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首页> 外文期刊>Frontiers in Neuroscience >GluN2B-Containg NMDA Receptors on Adult-Born Granule Cells Contribute to the Antidepressant Action of Fluoxetine
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GluN2B-Containg NMDA Receptors on Adult-Born Granule Cells Contribute to the Antidepressant Action of Fluoxetine

机译:成年颗粒细胞上的含GluN2B的NMDA受体有助于氟西汀的抗抑郁作用

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摘要

Ablation of adult neurogenesis in mice has revealed that young adult-born granule cells (abGCs) are required for some of the behavioral responses to antidepressants (ADs), yet the mechanism by which abGCs contribute to AD action remains unknown. During their maturation process, these immature neurons exhibit unique properties that could underlie their ability to influence behavioral output. In particular, abGCs in the DG exhibit a period of heightened plasticity 4–6 weeks after birth that is mediated by GluN2B-expressing NMDA receptors. The functional contribution of this critical window to AD responsiveness is unclear. Here, we determined the behavioral and neurogenic responses to the AD fluoxetine (FLX) in mice lacking GluN2B-containing NMDA receptors in abGCs. We found that these mice exhibited an attenuated response to FLX in a neurogenesis-dependent behavioral assay of FLX action, while neurogenesis-independent behaviors were unaffected by GluN2B deletion. In addition, deletion of GluN2B attenuated FLX-induced increases in dendritic complexity of abGCs suggesting that the blunted behavioral efficacy of FLX may be caused by impaired differentiation of young abGCs.
机译:小鼠中成年神经发生的消融显示,对于抗抑郁药(AD)的某些行为反应,需要成年幼小颗粒细胞(abGCs),但abGC促成AD作用的机制仍然未知。在它们的成熟过程中,这些不成熟的神经元表现出独特的特性,这些特性可能是它们影响行为输出的能力的基础。特别是,DG中的abGC在出生后4-6周内表现出可塑性增强的时期,这是由表达GluN2B的NMDA受体介导的。该关键窗口对AD反应性的功能贡献尚不清楚。在这里,我们确定了在abGC中缺少含GluN2B的NMDA受体的小鼠中对AD氟西汀(FLX)的行为和神经源性反应。我们发现这些小鼠表现出对FLX的减弱的反应,在依赖FLX的神经发生的行为测定中,而不受神经发生的行为不受GluN2B缺失的影响。此外,GluN2B的删除减弱了FLX诱导的abGC的树突复杂性增加,这表明FLX行为能力的减弱可能是由于年轻abGC的分化受损引起的。

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