Santana Aline, Santamarina Aline, Souza Gabriel, Mennitti Laís, Okuda Marcos, Venancio Daniel, Seelaender Marilia, do Nascimento Claudia Oller, Ribeiro Eliane, Lira Fabio, Oyama Lila
Departamento de Fisiologia, Universidade Federal de São Paulo, Sao Paulo, Brazil.
Laboratório de Movimento Humano, Universidade São Judas Tadeu, Sao Paulo, Brazil.
J Nutr Biochem. 2015 Sep;26(9):893-902. doi: 10.1016/j.jnutbio.2015.03.001. Epub 2015 Apr 13.
Supplementation with epigallocatechin-3-gallate (EGCG), which restores metabolic profiles, has been proposed as an option for preventing and treating obesity. We investigated whether decaffeinated green tea extract rich in EGCG, attenuates high-fat diet (HFD)-induced metabolic alterations in Swiss mice. The mice were maintained on either a control diet (CD) or HFD for 8 weeks and supplemented with either a placebo or EGCG (50mg/kg/day). Body weight, serum lipid profiles, cytokine protein expression, and content in epididymal (EPI) and retroperitoneal (RET) adipose tissues, and adipocyte area were measured. The body weights of HFD + placebo-fed mice were increased compared with those of HFD + EGCG-fed mice (28 and 21%, respectively), whereas the body weights of CD + EGCG-fed mice were decreased 16% compared with those of the CD + placebo group. Serum triglyceride levels were decreased 32% in the CD + EGCG group compared with the CD + placebo group. Compared with the CD + placebo group, increased phosphorylation of AMPK and hormone-sensitive lipase in EPI and RET, respectively, was found in the CD + EGCG group. Increased acetyl-CoA carboxylase phosphorylation was observed in both adipose tissues. In addition, TNF-α and IL-10 levels in EPI and adiponectin levels were higher in the CD + EGCG group than in the CD + placebo group. TNF-α levels were lower in the HFD + EGCG group than in the HFD + placebo group. Furthermore, the CD + EGCG group exhibited a lower adipocyte area than the CD + placebo group. These indicate that the effects of decaffeinated green tea extract on body mass may be related to the crosstalk between lipolytic and inflammatory pathways in normolipidic diet-fed mice but not in HFD-fed mice.
表没食子儿茶素-3-没食子酸酯(EGCG)可恢复代谢状况,补充该物质已被提议作为预防和治疗肥胖症的一种选择。我们研究了富含EGCG的脱咖啡因绿茶提取物是否能减轻高脂饮食(HFD)诱导的瑞士小鼠代谢改变。将小鼠分别给予对照饮食(CD)或HFD,持续8周,并分别补充安慰剂或EGCG(50mg/kg/天)。测量体重、血清脂质谱、细胞因子蛋白表达、附睾(EPI)和腹膜后(RET)脂肪组织中的含量以及脂肪细胞面积。与HFD + EGCG喂养的小鼠相比,HFD + 安慰剂喂养的小鼠体重增加(分别为28%和21%),而CD + EGCG喂养的小鼠体重比CD + 安慰剂组降低了16%。与CD + 安慰剂组相比,CD + EGCG组血清甘油三酯水平降低了32%。与CD + 安慰剂组相比,CD + EGCG组EPI和RET中AMPK和激素敏感性脂肪酶的磷酸化分别增加。在两个脂肪组织中均观察到乙酰辅酶A羧化酶磷酸化增加。此外,CD + EGCG组EPI中的TNF-α和IL-10水平以及脂联素水平均高于CD + 安慰剂组。HFD + EGCG组的TNF-α水平低于HFD + 安慰剂组。此外,CD + EGCG组的脂肪细胞面积低于CD + 安慰剂组。这些表明,脱咖啡因绿茶提取物对体重的影响可能与正常脂质饮食喂养小鼠中脂解和炎症途径之间的相互作用有关,而在HFD喂养的小鼠中则不然。