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首页> 外文期刊>Phytotherapy research: PTR >Berberine combined with stachyose induces better glycometabolism than berberine alone through modulating gut microbiota and fecal metabolomics in diabetic mice
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Berberine combined with stachyose induces better glycometabolism than berberine alone through modulating gut microbiota and fecal metabolomics in diabetic mice

机译:通过调节肠道微生物和糖尿病小鼠的粪便微生物和粪便代谢组合,使得Stachyose联合STOOHYOSE的比较甘草蛋白比小檗碱更好

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摘要

Berberine (BBR), a small alkaloid, is used as a hypoglycemic agent in China. Stachyose (Sta), a Rehmannia glutinosa oligosaccharide, acts as a prebiotic. This study aimed to evaluate whether BBR combined with Sta produced better glycometabolism than BBR alone, and explored the effects on gut microbiota and metabolomics. Type-2 diabetic db/db mice were administered BBR (100 mg/kg), Sta (200 mg/kg), or both by gavage once daily. Glucose metabolism, the balance of alpha- and beta-cells, and mucin-2 expression were ameliorated by combined treatment of BBR and Sta, with stronger effects than upon treatment with BBR alone. The microbial diversity and richness were altered after combined treatment and after treatment with BBR alone. The abundance of Akkermansia muciniphila was increased by combined treatment compared to treatment with BBR alone, while the levels of the metabolite all-trans-heptaprenyl diphosphate were decreased and the levels of fumaric acid were increased, which both showed a strong correlation with A. muciniphila. In summary, BBR combined with Sta produced better glycometabolism than BBR alone through modulating gut microbiota and fecal metabolomics, and may aid in the development of a novel pharmaceutical strategy for treating Type 2 diabetes mellitus.
机译:小檗碱(BBR),一种小型生物碱,用作中国的低血糖药剂。 Stachyose(sta)是一种康马尼亚谷氨酸寡糖,作为益生元。本研究旨在评估BBR是否与STA合并产生的甘草状比BBR单独生产,并探讨了对肠道微生物群和代谢组学的影响。每日施用BBR(100mg / kg),STA(200mg / kg),STA(200mg / kg),STA(200mg / kg)或两者均每天一次施用2型糖尿病DB / dB小鼠。通过组合治疗BBR和STA的组合,葡萄糖代谢,α-和β细胞的平衡和粘蛋白-2表达,其效果较强,而不是单独用BBR处理。结合治疗后和单独用BBR处理后改变微生物多样性和丰富性。与单独的BBR处理相比,通过组合治疗增加了Akkermansia粘蛋白的丰度,而代谢物全转甲基苯基二磷酸的水平降低,富马酸水平增加,两者均表现出与A.粘蛋白的强烈相关性。总之,BBR通过调节肠道微生物群和粪便代谢组,单独生产比BBR更好的糖代谢,并且可以有助于开发用于治疗2型糖尿病的新药策略。

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