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Curcumin attenuates Nrf2 signaling defect oxidative stress in muscle and glucose intolerance in high fat diet-fed mice

机译:姜黄素减轻高脂饮食喂养小鼠的Nrf2信号缺陷肌肉氧化应激和葡萄糖耐量下降

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摘要

AIM: To investigate the signaling mechanism of anti-oxidative action by curcumin and its impact on glucose disposal.METHODS: Male C57BL/6J mice were fed with either a normal diet (n = 10) or a high fat diet (HFD) (n = 20) to induce obesity and insulin resistance. After 16 wk, 10 HFD-fed mice were further treated with daily curcumin oral gavage at the dose of 50 mg/kg body weight (BW) (HFD + curcumin group). After 15 d of the curcumin supplementation, an intraperitoneal glucose tolerance test was performed. Fasting blood samples were also collected for insulin and glucose measurements. Insulin-sensitive tissues, including muscle, adipose tissue and the liver, were isolated for the assessments of malondialdehyde (MDA), reactive oxygen species (ROS) and nuclear factor erythroid-2-related factor-2 (Nrf2) signaling.RESULTS: We show here that in a HFD mouse model, short-term curcumin gavage attenuated glucose intolerance without affecting HFD-induced BW gain. Curcumin also attenuated HFD-induced elevations of MDA and ROS in the skeletal muscle, particularly in its mitochondrial fraction, but it had no such an effect in either adipose tissue or the liver of HFD-fed mice. Correspondingly, in skeletal muscle, the levels of total or nuclear content of Nrf2, as well as its downstream target, heme oxygenase-1, were reduced by HFD-feeding. Curcumin intervention dramatically reversed these defects in Nrf2 signaling. Further analysis of the relationship of oxidative stress with glucose level by a regression analysis showed a positive and significant correlation between the area under the curve of a glucose tolerance test with MDA levels either in muscle or muscular mitochondria.CONCLUSION: These findings suggest that the short-term treatment of curcumin in HFD-fed mice effectively ameliorates muscular oxidative stress by activating Nrf2 function that is a novel mechanism for its effect in improving glucose intolerance.
机译:目的:研究姜黄素抗氧化作用的信号传导机制及其对葡萄糖处置的影响。方法:给雄性C57BL / 6J小鼠喂食正常饮食(n = 10)或高脂饮食(HFD)(n = 20)诱导肥胖和胰岛素抵抗。 16周后,每天以50 mg / kg体重(BW)的剂量每天用姜黄素口服管饲法治疗10只HFD喂养的小鼠(HFD +姜黄素组)。补充姜黄素15天后,进行腹膜内葡萄糖耐量试验。空腹血样也被收集用于胰岛素和葡萄糖的测量。分离出包括肌肉,脂肪组织和肝脏在内的胰岛素敏感组织,以评估丙二醛(MDA),活性氧(ROS)和核因子红系-2相关因子2(Nrf2)信号传导。表明在HFD小鼠模型中,短期姜黄素管饲可减轻葡萄糖耐受不良,而不会影响HFD诱导的体重增加。姜黄素也减弱了HFD诱导的骨骼肌中MDA和ROS的升高,特别是线粒体部分,但在HFD喂养的小鼠的脂肪组织或肝脏中均没有这种作用。相应地,HFD喂养降低了骨骼肌中Nrf2的总或核含量以及其下游靶血红素加氧酶-1的水平。姜黄素干预可显着逆转Nrf2信号传导中的这些缺陷。通过回归分析进一步分析氧化应激与葡萄糖水平的关系,表明葡萄糖耐量试验曲线下的面积与肌肉或肌肉线粒体中MDA含量之间存在正相关和显着相关性。结论:这些发现表明饲喂HFD的小鼠中的姜黄素的长期治疗可通过激活Nrf2功能来有效缓解肌肉氧化应激,这是其改善葡萄糖耐量的新机制。

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