首页> 美国卫生研究院文献>Frontiers in Pharmacology >Antagomirs Targeting MiroRNA-134 Attenuates Epilepsy in Rats through Regulation of Oxidative Stress Mitochondrial Functions and Autophagy
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Antagomirs Targeting MiroRNA-134 Attenuates Epilepsy in Rats through Regulation of Oxidative Stress Mitochondrial Functions and Autophagy

机译:靶向MiroRNA-134的antagomirs通过调节氧化应激线粒体功能和自噬减轻大鼠癫痫发作。

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摘要

The effects of the existing anti-epileptic drugs are unsatisfactory to almost one third of epileptic patients. MiR-134 antagomirs prevent pilocarpine-induced status epilepticus. In this study, a lithium chloride-pilocarpine-induced status epilepticus model was established and treated with intracerebroventricular injection of antagomirs targeting miR-134 (Ant-134). The Ant-134 treatment significantly improved the performance of rats in Morris water maze tests, inhibited mossy fiber sprouting in the dentate gyrus, and increased the survival neurons in the hippocampal CA1 region. Silencing of miR-134 remarkably decreased malonaldehyde and 4-hydroxynonenal levels and increased superoxide dismutase activity in the hippocampus. The Ant-134 treatment also significantly increased the production of ATP and the activities of mitochondrial respiratory enzyme complexes and significantly decreased the reactive oxygen species generation in the hippocampus compared with the status epilepticus rats. Finally, the Ant-134 treatment remarkably downregulated the hippocampal expressions of autophagy-associated proteins Atg5, beclin-1 and light chain 3B. In conclusion, Ant-134 attenuates epilepsy via inhibiting oxidative stress, improving mitochondrial functions and regulating autophagy in the hippocampus.
机译:现有的抗癫痫药的效果对于近三分之一的癫痫患者而言并不令人满意。 MiR-134拮抗剂可以预防毛果芸香碱引起的癫痫持续状态。在这项研究中,建立了氯化锂-毛果芸香碱引起的癫痫持续状态模型,并通过脑室内注射靶向miR-134(Ant-134)的拮抗剂来治疗。 Ant-134处理可显着改善大鼠在莫里斯水迷宫测试中的性能,抑制齿状回中苔藓纤维的萌芽,并增加海马CA1区的存活神经元。沉默miR-134可显着降低海马中的丙二醛和4-羟基壬烯水平,并增加超氧化物歧化酶活性。与癫痫持续状态大鼠相比,Ant-134处理还显着增加了ATP的产生和线粒体呼吸酶复合物的活性,并显着降低了海马中的活性氧生成。最后,Ant-134处理显着下调了自噬相关蛋白Atg5,beclin-1和轻链3B的海马表达。总之,Ant-134通过抑制氧化应激,改善线粒体功能和调节海马体自噬来减轻癫痫病的发作。

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