Rasoulimehrabani Hamid, Riva Alessandra, Inan Deniz, Hodžić Adnan, Hausmann Bela, Nikolov Georgi, Khadem Sanaz, Hieger Norbert, Wiesenbauer Julia, Kaiser Christina, Filz Verena, Böttcher Thomas, Berry David
Center for Microbiology and Environmental Systems Science, Department of Microbiology and Ecosystem Science, University of Vienna, Vienna, Austria.
Doctoral School in Microbiology and Environmental Science, University of Vienna, Vienna, Austria.
Gut Microbes. 2025 Dec;17(1):2525482. doi: 10.1080/19490976.2025.2525482. Epub 2025 Jun 27.
There is much interest in the development of dietary supplements that selectively promote the growth of beneficial gut bacteria. The selectivity of many candidate prebiotics has, however, not been thoroughly investigated. Here, we evaluated stimulation of the human gut microbiota by the disaccharide lactulose using an multimodal activity-based cell sorting approach. Incubation of human donor stool with lactulose resulted in growth or stimulation of a restricted diversity of bacterial genera, most prominently , , and . Physiological analysis of lactulose-responsive strains isolated by Raman activated cell sorting revealed that most were capable of lactulose degradation. Among these isolates, could not degrade lactulose, but its growth was boosted by co-cultivation with lactulose degraders. This suggests that inter-species facilitation contributes to the lactulose degradation niche. Moreover, we observed that lactulose selectively activates metabolically important taxa, including health-associated genera such as and , potentially indicating broader functional effects beyond compositional changes. These results provide novel insights into the physiology and ecology of lactulose utilization by the human gut microbiota and underscore the potential of lactulose as a prebiotic dietary supplement.
人们对开发能够选择性促进有益肠道细菌生长的膳食补充剂有着浓厚兴趣。然而,许多候选益生元的选择性尚未得到充分研究。在这里,我们使用基于多模式活性的细胞分选方法评估了双糖乳果糖对人类肠道微生物群的刺激作用。将人类供体粪便与乳果糖一起孵育,导致细菌属的多样性受到限制的生长或刺激,最显著的是 、 和 。通过拉曼激活细胞分选分离出的对乳果糖有反应的菌株的生理分析表明,大多数菌株能够降解乳果糖。在这些分离物中, 不能降解乳果糖,但其与乳果糖降解菌共培养时生长得到促进。这表明种间促进作用有助于乳果糖降解生态位。此外,我们观察到乳果糖选择性激活代谢重要的分类群,包括与健康相关的属,如 和 ,这可能表明除了组成变化之外还有更广泛的功能影响。这些结果为人类肠道微生物群利用乳果糖的生理学和生态学提供了新的见解,并强调了乳果糖作为益生元膳食补充剂的潜力。