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缺乏 5-HT3A 受体的小鼠中,树突复杂性的改变会影响皮层 2/3 层锥体神经元的放电特性。

Altered dendritic complexity affects firing properties of cortical layer 2/3 pyramidal neurons in mice lacking the 5-HT3A receptor.

机构信息

Center for Neuroscience, Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam, The Netherlands.

出版信息

J Neurophysiol. 2012 Sep;108(5):1521-8. doi: 10.1152/jn.00829.2011. Epub 2012 Jun 13.

Abstract

We have previously shown that the serotonergic input on Cajal-Retzius cells, mediated by 5-HT(3) receptors, plays an important role in the early postnatal maturation of the apical dendritic trees of layer 2/3 pyramidal neurons. We reported that knockout mice lacking the 5-HT(3A) receptor showed exuberant apical dendrites of these cortical pyramidal neurons. Because model studies have shown the role of dendritic morphology on neuronal firing pattern, we used the 5-HT(3A) knockout mouse to explore the impact of dendritic hypercomplexity on the electrophysiological properties of this specific class of neurons. Our experimental results show that hypercomplexity of the apical dendritic tuft of layer 2/3 pyramidal neurons affects neuronal excitability by reducing the amount of spike frequency adaptation. This difference in firing pattern, related to a higher dendritic complexity, was accompanied by an altered development of the afterhyperpolarization slope with successive action potentials. Our abstract and realistic neuronal models, which allowed manipulation of the dendritic complexity, showed similar effects on neuronal excitability and confirmed the impact of apical dendritic complexity. Alterations of dendritic complexity, as observed in several pathological conditions such as neurodegenerative diseases or neurodevelopmental disorders, may thus not only affect the input to layer 2/3 pyramidal neurons but also shape their firing pattern and consequently alter the information processing in the cortex.

摘要

我们之前已经表明,5-HT(3)受体介导的 Cajal-Retzius 细胞的血清素能输入在层 2/3 锥体神经元的顶树突的早期出生后成熟中起着重要作用。我们报道说,缺乏 5-HT(3A)受体的敲除小鼠显示出这些皮质锥体神经元的顶树突过度生长。由于模型研究表明树突形态对神经元放电模式的作用,我们使用 5-HT(3A)敲除小鼠来探索树突超复杂性对这种特定神经元类别的电生理特性的影响。我们的实验结果表明,层 2/3 锥体神经元顶树突簇的超复杂性通过减少尖峰频率适应来降低神经元兴奋性。这种与更高的树突复杂性相关的放电模式差异伴随着后续动作电位后超极化斜率的改变。我们的抽象和现实神经元模型允许对树突复杂性进行操作,显示出对神经元兴奋性的类似影响,并证实了顶树突复杂性的影响。在几种病理条件下观察到的树突复杂性改变,例如神经退行性疾病或神经发育障碍,不仅可能影响到层 2/3 锥体神经元的输入,而且可能塑造它们的放电模式,并因此改变皮层中的信息处理。

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