首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Inhibitory Interneurons That Express GFP in the PrP-GFP Mouse Spinal Cord Are Morphologically Heterogeneous, Innervated by Several Classes of Primary Afferent and Include Lamina I Projection Neurons among Their Postsynaptic Targets
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Inhibitory Interneurons That Express GFP in the PrP-GFP Mouse Spinal Cord Are Morphologically Heterogeneous, Innervated by Several Classes of Primary Afferent and Include Lamina I Projection Neurons among Their Postsynaptic Targets

机译:在PrP-GFP小鼠脊髓中表达GFP的抑制性中间神经元在形态上是异质的,由几类初级传入神经支配,并且在它们的突触后靶标中包括层状I投射神经元。

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The superficial dorsal horn of the spinal cord contains numerous inhibitory interneurons, which regulate the transmission of information perceived as touch, pain, or itch. Despite the importance of these cells, our understanding of their roles in the neuronal circuitry is limited by the difficulty in identifying functional populations. One group that has been identified and characterized consists of cells in the mouse that express green fluorescent protein (GFP) under control of the prion protein (PrP) promoter. Previous reports suggested that PrP-GFP cells belonged to a single morphological class (central cells), received inputs exclusively from unmyelinated primary afferents, and had axons that remained in lamina II. However, we recently reported that the PrP-GFP cells expressed neuronal nitric oxide synthase (nNOS) and/or galanin, and it has been shown that nNOS-expressing cells are more diverse in their morphology and synaptic connections. We therefore used a combined electrophysiological, pharmacological, and anatomical approach to reexamine the PrP-GFP cells. We provide evidence that they are morphologically diverse (corresponding to "unclassified" cells) and receive synaptic input from a variety of primary afferents, with convergence onto individual cells. We also show that their axons project into adjacent laminae and that they target putative projection neurons in lamina I. This indicates that the neuronal circuitry involving PrP-GFP cells is more complex than previously recognized, and suggests that they are likely to have several distinct roles in regulating the flow of somatosensory information through the dorsal horn.
机译:脊髓的浅背角含有大量抑制性中间神经元,它们调节着被认为是触觉,疼痛或瘙痒的信息的传递。尽管这些细胞很重要,但我们对它们在神经元回路中的作用的了解受到鉴定功能种群困难的限制。一组已经鉴定和表征的小鼠细胞在cells病毒蛋白(PrP)启动子的控制下表达绿色荧光蛋白(GFP)。先前的报道表明,PrP-GFP细胞属于单个形态学类(中央细胞),仅接受未经髓鞘的初级传入细胞的输入,而轴突仍留在椎板II中。但是,我们最近报道,PrP-GFP细胞表达神经元一氧化氮合酶(nNOS)和/或甘丙肽,并且已经表明表达nNOS的细胞在形态和突触连接方面更加多样化。因此,我们使用了一种结合电生理学,药理学和解剖学方法来重新检查PrP-GFP细胞。我们提供的证据表明,它们在形态上是多种多样的(对应于“未分类”的细胞),并且从各种初级传入细胞接收突触输入,并收敛到单个细胞上。我们还表明,它们的轴突伸入相邻的椎板中,并且靶向层I中的推定投射神经元。这表明涉及PrP-GFP细胞的神经元回路比以前认识的更为复杂,并暗示它们可能具有几种不同的作用调节体感信息通过背角的流动。

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