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首页> 外文期刊>The international journal of neuropsychopharmacology >Sustained Ultrastructural Changes in Rat Hippocampal Formation After Repeated Electroconvulsive Seizures
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Sustained Ultrastructural Changes in Rat Hippocampal Formation After Repeated Electroconvulsive Seizures

机译:重复电静脉癫痫发作后大鼠海马形成的持续超微结构变化

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Background Electroconvulsive therapy (ECT) is a highly effective and fast-acting treatment for depression used in the clinic. Its mechanism of therapeutic action remains uncertain. Previous studies have focused on documenting neuroplasticity in the early phase following electroconvulsive seizures (ECS), an animal model of ECT. Here, we investigate whether changes in synaptic plasticity and nonneuronal plasticity (vascular and mitochondria) are sustained 3 months after repeated ECS trials. Methods ECS or sham treatment was given daily for 1 day or 10 days to a genetic animal model of depression: the Flinders Sensitive and Resistant Line rats. Stereological principles were employed to quantify numbers of synapses and mitochondria as well as length of microvessels in the hippocampus 24 hours after a single ECS. Three months after 10 ECS treatments (1 per day for 10 days) and sham-treatment, brain-derived neurotrophic factor and vascular endothelial growth factor protein levels were quantified with immunohistochemistry. Results A single ECS treatment significantly increased the volume of hippocampal CA1-stratum radiatum, the total length of microvessels, mitochondria number, and synapse number. Observed changes were sustained as shown in the multiple ECS treatment group analyzed 3 months after the last of 10 ECS treatments. Conclusion A single ECS caused rapid effects of synaptic plasticity and nonneuronal plasticity, while repeated ECS induced long-lasting changes in the efficacy of synaptic plasticity and nonneuronal plasticity at least up to 3 months after ECS.
机译:背景技术电耦合治疗(ECT)是临床中使用的抑郁症的高效和快速作用的处理。它的治疗作用机制仍然不确定。以前的研究侧重于在电静脉癫痫发作(ECS)之后的早期阶段的文献神经塑性,ECT的动物模型。在这里,我们研究了突触可塑性和非胸肌塑性(血管和线粒体)的变化是否在重复的ECS试验后3个月持续。方法每天给予ECS或Sham治疗1天或10天,抑郁遗传动物模型:裂片敏感和抗性线大鼠。使用立体学原理来量化突触和线粒体的数量,以及单一EC后24小时在海马中的微血管长度。 10个EC治疗后三个月(每天10天1)和假处理,脑源性神经营养因子和血管内皮生长因子蛋白水平与免疫组化量化。结果单一ECS治疗显着增加了海马CA1-层辐射射线的体积,微血管的总长度,线粒体数量和突触号。观察到的变化是如在10个EC治疗后3个月分析的多个ECS治疗组中所示。结论单一ECS引起突触塑性和非胸部可塑性的快速影响,而重复的ECS诱导ECS后突触塑性和非对齐可塑性效果的效果长期变化。

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