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An Advanced In Vitro Technology Platform to Study the Mechanism of Action of Prebiotics and Probiotics in the Gastrointestinal Tract

机译:一种先进的体外技术平台,用于研究益生元和益生菌在胃肠道中的作用机制

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The gastrointestinal tract (GIT) hosts the most complex microbial community in the human body. Given the extensive metabolic potential which is present in this community, this additional organ is of key importance to maintain a healthy status and several diseases are frequently correlated with an alteration of the composition/functionality of the gut microbiota. Consequently, there is a great interest in identifying potential approaches that could modulate the microbiota and its metabolism to bring about a positive health effect. A classical approach to reach this goal is the use of prebiotics and/or probiotics. How to study the potential effect of new prebiotics/probiotics and how to localize this effect along the full GIT? Human intervention trials are the golden standard to validate functional properties of food products. Yet, most studies on gut microbiota are based on the analysis of fecal samples because they are easily collected in a non-invasive manner. A complementary option is represented by well-designed in vitro simulation technologies. Among all the available systems, the Simulator of Human Intestinal Microbial Ecosystem has already been shown to be a useful model for nutrition studies in terms of analysis of the intestinal microbial community composition and activity. The Simulator of Human Intestinal Microbial Ecosystem is a scientifically validated platform representing the physiology and microbiology of the adult human GIT. Furthermore, recent advances in in vitro modelling also allow to combine the study of bacteria-host interactions, such as mucosal adhesion and interaction with the immune system, thereby further increasing the value of the scientific output.
机译:胃肠道(Git)宿主在人体中最复杂的微生物群落。鉴于该社区中存在的广泛代谢潜力,这种额外的器官具有重要的重要性,以保持健康的状态,并且几种疾病经常与肠道微生物的组成/官能团的改变相关。因此,对识别可以调节微生物群及其新陈代谢来带来正面健康效应的潜在方法非常兴趣。达到这一目标的经典方法是使用益生元和/或益生菌。如何研究新的益生元/益生菌的潜在效果以及如何沿着完整的git本地化这种效果?人类干预试验是验证食品功能性质的黄金标准。然而,大多数关于肠道微生物群的研究基于粪便样品的分析,因为它们容易以非侵入性方式收集。通过精心设计的体外仿真技术来代表互补选项。在所有可用的系统中,人类肠道微生物生态系统的模拟器已经被证明是在肠道微生物群落组成和活性分析方面是营养研究的有用模型。人类肠道微生物生态系统的模拟器是一个科学验证的平台,代表成人人类Git的生理和微生物学。此外,体外建模的最近进步也允许结合对细菌宿主相互作用的研究,例如粘膜粘附和与免疫系统的相互作用,从而进一步增加了科学输出的价值。

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