Decades of research have made clear that host-associated microbiomes touch all facets of health. However, effective therapies that target the microbiome have been elusive given its inherent complexity. Here, we experimentally examined diet-microbe-host interactions through a complex systems framework, centered on dietary oxalate. Using multiple, independent molecular, rodent, and in vitro experimental models, we found that microbiome composition influenced multiple oxalate-microbe-host interfaces. Importantly, the administration of the oxalate-degrading specialist, Oxalobacter formigenes, was only effective against a poor oxalate-degrading microbiota background and gives critical new insights into why clinical intervention trials with this species exhibit variable outcomes. Data suggest that, while heterogeneity in the microbiome impacts multiple diet-host-microbe interfaces, metabolic redundancy among diverse microorganisms in specific diet-microbe axes is a critical variable that may impact the efficacy of bacteriotherapies, which can help guide patient and probiotic selection criteria in probiotic clinical trials.
Complex system modeling reveals oxalate homeostasis is driven by diverse oxalate-degrading bacteria.
复杂系统建模揭示了草酸稳态是由多种草酸降解细菌驱动的
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作者:Mukherjee Sromona D, Batagello Carlos, Adler Ava, Agudelo Jose, Zampini Anna, Suryavanshi Mangesh, Nguyen Andrew, Orr Terry, Dearing Denise, Monga Manoj, Miller Aaron W
| 期刊: | Elife | 影响因子: | 6.400 |
| 时间: | 2025 | 起止号: | 2025 May 1; 14:RP104121 |
| doi: | 10.7554/eLife.104121 | 研究方向: | 微生物学 |
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