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Kale supplementation during high fat feeding improves metabolic health in a mouse model of obesity and insulin resistance

机译:高脂肪饲养过程中的羽衣甘蓝补充改善了肥胖和胰岛素抵抗的小鼠模型中的代谢健康

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Cruciferous vegetables have been widely studied for cancer prevention and cardiovascular health. Broccoli is the cruciferous vegetable whose phytochemistry and physiological effects have been most extensively studied. Kale ( Brassica oleracea var. acephala) appears on lists of ‘healthiest, nutrient dense foods’ but, there is paucity of data on kale as a functional food. In a 12-week study, we tested the effect of curly green kale on high fat diet (HFD) induced obesity and insulin resistance, lipid metabolism, endotoxemia and inflammation in C57BL/6J mice fed isocaloric diets. Kale supplementation did not attenuate HFD diet induced fat accumulation and insulin resistance (P = ns; n = 9) but, it lowered serum triglycerides, low density lipoprotein (LPL) cholesterol and prevented HFD induced increases in systemic endotoxemia and inflammation (serum LPS and Ccl2) (P0.01; n = 9). In adipose tissue, kale enhanced the expression of genes involved in adipogenesis (P0.01; n = 9), reduced the appearance of histologic markers of inflammation, downregulated both the gene expression and protein expression of the adipose tissue specific inflammation markers CD11c and F4/80 (P0.001; n = 9) and reduced the gene expression of a battery of chemokine C-C motif ligands (Ccl2, Ccl6, Ccl7, Ccl8, Ccl9) and chemokine C-C motif receptors (Ccr2, Ccr3, Ccr5). We conclude that kale vegetable protects against HFD diet induced dysfunction through mechanisms involving lipid metabolism, endotoxemia and inflammation.
机译:已经广泛研究了白痴蔬菜用于癌症预防和心血管健康。西兰花是一种十字骨般的植物,其植物化学和生理效果最广泛地研究。羽衣甘蓝(Brassica Oleracea var。Acephala)出现在“最健康,营养密集的食物”列表中,但是,羽衣甘蓝的数据缺乏乏味作为功能性食品。在为期12周的研究中,我们测试了C57BL / 6J小鼠喂养异蜂理饮食中的高脂饮食(HFD)诱导肥胖和胰岛素抵抗,脂质代谢,内毒素血症和炎症的肥胖绿色羽衣甘蓝的效果。羽衣甘蓝补充没有衰减HFD饮食诱导的脂肪积累和胰岛素抵抗(p = ns; n = 9),但是,它降低了血清甘油三酯,低密度脂蛋白(LPL)胆固醇并防止HFD诱导的系统性内毒性血症和炎症增加(血清LPS和CCL2)(P <0.01; n = 9)。在脂肪组织中,羽衣甘蓝增强了涉及脂肪发生的基因的表达(P <0.01; n = 9),降低了炎症的组织学标志物的外观,下调了脂肪组织特异性炎症标志物CD11c和F4的基因表达和蛋白质表达/ 80(P <0.001; n = 9),并降低了趋化因子CC基序配体(CCL2,CCL6,CCL7,CCL8,CCL9)和趋化因子CC基序受体(CCR2,CCR3,CCR5)的电池的基因表达。我们得出结论,通过涉及脂质代谢,内烟碱和炎症的机制,甘蓝植物可以防止HFD饮食诱导功能障碍。

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