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Framework as a Service FaaS: Personalized Prebiotic Development for Infants with the Elements of Time and Parametric Modelling of In Vitro Fermentation

机译:框架即服务即FaaS:针对婴儿的个性化益生元发展包括时间和体外发酵的参数化模型

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摘要

We proposed a framework with parametric modeling to obtain biological relevant parameters from the total probiotic growth pattern and metabolite production curves. The lag phase, maximum increase rate, and maximum capacity were obtained via a 205-h exploratory In vitro fermentation of a library of 13 structural-characterized prebiotic candidates against an exclusively breastfed infant fecal inoculum. We also conducted 16S rRNA amplicon sequencing of the infant fecal inoculum. Moreover, we introduce a robust composite metabolite-based indicator that reflects the eubiosis/dysbiosis of microbiota to complement the conventional microbial markers. In terms of short-chain fatty acid, we discovered that polymeric beta-glucans from barley demonstrated potential as prebiotic candidates, while alpha-glucans as glycogen showed the least dissolved ammonia production. In terms of total probiotic, beta-glucans from oat and mushroom sclerotia of showed comparable sustainability when compared to alpha-glucans after 48 h. Being classical prebiotic, galacto-oligosaccharides gave the second-highest metabolite-based indicator, followed by lactose. While limited improvement could be made to lactose and oligosaccharides, polymeric beta-glucans from barley avails more capacity for novel prebiotic development, such as structural modification. We anticipate that more similar parallel screening with the element of time and parametric modeling will provide more novel insights.
机译:我们提出了一个带有参数化建模的框架,以从总益生菌的生长方式和代谢产物生产曲线中获得生物学相关参数。通过针对专门母乳喂养的婴儿粪便接种物的13种结构特征化的益生元候选物库进行205小时的探索性体外发酵,获得了滞后阶段,最大增加速率和最大容量。我们还对婴儿粪便接种物进行了16S rRNA扩增子测序。此外,我们引入了一种强大的基于复合代谢物的指示剂,可反映微生物群的生化/代谢异常,以补充常规的微生物标记。就短链脂肪酸而言,我们发现大麦中的聚合β-葡聚糖表现出作为益生元候选物的潜力,而α-葡聚糖作为糖原表现出最少的溶解氨产生。就总益生菌而言,燕麦和蘑菇菌核的β-葡聚糖与48小时后的α-葡聚糖相比具有可比的可持续性。作为经典的益生元,半乳糖低聚糖给出了第二高的基于代谢物的指示剂,其次是乳糖。虽然可以对乳糖和寡糖进行有限的改进,但大麦中的聚合β-葡聚糖具有更多的新型益生元发展能力,例如结构修饰。我们预计,与时间和参数建模元素类似的并行筛选将提供更多新颖的见解。

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