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首页> 外文期刊>The British Journal of Nutrition >A combination of probiotics and whey proteins enhances anti-obesity effects of calcium and dairy products during nutritional energy restriction in aP2-agouti transgenic mice
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A combination of probiotics and whey proteins enhances anti-obesity effects of calcium and dairy products during nutritional energy restriction in aP2-agouti transgenic mice

机译:益生菌和乳清蛋白的组合在aP2-agouti转基因小鼠的营养能量受限期间增强了钙和乳制品的抗肥胖作用

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Lactobacillus rhamnosus GG, Lactobacillusparacasei TMC0409, Streptococcus thermophilus TMC1543 and whey proteins were used to prepare fermented milk. For the experiment aP2-agouti transgenic mice were pre-treated with a high-sucrose/high-fat diet for 6 weeks to induce obesity. The obese mice were fed a diet containing 1.2% Ca and either non-fat dried milk (NFDM) or probiotic-fermented milk (PFM) with nutritional energy restriction for 6 weeks. The animals were examined after the treatment for changes in body weight, fat pad weight, fatty acid synthase (FAS) activity, lypolysis, the expression levels of genes related to lipid metabolism, insulin sensitivity in adipocytes and skeletal muscle and the presence of biomarkers for oxidative and inflammatory stress in plasma. It was found that the PFM diet significantly reduced body weight, fat accumulation, and adipocyte FAS activity, and increased adipocyte lipolysis as compared with the effects of the NFDM diet (P0.05). The adipose tissue gene expression of 11 beta-hydroxysteroid dehydrogenase 1 (11 beta-HSD1) was significantly suppressed in mice that were fed PFM as compared with those that were fed NFDM (P0.05). PFM caused a greater up-regulation of skeletal muscle PPAR alpha, PPAR delta, uncoupling protein 3 (UCP3) and GLUT4 expression and a significant decrease in the plasma concentration of insulin, malondialdehyde, TNF-alpha, monocyte chemotactic protein-1 and C-reactive protein as compared with the effects of NFDM (P0.05). Fermentation of milk with selected probiotics and supplementation of milk with whey proteins may thus enhance anti-obesity effects of Ca and dairy products by the suppression of adipose tissue lipogenesis, activation of fat oxidation in skeletal muscle and reduction of oxidative and inflammatory stress.
机译:用鼠李糖乳杆菌GG,副干酪乳杆菌TMC0409,嗜热链球菌TMC1543和乳清蛋白制备发酵乳。对于该实验,将aP2-agouti转基因小鼠用高蔗糖/高脂饮食预处理6周以诱导肥胖。给肥胖小鼠喂食含1.2%Ca的饮食和限制营养能量的脱脂奶粉(NFDM)或益生菌发酵奶(PFM),持续6周。处理后检查动物的体重,脂肪垫重量,脂肪酸合酶(FAS)活性,溶血,与脂质代谢相关的基因表达水平,脂肪细胞和骨骼肌中胰岛素敏感性以及是否存在生物标志物的变化。血浆中的氧化应激和炎症应激。结果发现,与NFDM饮食相比,PFM饮食显着降低了体重,脂肪积累和脂肪细胞FAS活性,并增加了脂肪细胞的脂解作用(P <0.05)。与饲喂NFDM的小鼠相比,饲喂PFM的小鼠的11β-羟类固醇脱氢酶1(11 beta-HSD1)的脂肪组织基因表达被显着抑制(P <0.05)。 PFM引起骨骼肌PPARα,PPARδ,解偶联蛋白3(UCP3)和GLUT4表达的更大上调,胰岛素,丙二醛,TNF-α,单核细胞趋化蛋白1和C-的血浆浓度显着降低。与NFDM的作用相比,具有活性的蛋白质(P <0.05)。因此,通过抑制脂肪组织的脂肪生成,激活骨骼肌中的脂肪氧化以及减少氧化应激和炎性应激,用选定的益生菌对牛奶进行发酵,并用乳清蛋白补充牛奶可以增强钙和乳制品的抗肥胖作用。

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