Development of a Caco-2-based intestinal mucosal model to study intestinal barrier properties and bacteria-mucus interactions.

IF 12.2 1区 医学 Q1 GASTROENTEROLOGY & HEPATOLOGY
Gut Microbes Pub Date : 2025-12-01 Epub Date: 2024-12-23 DOI:10.1080/19490976.2024.2434685
Evelien Floor, Jinyi Su, Maitrayee Chatterjee, Elise S Kuipers, Noortje IJssennagger, Faranak Heidari, Laura Giordano, Richard W Wubbolts, Silvia M Mihăilă, Daphne A C Stapels, Yvonne Vercoulen, Karin Strijbis
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引用次数: 0

Abstract

The intestinal mucosal barrier is a dynamic system that allows nutrient uptake, stimulates healthy microbe-host interactions, and prevents invasion by pathogens. The mucosa consists of epithelial cells connected by cellular junctions that regulate the passage of nutrients covered by a mucus layer that plays an important role in host-microbiome interactions. Mimicking the intestinal mucosa for in vitro assays, particularly the generation of a mucus layer, has proven to be challenging. The intestinal cell-line Caco-2 is widely used in academic and industrial laboratories due to its capacity to polarize, form an apical brush border, and reproducibly grow into confluent cell layers in different culture systems. However, under normal culture conditions, Caco-2 cultures lack a mucus layer. Here, we demonstrate for the first time that Caco-2 cultures can form a robust mucus layer when cultured under air-liquid interface (ALI) conditions on Transwell inserts with addition of vasointestinal peptide (VIP) in the basolateral compartment. We demonstrate that unique gene clusters are regulated in response to ALI and VIP single stimuli, but the ALI-VIP combination treatment resulted in a significant upregulation of multiple mucin genes and proteins, including secreted MUC2 and transmembrane mucins MUC13 and MUC17. Expression of tight junction proteins was significantly altered in the ALI-VIP condition, leading to increased permeability to small molecules. Commensal Lactiplantibacillus plantarum bacteria closely associated with the Caco-2 mucus layer and differentially colonized the surface of the ALI cultures. Pathogenic Salmonella enterica were capable of invading beyond the mucus layer and brush border. In conclusion, Caco-2 ALI-VIP cultures provide an accessible and straightforward way to culture an in vitro intestinal mucosal model with improved biomimetic features. This novel in vitro intestinal model can facilitate studies into mucus and epithelial barrier functions and in-depth molecular characterization of pathogenic and commensal microbe-mucus interactions.

建立基于caco -2的肠粘膜模型,研究肠屏障特性和细菌-粘液相互作用。
肠粘膜屏障是一个动态系统,允许营养摄取,刺激健康的微生物-宿主相互作用,并防止病原体的入侵。粘膜由细胞连接连接的上皮细胞组成,这些细胞连接调节黏液层覆盖的营养物质的通过,黏液层在宿主-微生物组相互作用中起重要作用。在体外实验中模拟肠粘膜,特别是黏液层的产生,已被证明是具有挑战性的。肠道细胞系Caco-2在不同的培养体系中具有极化、形成顶端刷状边界、可重复生长成融合细胞层的能力,被广泛应用于学术和工业实验室。然而,在正常培养条件下,Caco-2培养物缺乏黏液层。在这里,我们首次证明Caco-2培养物在气液界面(ALI)条件下在Transwell插入物上在基底外侧隔室中添加血管肠肽(VIP)时可以形成坚固的黏液层。我们发现,在ALI和VIP的单一刺激下,独特的基因簇受到调控,但ALI-VIP联合治疗导致多种粘蛋白基因和蛋白的显著上调,包括分泌的MUC2和跨膜粘蛋白MUC13和MUC17。在ALI-VIP条件下,紧密连接蛋白的表达显著改变,导致对小分子的通透性增加。共生植物乳杆菌与Caco-2黏液层密切相关,并在ALI培养物表面有差异定植。致病性肠炎沙门氏菌能够越过黏液层和毛刷边界侵入。综上所述,Caco-2 ALI-VIP培养物为体外培养具有较好仿生特性的肠粘膜模型提供了一种简便易行的方法。这种新型的体外肠道模型有助于研究黏液和上皮屏障功能,以及病原和共生微生物-黏液相互作用的深入分子表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Gut Microbes
Gut Microbes Medicine-Microbiology (medical)
CiteScore
18.20
自引率
3.30%
发文量
196
审稿时长
10 weeks
期刊介绍: The intestinal microbiota plays a crucial role in human physiology, influencing various aspects of health and disease such as nutrition, obesity, brain function, allergic responses, immunity, inflammatory bowel disease, irritable bowel syndrome, cancer development, cardiac disease, liver disease, and more. Gut Microbes serves as a platform for showcasing and discussing state-of-the-art research related to the microorganisms present in the intestine. The journal emphasizes mechanistic and cause-and-effect studies. Additionally, it has a counterpart, Gut Microbes Reports, which places a greater focus on emerging topics and comparative and incremental studies.
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