首页> 美国卫生研究院文献>Frontiers in Pharmacology >Tannins Enriched Fraction of Emblica officinalis Fruits Alleviates High-Salt and Cholesterol Diet-Induced Cognitive Impairment in Rats via Nrf2–ARE Pathway
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Tannins Enriched Fraction of Emblica officinalis Fruits Alleviates High-Salt and Cholesterol Diet-Induced Cognitive Impairment in Rats via Nrf2–ARE Pathway

机译:丹宁酸丰富的余甘子果实级分通过Nrf2–ARE途径减轻高盐和胆固醇饮食引起的大鼠认知障碍

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摘要

Modern diets containing high quantities of salt and cholesterol have exhibited to cause a considerable effect on our health. Such diets, when consumed in the long term, have also shown to be a precursor to several disorders such as the metabolic disorder and consequently, various other diseases, including cognitive deficits. In the present study, we used a high salt and cholesterol diet (HSCD) to induce cognitive impairment in rats and also investigated the pharmacological action of tannins enriched fractions of Emblica officinalis (EOT) – a fruit that has been traditionally used for the treatment of numerous disorders for centuries. Significant alterations in MDA, GSH, TBARS, GPx, mitochondrial ATP, and mitochondrial membrane potential levels were observed in rats fed HSCD, which indicated presence of oxidative stress. Moreover, classic signs of cognitive impairment and deficits in spatial learning and memory were observed in the neurobehavioral tests. E. officinalis tannins exhibited good affinity to Nrf2 receptors in in silico studies, significantly reversed the changes in the aforementioned biomarkers of oxidative stress which were altered in the model group, as well as improved the performance of rats in Morris water maze task. Our results also reflected that EOT supplementation significantly increased the expression of Nrf2 in the CA1 region of hippocampus and cortex. Additionally, TUNEL assay indicated that EOT supplementation led to reversal of DNA fragmentation and apoptosis caused by HSCD. Immunohistochemical analysis and western blot further revealed a surge in the nuclear location of Nrf2. Through our study, we have demonstrated that cognitive impairment can be caused in rats via HSCD as a result of the oxidative stress induced by the same. Additionally, we have investigated a novel mechanism of action for EOT (which strongly suggests to be via the Nrf2–ARE pathway) and demonstrated that it has the potential to be used in the treatment of cognitive impairment.
机译:含有大量盐和胆固醇的现代饮食已显示出对我们健康的重要影响。当长期食用这种饮食时,它们也已显示出是多种疾病的先兆,例如代谢性疾病,因此是各种其他疾病,包括认知缺陷。在本研究中,我们使用高盐和高胆固醇饮食(HSCD)诱导大鼠认知障碍,并研究了富含丹宁酸(Emblica officinalis(EOT))的级分的药理作用-传统上已将这种水果用于治疗几个世纪以来的众多疾病。在喂食HSCD的大鼠中观察到MDA,GSH,TBARS,GPx,线粒体ATP和线粒体膜电位水平发生了显着变化,这表明存在氧化应激。此外,在神经行为测试中观察到了认知障碍和空间学习与记忆缺陷的经典迹象。在计算机研究中,厚朴丹参单宁对Nrf2受体表现出良好的亲和力,显着逆转了模型组中上述氧化应激生物标志物的变化,并改善了大鼠在莫里斯水迷宫任务中的表现。我们的研究结果还反映,EOT补充显着增加了海马和皮层CA1区Nrf2的表达。此外,TUNEL分析表明EOT补充可逆转HSCD引起的DNA片段化和凋亡。免疫组织化学分析和免疫印迹进一步揭示了Nrf2核位置的激增。通过我们的研究,我们证明了认知障碍可能是通过HSCD引起的大鼠氧化应激所致。此外,我们已经研究了EOT的新作用机制(强烈建议通过Nrf2-ARE途径),并证明它具有用于治疗认知障碍的潜力。

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