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The Metabolite Urolithin-A Ameliorates Oxidative Stress in Neuro-2a Cells, Becoming a Potential Neuroprotective Agent

机译:代谢尿嘧啶-A改善神经2A细胞中的氧化应激,成为潜在的神经保护剂

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Urolithin A is a metabolite generated from ellagic acid and ellagitannins by the intestinal microbiota after consumption of fruits such as pomegranates or strawberries. The objective of this study was to determine the cytoprotective capacity of this polyphenol in Neuro-2a cells subjected to oxidative stress, as well as its direct radical scavenging activity and properties as an inhibitor of oxidases. Cells treated with this compound and H2O2 showed a greater response to oxidative stress than cells only treated with H2O2, as mitochondrial activity (MTT assay), redox state (ROS formation, lipid peroxidation), and the activity of antioxidant enzymes (CAT: catalase, SOD: superoxide dismutase, GR: glutathione reductase, GPx: glutathione peroxidase) were significantly ameliorated; additionally, urolithin A enhanced the expression of cytoprotective peroxiredoxins 1 and 3. Urolithin A also acted as a direct radical scavenger, showing values of 13.2 mu M Trolox Equivalents for Oxygen Radical Absorbance Capacity (ORAC) and 5.01 mu M and 152.66 mu M IC50 values for superoxide and 2,2-diphenyss1-picrylhydrazyl (DPPH) radicals, respectively. Finally, inhibition of oxidizing enzymes, such as monoamine oxidase A and tyrosinase, was also detected in a dose-dependent manner. The cytoprotective effects of urolithin A could be attributed to the improvement of the cellular antioxidant battery, but also to its role as a direct radical scavenger and enzyme inhibitor of oxidases.
机译:尿道素A是在肠道微生物蛋白在食物等石榴或草莓等水果消耗后由肠道微生物蛋白产生的代谢物。本研究的目的是确定该多酚在经受氧化应激的神经-2a细胞中的细胞保护能力,以及其作为氧化酶抑制剂的直接自由基清除活性和性质。用该化合物和H 2 O 2处理的细胞显示出与用H 2 O 2处理的细胞的氧化应激的响应,作为线粒体活性(MTT测定),氧化还原状态(ROS形成,脂质过氧化)和抗氧化剂酶活性(猫:过氧化氢酶, SOD:超氧化物歧化酶,GR:谷胱甘肽还原酶,GPX:谷胱甘肽过氧化物酶)显着改善;另外,Urokithin A增强了细胞保护氧化锆1和3的表达。尿嘧啶A也用作直接自由基清除剂,显示出氧自由基吸光度(ORAC)和5.01μm和152.66μm的值13.2μm的拖车等同物的值对于超氧化物和2,2-diphenyss1-富铬酰基(DPPH)基团。最后,还以剂量依赖性方式检测抑制氧化酶,例如单胺氧化酶A和酪氨酸酶。尿素素A的细胞保护作用可归因于细胞抗氧化电池的改善,也可归因于其作为氧化酶直接自由基清除剂和酶抑制剂的作用。

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