[不同代谢表型肥胖成人肠道微生物群代谢特征和三叶因子水平]。

I M Kolesnikova, L A Ganenko, I Yu Vasilyev, T V Grigoryeva, N I Volkova, S A Roumiantsev, A V Shestopalov
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引用次数: 0

摘要

肥胖与肠道菌群的变化以及肠壁通透性的增加有关。在130名非肥胖志愿者、57名代谢健康型肥胖(MHO)患者和76名代谢不健康型肥胖(MUHO)患者中,从粪便样本中分离出细菌DNA,并对16S rRNA基因进行测序。PICRUSt2 (https://huttenhower.sph.harvard.edu/picrust/)预测的微生物群代谢谱在MUHO患者中比MHO患者更有改变。肥胖,尤其是MUHO,伴随着肠道微生物群降解能量底物、通过氧化磷酸化产生能量、合成水溶性维生素(B1、B6、B7)、核苷酸、血红素、芳香氨基酸和细胞保护性结构成分的能力增加。这种变化可能是微生物群适应muho特定条件的结果。这样就形成了一个恶性循环,MUHO促进了肠道微生物群的消耗,而肠道微生物群的进一步退化又促成了代谢紊乱的发病机制。还测定了受试者血清中三叶因子家族(TFF)的浓度。在MHO和MUHO患者中,TFF2和TFF3水平升高,但我们没有发现这些变化与肠道微生物群的代谢特征有显著关联。
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[Metabolic Profile of Gut Microbiota and Levels of Trefoil Factors in Adults with Different Metabolic Phenotypes of Obesity].

Obesity is associated with changes in the gut microbiota, as well as with increased permeability of the intestinal wall. In 130 non-obese volunteers, 57 patients with metabolically healthy obesity (MHO), and 76 patients with metabolically unhealthy obesity (MUHO), bacterial DNA was isolated from stool samples, and the 16S rRNA gene was sequenced. The metabolic profile of the microbiota predicted by PICRUSt2 (https://huttenhower.sph.harvard.edu/picrust/) was more altered in patients with MUHO than MHO. Obesity, especially MUHO, was accompanied by an increase in the ability of the gut microbiota to degrade energy substrates, produce energy through oxidative phosphorylation, synthesize water-soluble vitamins (B1, B6, B7), nucleotides, heme, aromatic amino acids, and protective structural components of cells. Such changes may be a consequence of the microbiota adaptation to the MUHO-specific conditions. Thus, a vicious circle is formed, when MUHO promotes the depletion of the gut microbiome, and further degeneration of the latter contributes to the pathogenesis of metabolic disorders. The concentration of the trefoil factor family (TFF) in the serum of the participants was also determined. In MHO and MUHO patients, the TFF2 and TFF3 levels were increased, but we did not find significant associations of these changes with the metabolic profile of the gut microbiota.

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来源期刊
Molekulyarnaya Biologiya
Molekulyarnaya Biologiya Medicine-Medicine (all)
CiteScore
0.70
自引率
0.00%
发文量
131
期刊最新文献
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