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A Subset of Roux-en-Y Gastric Bypass Bacterial Consortium Colonizes the Gut of Nonsurgical Rats without Inducing Host-Microbe Metabolic Changes

机译:ROUX-ZH-Y胃旁路细菌联盟的一部分在不诱导宿主微生物代谢变化的情况下对非静脉大鼠的肠道进行殖民化

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Roux-en-Y gastric bypass (RYGB) is an effective weight loss surgery, resulting in a characteristic increase of fecal Gammaproteobacteria . The contribution of this compositional change to metabolic benefits of RYGB is currently debatable. Therefore, this study employed 16S rRNA gene sequencing and metabolic profiling to monitor the dynamic colonization of the RYGB microbial consortium and their metabolic impact on the host. Eleven Wistar rats received vancomycin and enrofloxacin, followed by fecal microbiota transplantation (FMT) of cecal slurry obtained from either RYGB- or sham-operated rats. Urine and feces from the microbiota recipients (RYGB microbiota recipients [RYGBr], n ?=?6; sham microbiota recipients [SHAMr], n ?=?5) were collected pre- and post-antibiotics and 1, 3, 6, 9, and 16?days post-FMT. No significant differences in body weight and food intake were observed between RYGBr and SHAMr. While neither group reached the community richness of that of their donors, by day 6, both groups reached the richness and diversity of that prior to antibiotic treatment. However, the typical signature of RYGB microbiome—increased Enterobacteriaceae —was not replicated in these recipients after two consecutive FMT, suggesting that the environmental changes induced by the anatomical rearrangements of RYGB could be key for sustaining such a consortium. The transplanted bacteria did not induce the same metabolic signature of urine and feces as those previously reported in RYGB-operated rats. Future work is required to explore environmental factors that shape the RYGB microbiota in order to further investigate the metabolic functions of the RYGB microbiota, thereby teasing out the mechanisms of the RYGB surgery. IMPORTANCE Roux-en-Y gastric bypass (RYGB) surgery results in a long-term gut bacterial shift toward Gammaproteobacteria in both patients and rodents. The contribution of this compositional shift, or the RYGB bacterial consortium, to the metabolic benefit of the surgery remains debatable. It is unclear how well these bacteria colonize in an anatomically normal gut. This is a fundamental question in both defining the function of the RYGB microbiota and evaluating its potential as a nonsurgical treatment for obesity. We monitored the dynamic colonization of the RYGB bacterial consortium and observed that while approximately one-third of the bacterial taxa from the RYGB donor colonized in the gut of the nonoperated recipients, Gammaproteobacteria were unable to colonize for longer than 3?days. The study highlighted that a successful long-term colonization of Gammaproteobacteria -rich RYGB microbiota in nonsurgical animals requires key environmental factors that may be dictated by the intestinal anatomical modification by the surgery itself.
机译:ROUX-ZH-Y胃旁路(RYGB)是一种有效的减肥手术,导致粪便伽马略菌的特征增加。这种组成变化对RYGB代谢益处的贡献目前是值得简言的。因此,本研究采用16S rRNA基因测序和代谢分析,以监测RygB微生物联盟的动态定植及其对宿主的代谢影响。 11只Wistar大鼠接受了Vancomycin和富含氧氟沙星,其次是从RygB或假手术大鼠获得的颈浆浆的粪便微生物A移植(FMT)。来自微生物生物的尿液和粪便(Rygb Microbiota接受者[Rygbr],N?=?6; Sham Microbiota受体[Shamr],N?=?5)被预先生和后抗生素和1,3,6,9和16岁的时候,第16天。在Rygbr和Shamr之间观察到体重和食物摄入没有显着差异。虽然既未达到其捐助者的社区丰富的社区,但在第6天,两组均达到抗生素治疗之前的丰富性和多样性。然而,在连续两个FMT之后,RygB微生物组 - 增加的肠杆菌的肠杆菌植物的典型特征在这些接受者中未复制,表明RYGB解剖重排所引起的环境变化可能是维持此类联盟的关键。移植的细菌没有诱导尿液和粪便的相同代谢特征,因为先前在RygB操作的大鼠中报道的那些。未来的工作是探讨塑造RygB微生物群的环境因素,以进一步研究RygB Microbiota的代谢功能,从而筛选RygB手术的机制。重要性Roux-Zh-Y胃旁路(RYGB)手术导致长期肠道细菌转向患者和啮齿动物的γ曲线菌。这种组成转移或RygB细菌联盟的贡献仍然是难题的。目前尚不清楚这些细菌在解剖学正常的肠道中定殖。这是定义RYGB微生物群的功能并评估其作为肥胖的非必要治疗的潜力的基本问题。我们监测了RygB细菌联盟的动态定植,观察到,虽然来自非经营受者的肠道中的RygB供体中的大约三分之一的细菌分类群,但伽昔曲霉菌不能殖民长度超过3.天。该研究强调,在非牙科动物中,γroteobacteria -RICH rygb微生物群的成功长期定植需要关键的环境因素,这些因素可以由手术本身的肠道解剖修饰决定。

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