首页> 外文期刊>Molecular Nutrition and Food Research >Long-term supplementation of honokiol and magnolol ameliorates body fat accumulation, insulin resistance, and adipose inflammation in high-fat fed mice.
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Long-term supplementation of honokiol and magnolol ameliorates body fat accumulation, insulin resistance, and adipose inflammation in high-fat fed mice.

机译:长期补充厚朴酚和厚朴酚可改善高脂喂养小鼠体内的脂肪积累,胰岛素抵抗和脂肪炎症。

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摘要

Scope. This study investigated the effect of honokiol (HON) and magnolol (MAG), phenolic compounds in Magnolia plants, on adiposity and adiposity-related metabolic disturbances in mice fed high-fat diet (HFD), and the potential underlying mechanisms focusing on the lipid metabolism and inflammatory response. Methods and results. C57BL/6J mice were fed HFD (45 kcal% fat) with or without HON (0.02%, w/w) or MAG (0.02%, w/w) for 16 wk. Despite no changes in body weight, food intake, and hepatic fat accumulation, HON and MAG significantly lowered the weight of white adipose tissue (WAT) as well as adipocyte size and protected against insulin resistance induced by HFD. These effects were associated with increases in energy expenditure and adipose fatty acid oxidation and decreases in fatty acid synthase activity and expression of genes related to fatty acid synthesis, desaturation, and uptake, as well as adipocyte differentiation in WAT. Moreover, HON and MAG significantly lowered the expression of proinflammatory genes in WAT and elevated the plasma IL-10 level. Particularly, HON significantly decreased the plasma resistin level and increased the plasma adiponectin level compared to the control group. Conclusion. HON and MAG have potential as novel agents for amelioration of adiposity and associated insulin resistance and inflammation
机译:范围。这项研究调查了厚朴植物中厚朴酚(HON)和厚朴酚(MAG),酚类化合物对高脂饮食(HFD)喂养的小鼠肥胖和与肥胖相关的代谢紊乱的影响以及潜在的潜在机制(以脂质为中心)代谢和炎症反应。方法和结果。给C57BL / 6J小鼠喂食含或不含HON(0.02%,w / w)或MAG(0.02%,w / w)的HFD(45 kcal%脂肪)16周。尽管体重,食物摄入和肝脂肪蓄积没有变化,但是HON和MAG显着降低了白色脂肪组织(WAT)的重量以及脂肪细胞的大小,并防止了由HFD引起的胰岛素抵抗。这些影响与能量消耗和脂肪脂肪酸氧化的增加以及脂肪酸合酶活性的下降以及与脂肪酸合成,去饱和和摄取以及WAT中脂肪细胞分化相关的基因表达有关。此外,HON和MAG显着降低WAT中促炎基因的表达,并升高血浆IL-10水平。特别是,与对照组相比,HON显着降低了血浆抵抗素水平,并增加了血浆脂联素水平。结论。 HON和MAG作为改善肥胖症以及相关的胰岛素抵抗和炎症的新型药物具有潜力

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