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Microbiome potentiates endurance exercise through intestinal acetate production

机译:微生物组通过肠道醋酸盐的产生来增强耐力运动

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摘要

The intestinal microbiome produces short-chain fatty acids (SCFAs) from dietary fiber and has specific effects on other organs. During endurance exercise, fatly acids, glucose, and amino acids are major energy substrates. However, little is known about the role of SCFAs during exercise. To investigate this, mice were administered either multiple antibiotics or a low microbiome-accessible carbohydrate (LMC) diet, before endurance testing on a treadmill. Two-week antibiotic treatment significantly reduced endurance capacity versus the untreated group. In the cecum acetate, propionate, and butyrate became almost undetectable in the antibiotic-treated group, plasma SCFA concentrations were lower, and the microbiome was disrupted. Similarly, 6-wk LMC treatment significantly reduced exercise capacity, and fecal and plasma SCFA concentrations. Continuous acetate but not saline infusion in antibiotic-treated mice restored their exercise capacity (P < 0.05), suggesting that plasma acetate may be an important energy substrate during endurance exercise. In addition, running time was significantly improved in LMC-fed mice by fecal microbiome transplantation from others fed a high microbiome-accessible carbohydrate diet and administered a single portion of fermentable liber (P < 0.05). In conclusion, the microbiome can contribute to endurance exercise by producing SCFAs. Our findings provide new insight into the effects of the microbiome on systemic metabolism.
机译:肠道微生物组从膳食纤维中产生短链脂肪酸 (SCFA),并对其他器官具有特定作用。在耐力运动中,脂肪酸、葡萄糖和氨基酸是主要的能量底物。然而,人们对短链脂肪酸在运动中的作用知之甚少。为了研究这一点,在跑步机上进行耐力测试之前,给小鼠施用多种抗生素或低微生物组可及碳水化合物(LMC)饮食。与未治疗组相比,为期两周的抗生素治疗显著降低了耐力。在盲肠中,醋酸、丙酸盐和丁酸盐在抗生素治疗组中几乎检测不到,血浆 SCFA 浓度较低,微生物组被破坏。同样,6 周 LMC 治疗显着降低了运动能力以及粪便和血浆 SCFA 浓度。在抗生素治疗的小鼠中,连续输注醋酸盐而不输注生理盐水可恢复其运动能力(P < 0.05),提示血浆醋酸盐可能是耐力运动中重要的能量底物。此外,通过粪便微生物组移植,其他喂食高微生物组可及碳水化合物饮食并施用单份可发酵自由的小鼠的粪便微生物组移植,LMC喂养的小鼠的运行时间显着改善(P<0.05)。总之,微生物组可以通过产生 SCFA 来促进耐力运动。我们的研究结果为微生物组对全身代谢的影响提供了新的见解。

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