Laboratory of Physiology and Pathophysiology, Centre for Preclinical Research and Technology, The Medical University of Warsaw, Warsaw, Poland.
Department of Drug Technology and Pharmaceutical Biotechnology, The Medical University of Warsaw, Warsaw, Poland.
Dev Neurobiol. 2017 Dec;77(12):1371-1384. doi: 10.1002/dneu.22537. Epub 2017 Sep 22.
Developmental changes that occur in the prefrontal cortex during adolescence alter behavior. These behavioral alterations likely stem from changes in prefrontal cortex neuronal activity, which may depend on the properties and expression of ion channels. Nav1.9 sodium channels conduct a Na current that is TTX resistant with a low threshold and noninactivating over time. The purpose of this study was to assess the presence of Nav1.9 channels in medial prefrontal cortex (mPFC) layer II and V pyramidal neurons in young (20-day old), late adolescent (60-day old), and adult (6- to 7-month old) rats. First, we demonstrated that layer II and V mPFC pyramidal neurons in slices obtained from young rats exhibited a TTX-resistant, low-threshold, noninactivating, and voltage-dependent Na current. The mRNA expression of the SCN11a gene (which encodes the Nav1.9 channel) in mPFC tissue was significantly higher in young rats than in late adolescent and adult rats. Nav1.9 protein was immunofluorescently labeled in mPFC cells in slices and analyzed via confocal microscopy. Nav1.9 immunolabeling was present in layer II and V mPFC pyramidal neurons and was more prominent in the neurons of young rats than in the neurons of late adolescent and adult rats. We conclude that Nav1.9 channels are expressed in layer II and V mPFC pyramidal neurons and that Nav1.9 protein expression in the mPFC pyramidal neurons of late adolescent and adult rats is lower than that in the neurons of young rats. © 2017 Wiley Periodicals, Inc. Develop Neurobiol 77: 1371-1384, 2017.
青春期前额皮质的发育变化会改变行为。这些行为的改变可能源于前额皮质神经元活动的变化,而神经元活动可能取决于离子通道的特性和表达。Nav1.9 钠通道传导一种 Na 电流,该电流对 TTX 具有抗性,其阈值较低,且随着时间的推移不会失活。本研究的目的是评估 Nav1.9 通道在年轻(20 日龄)、晚期青少年(60 日龄)和成年(6-7 月龄)大鼠的内侧前额皮质(mPFC)II 层和 V 层锥体神经元中的存在情况。首先,我们证明来自年轻大鼠的切片中的 II 层和 V 层 mPFC 锥体神经元表现出 TTX 抗性、低阈值、非失活和电压依赖性 Na 电流。SCN11a 基因(编码 Nav1.9 通道)的 mRNA 表达在年轻大鼠的 mPFC 组织中明显高于晚期青少年和成年大鼠。Nav1.9 蛋白在切片中的 mPFC 细胞中用免疫荧光标记,并通过共聚焦显微镜进行分析。Nav1.9 免疫标记存在于 mPFC 锥体神经元的 II 层和 V 层中,在年轻大鼠的神经元中比在晚期青少年和成年大鼠的神经元中更为明显。我们得出结论,Nav1.9 通道在 mPFC 锥体神经元的 II 层和 V 层中表达,并且 Nav1.9 蛋白在晚期青少年和成年大鼠的 mPFC 锥体神经元中的表达低于年轻大鼠的神经元。©2017 Wiley Periodicals, Inc.发育神经生物学 77:1371-1384,2017.