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Citrus peel extracts attenuated obesity and modulated gut microbiota in mice with high-fat diet-induced obesity

机译:柑橘剥离提取物在高脂饮食诱导的肥胖症中衰减肥胖和调节的肠道微生物。

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摘要

Polymethoxyflavones (PMFs) and hydroxyl PMFs (HOPMFs) are mainly found in citrus peel and have shown anti-obesity potential in in vitro and in vivo studies. Herein, we have investigated the anti-obesity effects of two citrus peel extracts obtained via supercritical fluid extraction: PMF A, with a lower content of PMFs and HOPMFs, and PMF B, with a higher content of PMFs and HOPMFs. PMF A and PMF B were administered orally for 16 weeks to mice with high fat diet (HFD)-induced obesity. The results showed that PMF B decreased the lipid content more statistically significantly (p & 0.05) than PMF A in 3T3-L1 preadipocytes, reduced the adipocyte size, decreased the adipose tissue weight and alleviated the total body weight in the HFD mice. Both PMF A and PMF B reduced the adipocyte size in the perigonadal fat by markedly decreasing the levels of lipid droplets (LD) and perilipin 1 protein and Sterol regulatory element binding protein 1 (SREBP-1) expression. Compared to the case of the HFD group, PMF B altered the gut microbiota by increasing Prevotella and decreasing rc4-4 bacteria. The change in the composition of gut microbiota, the community of symbiotic and pathogenic microorganisms, may determine the metabolic health and be responsible for the anti-obesity mechanism. Our results indicate that the citrus peel extracts decrease lipid accumulation both in vivo and in vitro and should be considered for the management of overweight and obesity conditions.
机译:聚甲氧基硫酮(PMF)和羟基PMF(HOPMFS)主要发现在柑橘果皮中,并在体外和体内研究中显示出抗肥胖潜力。在此,我们研究了通过超临界流体萃取所获得的两种柑橘剥离提取物的抗肥胖作用:PMF A,具有较低的PMF和HOPMFS和PMF B的含量,具有更高的PMF和HOPMF。 PMF A和PMF B口服施用16周,给具有高脂饮食(HFD)诱导的肥胖症的小鼠。结果表明,PMF B比PMF A在3T3-L1前脂肪细胞中更明显地显着降低脂质含量(P& 0.05),降低了脂肪细胞尺寸,降低了脂肪组织重量并减轻了HFD小鼠中的总体重。 PMF A和PMF B都通过显着降低脂液滴(LD)和Perilipin 1蛋白和甾醇调节元素结合蛋白1(Srebp-1)表达的水平降低了Perigonadal脂肪中的脂肪细胞尺寸。与HFD组的情况相比,PMF B通过增加PREVOTA和降低RC4-4细菌来改变肠道微生物酵母。肠道微生物组成的变化,共生和病原微生物的群落,可确定代谢健康,并负责抗肥胖机制。我们的结果表明,柑橘皮剥离提取物在体内和体外减少脂质积累,并应考虑管理超重和肥胖条件。

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    《Food & Function》 |2018年第6期|共11页
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  • 正文语种 eng
  • 中图分类 食品工业;
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