首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Electroacupuncture Improves Antidepressant Effects in CUMS Rats by Protecting Hippocampal Synapse and Mitochondrion: An Ultrastructural and iTRAQ Proteomic Study
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Electroacupuncture Improves Antidepressant Effects in CUMS Rats by Protecting Hippocampal Synapse and Mitochondrion: An Ultrastructural and iTRAQ Proteomic Study

机译:通过保护海马突触和线粒体和线粒体来改善CUMS大鼠的抗抑郁作用:超微结构和ITRAQ蛋白质组学研究

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摘要

Electroacupuncture (EA) is considered a complementary therapy for depression. Trials also found that EA has additive benefits when combined with medication compared with medication alone. It is revealed that EA restores altered hippocampal synaptic plasticity in depressed brain. But precise molecular mechanism is poorly understood. Here, we evaluated the therapeutic effects of EA and EA combined with selective serotonin reuptake inhibitor (SSRI) on depressed (CUMS) rats. Then a new proteomics approach, isobaric tag for relative and absolute quantitation (iTRAQ), was used to explore the differential expressed synaptic protein in hippocampus between CUMS and EA-treated rats to identify the possible target molecular mechanism of its effects. We found that EA had additive benefit against depressive behaviors when combined with SSRI. Ultrastructure study on neuron showed significant change in postsynapse density (PSD) and mitochondrion. Through iTRAQ, it is found that synaptic and mitochondrial proteins were significantly changed after EA, consisting with ultrastructure study results. These findings suggest that EA improves antidepressant performance in depressed rats through protecting synaptic and mitochondrial functions in hippocampus.
机译:电针(EA)被认为是抑郁症的互补疗法。试验还发现,与单独的药物相比,EA与药物相结合时具有添加剂益处。据揭示EA恢复在抑郁的大脑中改变了海马突触可塑性。但精确的分子机制理解得很差。在这里,我们评估了EA和EA与选择性血清素再摄取抑制剂(SSRI)的治疗效果相结合在抑制(CUMS)大鼠上。然后,新的蛋白质组学方法,相对定量(ITRAQ)的同位数标签,用于探索CUMS和EA治疗大鼠之间海马的差异表达的突触蛋白,以确定其效果的可能靶标分子机制。我们发现EA与SSRI相结合时对抑郁行为进行添加剂。对神经元的超微结构研究显示出后期密度(PSD)和线粒体的显着变化。通过ITRAQ,发现突触和线粒体蛋白在EA后显着改变,包括超微结构研究结果。这些发现表明,EA通过保护海马中的突触和线粒体功能来改善抑郁大鼠的抗抑郁性能。

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