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首页> 外文期刊>Neurochemical research >Resolvin D1 Prevents the Impairment in the Retention Memory and Hippocampal Damage in Rats Fed a Corn Oil-Based High Fat Diet by Upregulation of Nrf2 and Downregulation and Inactivation of p(66)Shc
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Resolvin D1 Prevents the Impairment in the Retention Memory and Hippocampal Damage in Rats Fed a Corn Oil-Based High Fat Diet by Upregulation of Nrf2 and Downregulation and Inactivation of p(66)Shc

机译:Regarvin D1通过URF2的上调和P(66)SHC的下调和灭活大鼠饲喂玉米油基高脂饮食的大鼠保留记忆和海马损伤的损伤.P(66)SHC

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摘要

This study investigated the effect of a high-fat diet rich in corn oil (CO-HFD) on the memory retention and hippocampal oxidative stress, inflammation, and apoptosis in rats, and examined if the underlying mechanisms involve modulating Resolvin D1 (RvD1) levels and activation of p(66)Shc. Also, we tested if co-administration of RvD1 could prevent these neural adverse effects induced by CO-HFD. Adult male Wistar rats were divided into 4 groups (n = 18/each) as control fed standard diet (STD) (3.82 kcal/g), STD + RvD1 (0.2 mu g/Kg, i.p/twice/week), CO-HFD (5.4 kcal/g), and CO-HFD + RvD1. All treatments were conducted for 8 weeks. With normal fasting glucose levels, CO-HFD induced hyperlipidemia, hyperinsulinemia, increased HOMA-IRI and reduced the rats' memory retention. In parallel, CO-HFD increased levels of reactive oxygen species (ROS), malondialdehyde (MDA), cytoplasmic cytochrome-c, and cleaved caspase-3 and significantly decreased levels of glutathione (GSH), Bcl-2, and manganese superoxide dismutase (MnSOD) in rats' hippocampi. Besides, CO-HFD significantly reduced hippocampal levels of docosahexaenoic acid (DHA) and RvD1, as well as total protein levels of Nrf2 and significantly increased nuclear protein levels of p-NF-kappa B. Concomitantly, CO-HFD increased hippocampal protein levels of p-JNK, p53, p(66)Shc, p-p(66)Shc, and NADPH oxidase. However, without altering plasma and serum levels of glucose, insulin, and lipids, co-administration of RvD1 to CO-HFD completely reversed all these events. It also resulted in similar effects in the STD fed-rats. In conclusion, CO-HFD impairs memory function and induces hippocampal damage by reducing levels of RvD1 and activation of JNK/p53/p(66)Shc/NADPH oxidase, effects that are prevented by co-administration of RvD1.
机译:本研究研究了富含玉米油(CO-HFD)的高脂肪饮食对大鼠内存保留和海马氧化应激,炎症和凋亡的影响,并且如果潜在的机制涉及调节替换素D1(RVD1)水平,则检查并激活P(66)SHC。此外,我们测试了RVD1的共同施用是否可以防止由CO-HFD诱导的这些神经不良反应。成年雄性Wistar大鼠分为4组(n = 18 /每种),如对照喂养标准饮食(STD)(3.82 kcal / g),std + rvd1(0.2 mu g / kg,IP /两次/周),共同HFD(5.4千卡/克)和CO-HFD + RVD1。所有治疗均进行8周。具有正常的空腹葡萄糖水平,Co-HFD诱导的高脂血症,高胰岛素血症,增加HOMA-IRI并降低了大鼠的记忆保留。同时,共hFD增加反应性氧(ROS),丙二醛(MDA),细胞质细胞色素-C和切割的Caspase-3水平,并且显着降低了谷胱甘肽(GSH),Bcl-2和锰超氧化物歧化酶的水平( MNSOD)在大鼠的海马。此外,Co-HFD显着降低了海马水平的二十二碳六烯酸(DHA)和RVD1,以及NRF2的总蛋白质水平,显着提高了P-NF-Kappa B的核蛋白水平。伴随着,Co-HFD增加了海马蛋白水平P-JNK,P53,P(66)SHC,PP(66)SHC和NADPH氧化酶。然而,不改变血浆和血清葡萄糖水平的葡萄糖,胰岛素和脂质,共同施用RVD1至CO-HFD完全逆转所有这些事件。它还导致STD美联储大鼠的效果类似。总之,Co-HFD损害记忆功能并通过降低RVD1水平和JNK / P53 / P(66)SHC / NADPH氧化酶的激活,通过共同施用RVD1来诱导海马损伤。

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