Fecal microbiota transplant (FMT) is an increasingly used intervention, but its suitability to restore regional gut microbiota, particularly in the small bowel (SB), must be questioned because of its predominant anaerobic composition. In human subjects receiving FMT by upper endoscopy, duodenal engraftment of anaerobes was observed after 4 weeks. We hypothesized that peroral FMTs create host-microbe mismatches that impact SB homeostasis. To test this, antibiotic-treated specific-pathogen-free (SPF) mice were given jejunal, cecal, or fecal microbiota transplants (JMTs, CMTs, or FMTs, respectively) and studied 1 or 3 months later. JMT and FMT altered regional microbiota membership and function, energy balance, and intestinal and hepatic transcriptomes; JMT favored host metabolic pathways and FMT favored immune pathways. MTs drove regional intestinal identity (Gata4, Gata6, and Satb2) and downstream differentiation markers. RNA sequencing (RNA-seq) of metabolite-exposed human enteroids and duodenal biopsies post-FMT confirmed transcriptional changes in mice. Thus, regional microbial mismatches after FMTs can lead to unintended consequences and require rethinking of microbiome-based interventions.
Microbiome mismatches from microbiota transplants lead to persistent off-target metabolic and immunomodulatory effects.
微生物群移植导致的微生物群不匹配会引起持续的非靶向代谢和免疫调节效应
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作者:DeLeon Orlando, Mocanu Mora, Tan Alan, Sidebottom Ashley M, Koval Jason, Ceccato Hugo D, Kralicek Sarah, Colgan John J, St George Marissa M, Lake Joash M, Cooper Michael, Xu Jingwen, Moore Julia, Su Qi, Xu Zhilu, Ng Siew C, Chan Francis K L, Tun Hein M, Cham Candace M, Liu Cambrian Y, Rubin David T, Martinez-Guryn Kristina, Chang Eugene B
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2025 | 起止号: | 2025 Jul 24; 188(15):3927-3941 |
| doi: | 10.1016/j.cell.2025.05.014 | 研究方向: | 代谢、微生物学 |
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