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首页> 外文期刊>Behavioural Brain Research: An International Journal >Protective effects of a catechin-rich extract on the hippocampal formation and spatial memory in aging rats
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Protective effects of a catechin-rich extract on the hippocampal formation and spatial memory in aging rats

机译:富含儿茶素的提取物对衰老大鼠海马结构和空间记忆的保护作用

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摘要

Green tea (GT) displays strong anti-oxidant and anti-inflammatory properties mostly attributed to (-)-epigallocatechin-3-gallate (EGCG), while experiments focusing on other catechins are scarce. With the present work we intended to analyze the neuroprotective effects of prolonged consumption of a GT extract (GTE) rich in catechins but poor in EGCG and other GT bioactive components that could also afford benefit. The endpoints evaluated were aging-induced biochemical and morphological changes in the rat hippocampal formation (HF) and behavioral alterations. Male Wistar rats aged 12 months were treated with GTE until 19 months of age. This group of animals was compared with control groups aged 19 (C-19M) or 12 months (C-12M). We found that aging increased oxidative markers but GTE consumption protected proteins and lipids against oxidation. The age-associated increase in lipofuscin content and lysosomal volume was also prevented by treatment with GTE. The dendritic arborizations of dentate granule cells of GTE-treated animals presented plastic changes accompanied by an improved spatial learning evaluated with the Morris water maze. Altogether our results demonstrate that the consumption of an extract rich in catechins other than EGCG protected the HF from aging-related declines contributing to improve the redox status and preventing the structural damage observed in old animals, with repercussions on behavioral performance.
机译:绿茶(GT)具有较强的抗氧化和抗炎特性,主要归因于(-)-表没食子儿茶素-3-没食子酸酯(EGCG),而针对其他儿茶素的实验却很少。通过当前的工作,我们打算分析长时间食用富含儿茶素但缺乏EGCG和其他GT生物活性成分(也可以带来益处)的GT提取物(GTE)的神经保护作用。评估的终点是大鼠海马结构(HF)衰老引起的生化和形态变化以及行为改变。将12个月大的雄性Wistar大鼠用GTE治疗直至19个月大。将这组动物与19岁(C-19M)或12个月(C-12M)的对照组进行比较。我们发现衰老增加了氧化标记,但GTE消耗保护了蛋白质和脂质免受氧化。用GTE治疗还可以防止与年龄相关的脂褐素含量和溶酶体体积的增加。用GTE处理的动物的齿状颗粒细胞的树突状乔木表现出可塑性变化,并伴随着用莫里斯水迷宫评估的改善的空间学习。总的来说,我们的结果表明,食用富含儿茶素而不是EGCG的提取物可以保护HF免受衰老相关的衰落的影响,从而有助于改善氧化还原状态并防止在老年动物中观察到的结构破坏,并对行为表现产生影响。

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