Department of Urology, Cleveland Clinic, 9500 Euclid Ave., Cleveland, OH, USA.
Department of Inflammation & Immunity, Cleveland Clinic, 9500 Euclid Ave., Cleveland, OH, USA.
ISME J. 2019 Jun;13(6):1379-1390. doi: 10.1038/s41396-019-0357-4. Epub 2019 Jan 30.
The incidence of urinary stone disease (USD) has increased four-fold in 50 years. Oxalate, which is degraded exclusively by gut bacteria, is an important constituent in 80% of urinary stones. We quantified the effects of antibiotics and a high fat/high sugar (HFHS) diet on the microbial metabolism of oxalate in the gut. High and low oxalate-degrading mouse models were developed by administering fecal transplants from either the wild mammalian rodent Neotoma albigula or Swiss-Webster mice to Swiss-Webster mice, which produces a microbiota with or without the bacteria necessary for persistent oxalate metabolism, respectively. Antibiotics led to an acute loss of both transplant bacteria and associated oxalate metabolism. Transplant bacteria exhibited some recovery over time but oxalate metabolism did not. In contrast, a HFHS diet led to an acute loss of function coupled with a gradual loss of transplant bacteria, indicative of a shift in overall microbial metabolism. Thus, the effects of oral antibiotics on the microbiome form and function were greater than the effects of diet. Results indicate that both antibiotics and diet strongly influence microbial oxalate metabolism.
尿路结石病(USD)的发病率在 50 年内增加了四倍。草酸是 80%尿路结石的重要成分,而草酸仅由肠道细菌降解。我们定量研究了抗生素和高脂肪/高糖(HFHS)饮食对肠道草酸微生物代谢的影响。通过将来自野生哺乳动物啮齿动物 Neotoma albigula 或瑞士-韦伯斯特鼠的粪便移植到瑞士-韦伯斯特鼠中,分别开发出高草酸和低草酸降解的小鼠模型,前者的微生物群中具有持续进行草酸代谢所需的细菌,而后者则不具有。抗生素会导致移植细菌和相关草酸代谢的急性丧失。随着时间的推移,移植细菌会有一定程度的恢复,但草酸代谢不会恢复。相比之下,HFHS 饮食会导致功能的急性丧失,同时伴随着移植细菌的逐渐丧失,表明整体微生物代谢发生了转变。因此,口服抗生素对微生物组形态和功能的影响大于饮食的影响。结果表明,抗生素和饮食都会强烈影响微生物的草酸代谢。