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CX3CR1 Deficiency Alters Hippocampal-Dependent Plasticity Phenomena Blunting the Effects of Enriched Environment

机译:CX3CR1缺乏症改变海马依赖的可塑性现象钝化了丰富的环境的影响

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摘要

In recent years several evidence demonstrated that some features of hippocampal biology, like neurogenesis, synaptic transmission, learning, and memory performances are deeply modulated by social, motor, and sensorial experiences. Fractalkine/CX3CL1 is a transmembrane chemokine abundantly expressed in the brain by neurons, where it modulates glutamatergic transmission and long-term plasticity processes regulating the intercellular communication between glia and neurons, being its specific receptor CX3CR1 expressed by microglia. In this paper we investigated the role of CX3CL1/CX3CR1 signaling on experience-dependent hippocampal plasticity processes. At this aim wt and CX3CR1GFP/GFP mice were exposed to long-lasting-enriched environment (EE) and the effects on hippocampal functions were studied by electrophysiological recordings of long-term potentiation of synaptic activity, behavioral tests of learning and memory in the Morris water maze paradigm and analysis of neurogenesis in the subgranular zone of the dentate gyrus (DG). We found that CX3CR1 deficiency increases hippocampal plasticity and spatial memory, blunting the potentiating effects of EE. In contrast, exposure to EE increased the number and migration of neural progenitors in the DG of both wt and CX3CR1GFP/GFP mice. These data indicate that CX3CL1/CX3CR1-mediated signaling is crucial for a normal experience-dependent modulation of hippocampal functions.
机译:近年来,一些证据表明,海马生物学的某些特征(如神经发生,突触传递,学习和记忆表现)受到社交,运动和感觉体验的深刻调节。 Fractalkine / CX3CL1是神经元在脑中大量表达的跨膜趋化因子,它调节谷氨酸能传递和长期可塑性过程,调节神经胶质细胞与神经元之间的细胞间通讯,是小胶质细胞表达的特异性受体CX3CR1。在本文中,我们研究了CX3CL1 / CX3CR1信号在依赖经验的海马可塑性过程中的作用。为此,将wt和CX3CR1 GFP / GFP 小鼠暴露于持久富集的环境(EE)中,并通过电生理学记录突触活性的长期增强,行为学和行为学研究对海马功能的影响。莫里斯水迷宫范式中的学习和记忆测试,以及齿状回(DG)颗粒下区域的神经发生分析。我们发现,CX3CR1缺乏症会增加海马的可塑性和空间记忆,从而削弱EE的增强作用。相反,暴露于EE会增加wt和CX3CR1 GFP / GFP 小鼠的DG中神经祖细胞的数量和迁移。这些数据表明,CX3CL1 / CX3CR1介导的信号传导对正常的依赖于海马功能的经验调节至关重要。

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