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Novel Polyfermentor Intestinal Model (PolyFermS) for Controlled Ecological Studies: Validation and Effect of pH

机译:用于受控生态研究的新型多发酵罐肠道模型(PolyFermS):pH值的验证和影响

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摘要

In vitro gut fermentation modeling offers a useful platform for ecological studies of the intestinal microbiota. In this study we describe a novel Polyfermentor Intestinal Model (PolyFermS) designed to compare the effects of different treatments on the same complex gut microbiota. The model operated in conditions of the proximal colon is composed of a first reactor containing fecal microbiota immobilized in gel beads, and used to continuously inoculate a set of parallel second-stage reactors. The PolyFermS model was validated with three independent intestinal fermentations conducted for 38 days with immobilized human fecal microbiota obtained from three child donors. The microbial diversity of reactor effluents was compared to donor feces using the HITChip, a high-density phylogenetic microarray targeting small subunit rRNA sequences of over 1100 phylotypes of the human gastrointestinal tract. Furthermore, the metabolic response to a decrease of pH from 5.7 to 5.5, applied to balance the high fermentative activity in inoculum reactors, was studied. We observed a reproducible development of stable intestinal communities representing major taxonomic bacterial groups at ratios similar to these in feces of healthy donors, a high similarity of microbiota composition produced in second-stage reactors within a model, and a high time stability of microbiota composition and metabolic activity over 38 day culture. For all tested models, the pH-drop of 0.2 units in inoculum reactors enhanced butyrate production at the expense of acetate, but was accompanied by a donor-specific reorganization of the reactor community, suggesting a concerted metabolic adaptation and trigger of community-specific lactate or acetate cross-feeding pathways in response to varying pH. Our data showed that the PolyFermS model allows the stable cultivation of complex intestinal microbiota akin to the fecal donor and can be developed for the direct comparison of different experimental conditions in parallel reactors continuously inoculated with the exact same microbiota.
机译:体外肠道发酵建模为肠道微生物群的生态研究提供了有用的平台。在这项研究中,我们描述了一种新型的Polyfermentor肠道模型(PolyFermS),旨在比较不同处理对同一复杂肠道菌群的影响。在近端结肠条件下运行的模型由包含固定在凝胶珠粒中的粪便微生物群的第一反应器组成,并用于连续接种一组平行的第二阶段反应器。 PolyFermS模型通过从三名儿童捐赠者处获得的固定化人类粪便菌群进行的三天独立肠道发酵进行了38天验证,该发酵过程进行了38天。使用HITChip将反应堆流出物的微生物多样性与供体粪便进行了比较,HITChip是一种高密度的系统发育微阵列,其靶向人类胃肠道的1100多种系统型的小亚基rRNA序列。此外,研究了pH值从5.7降至5.5的代谢反应,以平衡接种反应器中的高发酵活性。我们观察到代表主要分类细菌群的稳定肠道群落的可再现发展,其比率与健康供体粪便中的比率相似,模型中第二阶段反应器中产生的微生物群组成具有高度相似性,并且微生物群组成具有较高的时间稳定性。在38天的培养中代谢活动。对于所有测试的模型,接种反应器中的pH值降低0.2个单位可提高丁酸酯的生产,但以乙酸盐为代价,但伴随着反应器群落的供体特异性重组,这表明新陈代谢协调一致,并引发了群落特异性乳酸或醋酸盐交叉补料途径,以响应不断变化的pH值。我们的数据表明,PolyFermS模型可以稳定培养类似于粪便供体的复杂肠道菌群,并且可以开发用于直接比较连续接种完全相同菌群的平行反应器中的不同实验条件。

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