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首页> 外文期刊>Frontiers in Cellular Neuroscience >Effects of PSA Removal from NCAM on the Critical Period Plasticity Triggered by the Antidepressant Fluoxetine in the Visual Cortex
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Effects of PSA Removal from NCAM on the Critical Period Plasticity Triggered by the Antidepressant Fluoxetine in the Visual Cortex

机译:NCAM去除PSA对抗抑郁药氟西汀在视觉皮层触发的关键时期可塑性的影响

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摘要

Neuronal plasticity peaks during critical periods of postnatal development and is reduced towards adulthood. Recent data suggests that windows of juvenile-like plasticity can be triggered in the adult brain by antidepressant drugs such as Fluoxetine. Although the exact mechanisms of how Fluoxetine promotes such plasticity remains unknown, several studies indicate that inhibitory circuits play an important role. The polysialylated form of the neural cell adhesion molecules (PSA-NCAM) has been suggested to mediate the effects of Fluoxetine and it is expressed in the adult brain by mature interneurons. Moreover, the enzymatic removal of PSA by neuroaminidase-N not only affects the structure of interneurons but also has been shown to play a role in the onset of critical periods during development. We have here used ocular dominance plasticity in the mouse visual cortex as a model to investigate whether removal of PSA might influence the Fluoxetine-induced plasticity. We demonstrate that PSA removal in the adult visual cortex alters neither the baseline ocular dominance, nor the fluoxetine-induced shift in the ocular dominance. We also show that both chronic Fluoxetine treatment and PSA removal independently increase the basal FosB expression in parvalbumin (PV) interneurons in the primary visual cortex. Therefore, our data suggest that although PSA-NCAM regulates inhibitory circuitry, it is not required for the reactivation of juvenile-like plasticity triggered by Fluoxetine.
机译:神经元可塑性在产后发育的关键时期达到峰值,并在成年后降低。最新数据表明,抗抑郁药(如氟西汀)可在成人大脑中触发类似青少年的可塑性窗口。尽管尚不清楚氟西汀如何促进这种可塑性的确切机制,但一些研究表明抑制性途径起着重要的作用。神经细胞粘附分子(PSA-NCAM)的多唾液酸化形式已被提出来介导氟西汀的作用,并由成熟的中间神经元在成年大脑中表达。此外,神经酰胺酶-N酶促去除PSA不仅影响中间神经元的结构,而且已显示在发育过程中关键时期的发作中起作用。我们在这里使用小鼠视觉皮层的眼优势可塑性作为模型,以研究去除PSA是否会影响氟西汀诱导的可塑性。我们证明,在成人视皮层中去除PSA既不会改变基线眼部优势,也不会改变氟西汀引起的眼部优势的转变。我们还显示,慢性氟西汀治疗和PSA去除均独立增加了初级视皮层中小白蛋白(PV)中神经元的基础FosB表达。因此,我们的数据表明,尽管PSA-NCAM调节抑制性电路,但对于氟西汀触发的少年样可塑性的重新激活并不是必需的。

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