In Vitro Co-culture of Bacterial and Mammalian Cells to Investigate Effects of Potential Probiotics on Intestinal Barrier Function.

IF 1 Q3 BIOLOGY
Ajitpal Purba, Rachel Claire Anderson, Dulantha Ulluwishewa
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引用次数: 0

Abstract

Human intestinal barrier function is crucial for health. Beneficial microbes, such as commensal gut bacteria and probiotics, are known to contribute to the regulation of this barrier function. Interactions between bacteria and human intestinal cells can be analyzed by co-culturing bacteria with mammalian cells in vitro. Here, we describe a method to assess the effect of individual bacterial strains on intestinal barrier function using automated transepithelial electrical resistance (TEER) measurements. Caco-2 cells are used as a model of the intestinal epithelium, as these cells spontaneously differentiate into small intestinal epithelial-like cells characterized by tight junctions between adjacent cells. These cells are seeded on polyester filter inserts and cultured for 17 days to form a differentiated monolayer prior to the co-culture experiment. Bacteria are grown on agar, and a single colony is used to prepare a liquid culture in bacterial broth appropriate for the bacteria of interest. On the day of the co-culture experiment, the bacterial culture is resuspended in cell culture medium at the desired concentration. Inserts are transferred to cellZscope cell modules to enable automated TEER measurements, and the medium in the insert is replaced with cell culture medium containing the bacteria of interest. This method allows for intestinal tight junction barrier function to be assessed non-invasively and in real-time in response to probiotics. The use of the automated cellZscope system eliminates the need for labor-intensive manual TEER measurements, which reduces the variability in data that results from human handling and temperature changes that occur when cells are removed from the incubator. Key features • Real-time measurement of the effects of aerobic or aerotolerant-anaerobic probiotics on intestinal barrier integrity. • Automated TEER measurements are achieved by a nanoAnalytics CellZscope instrument. • Requires at least four weeks to complete one experimental run, including the revival and growth of mammalian cells in flasks, prior to differentiation in inserts. • Completing the recommended three experimental runs, staggered by one week, takes six weeks.

细菌和哺乳动物细胞体外共培养研究潜在益生菌对肠道屏障功能的影响。
肠道屏障功能对人体健康至关重要。有益微生物,如共生肠道细菌和益生菌,已知有助于调节这种屏障功能。细菌与哺乳动物细胞体外共培养可以分析细菌与人肠细胞之间的相互作用。在这里,我们描述了一种评估单个细菌菌株对肠屏障功能的影响的方法,使用自动经上皮电阻(TEER)测量。Caco-2细胞被用作肠上皮的模型,因为这些细胞自发分化为小肠上皮样细胞,其特征是相邻细胞之间紧密连接。在共培养实验之前,将这些细胞播种在聚酯滤片上,培养17天形成分化的单层。细菌在琼脂上生长,单个菌落用于在细菌肉汤中准备适合感兴趣细菌的液体培养。在共培养实验当天,将细菌培养物以所需浓度重悬在细胞培养基中。插入物被转移到cellZscope细胞模块中,以实现自动TEER测量,插入物中的培养基被替换为含有感兴趣细菌的细胞培养基。这种方法可以对肠道紧密连接屏障功能进行无创和实时的评估,以响应益生菌。自动化cellZscope系统的使用消除了对劳动密集型人工TEER测量的需要,这减少了由于人工操作和细胞从培养箱中取出时发生的温度变化而导致的数据变化。•实时测量有氧或耐氧厌氧益生菌对肠道屏障完整性的影响。•自动化TEER测量是通过nanoAnalytics CellZscope仪器实现的。•至少需要4周时间完成一次实验,包括哺乳动物细胞在烧瓶中恢复和生长,然后在插入物中分化。•完成推荐的三个实验运行,间隔一周,需要六周。
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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CiteScore
1.50
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