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首页> 外文期刊>Food & Function >Spinach consumption ameliorates the gut microbiota and dislipaemia in rats with diet-induced non-alcoholic fatty liver disease (NAFLD)
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Spinach consumption ameliorates the gut microbiota and dislipaemia in rats with diet-induced non-alcoholic fatty liver disease (NAFLD)

机译:菠菜消费改善了饮食诱导的非酒精脂肪肝病(NAFLD)大鼠大鼠肠道微生物群和脱脂血症

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摘要

Non-alcoholic fatty liver disease (NAFLD) is defined as the accumulation of fat in liver cells, which causes serious health consequences. Animal and human studies suggest that the gut microbiota plays a role in the pathogenesis of NAFLD. Here, we investigated whether spinach consumption could ameliorate high-fat-diet-induced disturbances in certain intestinal bacterial groups and products derived from their metabolism, such as short-chain fatty acids (SCFAs) and microbial phenolic catabolites. Attention is also paid to blood lipids and glucose. In the study, a rat model of high-fat-diet-induced NAFLD was used. There were six experimental groups: NC (normal diet), NB (normal diet + 2.5% spinach), NA (normal diet + 5% spinach), HC (high-fat diet), HB (high-fat diet + 2.5% spinach) and HA (high-fat diet + 5% spinach). The rats consumed these diets for five weeks, and after that, they were sacrificed and plasma, urine, intestinal content, faeces and liver samples were taken. Biochemical parameters were analyzed in plasma, phenolic catabolites were quantified in the faeces, urine, plasma and liver by UPLC-ESI-MS/MS, and the analysis of the microbiota and SCFAs in the intestinal content was performed by qPCR and GLC. Consumption of a high-fat diet caused NAFLD and dislipaemia and altered the gut microbiota and the pattern of SCFAs and phenolic gut microbial catabolites. Supplementation with spinach partially ameliorated some alterations induced by the high-fat diet, in particular by increasing the Lactobacillus counts, reducing the fasting glucose and total and LDL-cholesterol and preventing excess liver cholesterol accumulation, thereby improving the values of the steatosis biomarkers.
机译:非酒精性脂肪肝病(NAFLD)被定义为肝细胞中脂肪的积累,这导致严重的健康后果。动物和人类研究表明,肠道微生物群在NAFLD的发病机制中起着作用。在这里,我们研究了菠菜消费是否可以改善某些肠道细菌群体中的高脂饮食诱导的紊乱,以及衍生自代谢的产物,例如短链脂肪酸(SCFA)和微生物酚醛蛋白分解代谢物。还注意血脂和葡萄糖。在该研究中,使用了高脂饮食诱导的NAFLD的大鼠模型。有六种实验组:NC(正常饮食),Nb(正常饮食+ 2.5%菠菜),NA(正常饮食+ 5%菠菜),HC(高脂饮食),HB(高脂饮食+ 2.5%菠菜)和HA(高脂饮食+ 5%菠菜)。大鼠消耗了这些饮食五个星期,然后牺牲了它们,并采取了血浆,尿液,肠含量,粪便和肝脏样品。在血浆中分析生化参数,通过UPLC-ESI-MS / MS在粪便,尿液,血浆和肝脏中定量酚醛蛋白,并通过QPCR和GLC进行肠含量的微生物群和SCFA的分析。消耗高脂饮食导致NAFLD和Dislipaemia,并改变了肠道微生物群和SCFA和酚类肠道微生物分解代谢物的模式。用菠菜补充部分改善了由高脂饮食诱导的一些改变,特别是通过增加乳酸杆菌计数,减少空腹葡萄糖和总和LDL-胆固醇并防止过量的肝胆胆固醇积累,从而改善了脂肪变性生物标志物的值。

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  • 来源
    《Food & Function 》 |2019年第4期| 共13页
  • 作者单位

    Univ Murcia Univ Clin Hosp Virgen Arrixaca Biomed Res Inst Murcia IMIB Arrixaca UMU Dept Food Technol Food Sci &

    Nutr Fac Vet Sci Reg Campus Int Excellence Campus Mare Nostrum Murcia Spain;

    Univ Murcia Univ Clin Hosp Virgen Arrixaca Biomed Res Inst Murcia IMIB Arrixaca UMU Dept Food Technol Food Sci &

    Nutr Fac Vet Sci Reg Campus Int Excellence Campus Mare Nostrum Murcia Spain;

    Univ Murcia Univ Clin Hosp Virgen Arrixaca Biomed Res Inst Murcia IMIB Arrixaca UMU Dept Food Technol Food Sci &

    Nutr Fac Vet Sci Reg Campus Int Excellence Campus Mare Nostrum Murcia Spain;

    Univ Murcia Univ Clin Hosp Virgen Arrixaca Biomed Res Inst Murcia IMIB Arrixaca UMU Dept Food Technol Food Sci &

    Nutr Fac Vet Sci Reg Campus Int Excellence Campus Mare Nostrum Murcia Spain;

    Univ Murcia Univ Clin Hosp Virgen Arrixaca Biomed Res Inst Murcia IMIB Arrixaca UMU Dept Food Technol Food Sci &

    Nutr Fac Vet Sci Reg Campus Int Excellence Campus Mare Nostrum Murcia Spain;

    Univ Turku Fac Med Funct Foods Forum Turku Finland;

    FEM Res &

    Innovat Ctr Via E Mach 1 I-38010 San Michele All Adige Trento Italy;

    FEM Res &

    Innovat Ctr Via E Mach 1 I-38010 San Michele All Adige Trento Italy;

    FEM Res &

    Innovat Ctr Via E Mach 1 I-38010 San Michele All Adige Trento Italy;

    Univ Murcia Univ Clin Hosp Virgen Arrixaca Biomed Res Inst Murcia IMIB Arrixaca UMU Dept Food Technol Food Sci &

    Nutr Fac Vet Sci Reg Campus Int Excellence Campus Mare Nostrum Murcia Spain;

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  • 正文语种 eng
  • 中图分类 食品工业 ;
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