首页> 外文期刊>The British Journal of Nutrition >Probiotic Lactobacillus gasseri SBT2055 improves glucose tolerance and reduces body weight gain in rats by stimulating energy expenditure
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Probiotic Lactobacillus gasseri SBT2055 improves glucose tolerance and reduces body weight gain in rats by stimulating energy expenditure

机译:益生菌加氏乳杆菌SBT2055通过刺激能量消耗来改善大鼠的葡萄糖耐量并减少体重增加

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Probiotic Lactobacillus gasseri SBT2055 (LG2055) reduces postprandial TAG absorption and exerts anti-obesity effects in rats and humans; however, the underlying mechanisms are not fully understood. In the present study, we addressed the mechanistic insights of the anti-obesity activity of LG2055 by feeding Sprague-Dawley rats diets containing skimmed milk fermented or not by LG2055 for 4 weeks and by analysing energy expenditure, glucose tolerance, the levels of SCFA in the caecum and serum inflammatory markers. Rats fed the LG2055-containing diet demonstrated significantly higher carbohydrate oxidation in the dark cycle (active phase for rats) compared with the control group, which resulted in a significant increase in energy expenditure. LG2055 significantly reduced cumulative blood glucose levels (AUC) compared with the control diet after 3 weeks and increased the molar ratio of butyrate: total SCFA in the caecum after 4 weeks. Furthermore, the LG2055-supplemented diet significantly reduced the levels of serum amyloid P component - an indicator of the inflammatory process. In conclusion, our results demonstrate that, in addition to the inhibition of dietary TAG absorption reported previously, the intake of probiotic LG2055 enhanced energy expenditure via carbohydrate oxidation, improved glucose tolerance and attenuated inflammation, suggesting multiple additive and/or synergistic actions underlying the anti-obesity effects exerted by LG2055.
机译:益生菌加氏乳杆菌SBT2055(LG2055)减少餐后TAG吸收并在大鼠和人类中发挥抗肥胖作用;但是,其底层机制还没有被完全理解。在本研究中,我们通过喂食含有LG2055发酵或不发酵的脱脂牛奶的Sprague-Dawley大鼠饮食4周,并分析能量消耗,葡萄糖耐量,SCFA的水平,探讨了LG2055抗肥胖活性的机理。盲肠和血清炎性标志物。与对照组相比,饲喂含LG2055饮食的大鼠在黑暗周期(大鼠活动期)表现出明显更高的碳水化合物氧化,这导致能量消耗显着增加。与对照饮食相比,LG2055在3周后显着降低了累积血糖水平(AUC),并在4周后增加了盲肠中丁酸与总SCFA的摩尔比。此外,补充LG2055的饮食显着降低了血清淀粉样蛋白P组分的水平-炎症过程的指标。总之,我们的结果表明,除先前报道的抑制饮食TAG吸收外,益生菌LG2055的摄入还通过碳水化合物氧化增加了能量消耗,改善了葡萄糖耐量并减轻了炎症,表明该抗氧化剂具有多种加和和/或协同作用。 LG2055产生的肥胖症效应。

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