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Expression of constitutively active erythropoietin receptor in pyramidal neurons of cortex and hippocampus boosts higher cognitive functions in mice

机译:组成性活性促红细胞生成素受体在皮质和海马锥体神经元中的表达可增强小鼠的认知功能

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Background Erythropoietin (EPO) and its receptor (EPOR) are expressed in the developing brain and their transcription is upregulated in adult neurons and glia upon injury or neurodegeneration. We have shown neuroprotective effects and improved cognition in patients with neuropsychiatric diseases treated with EPO. However, the critical EPO targets in brain are unknown, and separation of direct and indirect effects has remained difficult, given the role of EPO in hematopoiesis and brain oxygen supply. Results Here we demonstrate that mice with transgenic expression of a constitutively active EPOR isoform (cEPOR) in pyramidal neurons of cortex and hippocampus exhibit enhancement of spatial learning, cognitive flexibility, social memory, and attentional capacities, accompanied by increased impulsivity. Superior cognitive performance is associated with augmented long-term potentiation of cEPOR expressing neurons in hippocampal slices. Conclusions Active EPOR stimulates neuronal plasticity independent of any hematopoietic effects and in addition to its neuroprotective actions. This property of EPOR signaling should be exploited for defining novel strategies to therapeutically enhance cognitive performance in disease conditions.
机译:背景促红细胞生成素(EPO)及其受体(EPOR)在发育中的大脑中表达,一旦损伤或神经退行性变,它们的转录在成年神经元和神经胶质中上调。我们已经显示了用EPO治疗的神经精神疾病患者的神经保护作用和改善的认知能力。然而,鉴于EPO在造血作用和脑供氧中的作用,大脑中关键的EPO靶点尚不明确,直接和间接作用的分离仍然很困难。结果在这里,我们证明了在皮质和海马锥体神经元中具有组成型活性EPOR亚型(cEPOR)的转基因表达的小鼠表现出空间学习,认知灵活性,社交记忆和注意能力的增强,并伴随着冲动性的增强。出色的认知能力与海马切片中表达cEPOR的神经元的长期增强作用有关。结论主动EPOR刺激神经元的可塑性,独立于任何造血作用以及其神经保护作用。应该利用EPOR信号传导的这一特性来定义新颖的策略,以在疾病状况下治疗性地增强认知能力。

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