Technology, Korea University, 2511, Sejong-ro, Sejong 30019, Republic of Korea.

Department of Food Regulatory Science, College of Science and Technology, Korea University, 2511, Sejong-ro, Sejong 30019, Republic of Korea.

出版信息

Nutrients. 2023 Feb 23;15(5):1131. doi: 10.3390/nu15051131.

Abstract

Bacterial co-culture studies using synthetic gut microbiomes have reported novel research designs to understand the underlying role of bacterial interaction in the metabolism of dietary resources and community assembly of complex microflora. Since lab-on-a-chip mimicking the gut (hereafter "gut-on-a-chip") is one of the most advanced platforms for the simulative research regarding the correlation between host health and microbiota, the co-culture of the synthetic bacterial community in gut-on-a-chip is expected to reveal the diet-microbiota relationship. This critical review analyzed recent research on bacterial co-culture with perspectives on the ecological niche of commensals, probiotics, and pathogens to categorize the experimental approaches for diet-mediated management of gut health as the compositional and/or metabolic modulation of the microbiota and the control of pathogens. Meanwhile, the aim of previous research on bacterial culture in gut-on-a-chip has been mainly limited to the maintenance of the viability of host cells. Thus, the integration of study designs established for the co-culture of synthetic gut consortia with various nutritional resources into gut-on-a-chip is expected to reveal bacterial interspecies interactions related to specific dietary patterns. This critical review suggests novel research topics for co-culturing bacterial communities in gut-on-a-chip to realize an ideal experimental platform mimicking a complex intestinal environment.

摘要

使用人工肠道微生物组进行细菌共培养研究已经报告了新的研究设计,以了解细菌相互作用在饮食资源代谢和复杂微生物群落组装中的潜在作用。由于模拟肠道的芯片实验室(以下简称“肠道芯片”)是用于模拟宿主健康与微生物组之间相关性的最先进平台之一,因此预计人工肠道微生物组中的合成细菌群落共培养将揭示饮食-微生物组之间的关系。本综述分析了细菌共培养的最新研究,从共生菌、益生菌和病原体的生态位角度对实验方法进行了分类,以实现对肠道健康的饮食介导管理,即对微生物组的组成和/或代谢调节以及对病原体的控制。同时,肠道芯片中细菌培养的先前研究主要局限于维持宿主细胞的活力。因此,将用于人工合成肠道共生体与各种营养资源共培养的研究设计与肠道芯片相结合,有望揭示与特定饮食模式相关的细菌种间相互作用。本综述为肠道芯片中细菌群落的共培养提出了新的研究课题,以实现模拟复杂肠道环境的理想实验平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90bb/10005057/51fdeee42737/nutrients-15-01131-g001.jpg

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