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Time-Dependent Beneficial Effect of Chronic Polyphenol Treatment with Catechin on Endothelial Dysfunction in Aging Mice

机译:儿茶素对慢性多酚的时效性对衰老小鼠血管内皮功能的影响

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A controlled redox environment is essential for vascular cell maturation and function. During aging, an imbalance occurs, leading to endothelial dysfunction. We hypothesized that, according to the concept of hormesis, exposure to physiologic oxidative stress during the maturation phase of the endothelium will activate protective pathways involved in stress resistance. C57Bl/6 mice were treated with the polyphenol catechin for the last 3 (post-maturation) or 9 months prior study at 12 months of age. Endothelial dysfunction, assessed by acetylcholine-induced dilations of isolated renal arteries, was present at 12 months (Pphox and reduced MnSOD (P<0.05). In conclusion, we demonstrate a pivotal role of cellular redox equilibrium: exposure to physiologic oxidative stress during the maturation phase of the endothelium is essential for its function.
机译:受控的氧化还原环境对于血管细胞的成熟和功能至关重要。在老化过程中,会发生失衡,从而导致内皮功能障碍。我们假设,根据兴奋剂的概念,在内皮成熟阶段暴露于生理氧化应激会激活参与应激抗性的保护途径。在研究之前的12个月大时,在最后3个月(成熟后)或9个月内,用多酚儿茶素治疗C57Bl / 6小鼠。内皮功能障碍通过乙酰胆碱诱导的孤立肾动脉扩张评估,在12个月时出现(Pphox 并降低了MnSOD(P <0.05)。最后,我们证明了细胞氧化还原平衡的关键作用:暴露于生理内皮成熟阶段的氧化应激对其功能至关重要。

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