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Application of density gradient for the isolation of the fecal microbial stool component and the potential use thereof

机译:密度梯度在粪便微生物粪便成分分离中的应用及其潜在用途

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摘要

The idea of considering the gut microbiota as a virtual human organ has led to the concept of fecal microbiota transplantation (FMT), which has recently been extremely successful in the treatment of cases of recurrent Clostridium difficile infection. Administration of safe, viable, and representative fecal microbiota is crucial for FMT. To our knowledge, suitable techniques and systematic conditions for separating the fecal microbiota from stool samples have not been thoroughly investigated. In this work we show the potential to separate stool microorganisms from the rest of fecal material using a procedure with a Nycodenz® density gradient, yielding 1010 viable bacteria per two grams of feces. This procedure did not affect the original microbiota composition in terms of viability, distribution and proportions, as assessed by a phylogenetic metagenomic approach. Obtaining the fecal microbiota by concentration and separation of the microorganisms from the rest of the stool components would allow the standardization of its recovery and its long-term preservation. FMT or similar microbiota restoration therapies could be used for the treatment of several disorders, or even for aesthetic purposes, so the method described in our work may contribute to the setting of the basis for the development of safe and standardized products.
机译:将肠道菌群视为虚拟人体器官的想法导致了粪便菌群移植(FMT)的概念,该概念最近在复发性艰难梭菌感染病例的治疗中非常成功。安全,可行和有代表性的粪便微生物群的管理对于FMT至关重要。据我们所知,从粪便样本中分离粪便微生物群的合适技术和系统条件尚未得到彻底研究。在这项工作中,我们展示了使用Nycodenz®密度梯度程序将粪便微生物与其余粪便物质分离的潜力,每两克粪便可产生10 10 活菌。如通过系统发育宏基因组学方法所评估的,该程序在生存力,分布和比例方面均不影响原始微生物群的组成。通过从其余粪便成分中浓缩和分离微生物来获得粪便微生物群,将使其恢复和长期保存标准化。 FMT或类似的微生物群修复疗法可用于治疗多种疾病,甚至用于美学目的,因此我们工作中描述的方法可能有助于为开发安全和标准化产品奠定基础。

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