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Misoprostol Reverse Hippocampal Neuron Cyclooxygenase-2 Downstream Signaling Imbalance in Aluminum-Overload Rats

机译:铝超负荷大鼠米索前列醇反向海马神经元环氧合酶-2下游信号不平衡

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摘要

Although COX-2 inhibition in animal models of neurodegenerative diseases has shown neuroprotection, recent studies have revealed some serious side effects (ulcers, bleeding, fatal cerebrovascular diseases etc.) and the limited benefits of COX-2 inhibitors. A more focused approach is necessary to explore the therapeutic effect of the COX downstream signaling pathway in neurological research. The aim of this study was to explore the alterations of the PGES-PGE2-EP signal pathway and the effect of misoprostol on neurodegeneration by chronic aluminum-overload in rats. Adult rats were treated by intragastric administration of aluminum gluconate. The PGE2 content and expression of PGES and EPs in the hippocampi of rats were detected using ELISA, q-PCR and Western blot analysis, respectively. The content of malondialdehyde (MDA) and the activity of superoxide dismutase (SOD) in the rat hippocampi were also detected. The misoprostol treatment dose-dependently improved spatial learning and memory function as well as healing after hippocampal neuron damage induced by chronic aluminum-overload in rats. Meanwhile, the administration of misoprostol resulted in a decrease in the PGE2 level and down-regulation of the mPGES-1, EP2 and EP4 expression levels, while there was a dose-dependent up-regulation of EP3 expression. These results suggest that misoprostol possesses a neuroprotective property, and the mechanism involves affecting the EP3 level and reducing the endogenous production of PGE2 through a negative feedback mechanism, increasing the EP3 expression level, decreasing the EP2 and EP4 expression levels, and rebuilding the mPGES-1-PGE2-EP1-4 signal pathway balance. In this way, misoprostol has a counteractive effect on oxidant stress and inflammation in the central nervous system. The PGES-PGE2-EPs signaling pathway is a potential therapeutic strategy for treating neurodegeneration in patients.
机译:尽管在神经退行性疾病的动物模型中对COX-2的抑制已显示出神经保护作用,但最近的研究显示一些严重的副作用(溃疡,出血,致命性脑血管疾病等)以及COX-2抑制剂的作用有限。需要更集中的方法来探索神经学研究中COX下游信号通路的治疗效果。这项研究的目的是探讨PGES-PGE2-EP信号通路的变化以及米索前列醇对大鼠慢性铝超负荷神经变性的影响。通过胃内施用葡萄糖酸铝治疗成年大鼠。分别采用ELISA,q-PCR和Western blot方法检测大鼠海马中PGE2的含量以及PGES和EPs的表达。还检测了大鼠海马中丙二醛(MDA)的含量和超氧化物歧化酶(SOD)的活性。米索前列醇治疗剂量依赖性地改善了大鼠的慢性铝超负荷引起的海马神经元损伤后的空间学习和记忆功能以及康复。同时,米索前列醇的使用导致PGE2水平降低,mPGES-1,EP2和EP4表达水平下调,而EP3表达则呈剂量依赖性上调。这些结果表明,米索前列醇具有神经保护作用,其机制涉及通过负反馈机制影响EP3水平并减少PGE2的内源性产生,增加EP3表达水平,降低EP2和EP4表达水平,并重建mPGES- 1-PGE2-EP1-4信号通路平衡。这样,米索前列醇对中枢神经系统的氧化应激和炎症具有反作用。 PGES-PGE2-EPs信号传导途径是治疗患者神经变性的潜在治疗策略。

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