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Effects of theabrownin on serum metabolites and gut microbiome in rats with a high-sugar diet

机译:高脂饮食大鼠血清代谢物和肠道微生物组的影响

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摘要

Evidence has proven that the gut microbiota is an important environmental factor contributing to obesity by altering host energy harvest and storage. We performed a high-throughput 16S rDNA sequencing association study and serum metabolomics profiling in rats with a high-sugar diet. Our studies revealed that the high sugar diet reduced the diversity of cecal microorganisms, while the combination of theabrownin and the high sugar diet increased the diversity of cecal microorganisms and promoted reproduction of Alloprevotella, Coprostanoligenes_group, Bacteroides, Prevotellaceae_NK3B31_group, Desulfovibrio, Intestinimonas, Alistipes, Bifidobacterium, Phascolarctobacterium, Ruminococcaceae_UCG-010 and Staphylococcus. The combination also inhibited the growth of Lactobacillus, Prevotellaceae_Ga6A1_group and Tyzzerella. The Firmicutes/Bacteroidetes (F/B) ratio can be significantly reduced after the intervention of theabrownin in high sugar diet rats, and the reproduction of Bacteroides acidifaciens (BA) and Staphylococcus saprophyticus subsp. saprophyticus can be promoted. We found that the obesity-associated gut microbial species were linked to the changes in circulating metabolites. Serum levels of deoxycholic acid, cholic acid, 1H-indole-3-acetic acid, 3-indole acrylic acid and melatonin were negatively correlated with BA and Staphylococcus saprophyticus subsp. saprophyticus, but positively correlated with Lactobacillus murinus, Leptum and Gut_metagenome. 2-Hydroxy-6-methylpyridin-3-carboxylic acid, l-homoserine, and 1,7-dimethylxanthine were positively correlated with BA and Staphylococcus saprophyticus subsp. saprophyticus, but negatively correlated with Lactobacillus murinus, Leptum, and Gut_metagenome. In a high sugar diet mode, theabrownin reduced the body weight and triglycerides and improved insulin resistance mainly by targeting the reproduction of intestinal microorganisms such as BA, Staphylococcus saprophyticus subsp. saprophyticus, Lactobacillus murinus, Leptum, Gut_metagenome and so on. A strong correlation between cecal microorganisms and serum metabolites, obesity and insulin resistance was observed. Theabrownin has high potential in reducing the risk of cardiovascular diseases such as diabetes and obesity.
机译:证据证明,肠道微生物群是通过改变主机能量收获和储存来促进肥胖的重要环境因素。我们在高糖饮食中进行了高通量16S RDNA测序协会研究和血清代谢组科分析。我们的研究表明,高糖饮食降低了肠道微生物的多样性,而脑霉素和高糖饮食的组合增加了肠道微生物的多样性,促进了Allopreveotella,Coprostanoligenes_group,Brocotes,Frvotellaceae_nk3b31_group,Desulfoviro,肠道,烯杆菌,烯段,丸杆菌杆菌,喇菇,喇叭杆菌-010和葡萄球菌。该组合还抑制乳酸杆菌,PREVOTELSCEAE_GA6A1_GROUP和TYZZERELA的生长。在高糖饮食大鼠中,在脑霉素干预后,可以显着降低核心酸性大鼠(Ba)和葡萄球菌血糖菌患者后的骨头蛋白的繁殖(F / B)比例。可以促进皂细胞。我们发现肥胖相关的肠道微生物物种与循环代谢物的变化有关。血清水平的脱氧胆酸,胆酸,1H-吲哚-3-乙酸,3-吲哚丙烯酸和褪黑激素与BA和葡萄球菌患者潜水相关。 Saprophyticus,但与枸杞,Leptum和Gut_metagenome呈正相关。 2-羟基-6-甲基吡啶-3-羧酸,L-均静脉和1,7-二甲基黄嘌呤与BA和葡萄球菌患者呈正相关。 saprophyticus,但与枸杞,Leptum和Gut_metagenome负相关。在高糖饮食模式中,脑霉素降低了体重和甘油三酯,并主要通过靶向肠道微生物等肠道微生物的繁殖来改善胰岛素抗性。 Saprophyticus,Lactobacillus murinus,Leptum,Gut_metagenome等。观察到宫颈微生物和血清代谢物,肥胖和胰岛素抗性之间的强烈相关性。 Teambrownin具有降低糖尿病和肥胖等心血管疾病风险的高潜力。

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  • 来源
    《Food & Function 》 |2019年第11期| 共18页
  • 作者单位

    Yunnan Agr Univ Coll Food Sci &

    Technol Kunming 650201 Yunnan Peoples R China;

    Yunnan Agr Univ Coll Food Sci &

    Technol Kunming 650201 Yunnan Peoples R China;

    Yunnan Agr Univ Coll Hort &

    Landscape Kunming 650201 Yunnan Peoples R China;

    Yunnan Agr Univ Coll Food Sci &

    Technol Kunming 650201 Yunnan Peoples R China;

    Yunnan Agr Univ Coll Food Sci &

    Technol Kunming 650201 Yunnan Peoples R China;

    Yunnan Agr Univ Coll Food Sci &

    Technol Kunming 650201 Yunnan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 食品工业 ;
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