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背角中的投射神经元轴突侧支:脊髓疼痛处理中的新角色

Projection Neuron Axon Collaterals in the Dorsal Horn: Placing a New Player in Spinal Cord Pain Processing.

作者信息

Browne Tyler J, Hughes David I, Dayas Christopher V, Callister Robert J, Graham Brett A

机构信息

School of Biomedical Sciences and Pharmacy, Faculty of Health and Medicine, University of Newcastle, Callaghan, NSW, Australia.

Hunter Medical Research Institute (HMRI), New Lambton Heights, NSW, Australia.

出版信息

Front Physiol. 2020 Dec 21;11:560802. doi: 10.3389/fphys.2020.560802. eCollection 2020.

Abstract

The pain experience depends on the relay of nociceptive signals from the spinal cord dorsal horn to higher brain centers. This function is ultimately achieved by the output of a small population of highly specialized neurons called projection neurons (PNs). Like output neurons in other central nervous system (CNS) regions, PNs are invested with a substantial axon collateral system that ramifies extensively within local circuits. These axon collaterals are widely distributed within and between spinal cord segments. Anatomical data on PN axon collaterals have existed since the time of Cajal, however, their function in spinal pain signaling remains unclear and is absent from current models of spinal pain processing. Despite these omissions, some insight on the potential role of PN axon collaterals can be drawn from axon collateral systems of principal or output neurons in other CNS regions, such as the hippocampus, amygdala, olfactory cortex, and ventral horn of the spinal cord. The connectivity and actions of axon collaterals in these systems have been well-defined and used to confirm crucial roles in memory, fear, olfaction, and movement control, respectively. We review this information here and propose a framework for characterizing PN axon collateral function in the dorsal horn. We highlight that experimental approaches traditionally used to delineate axon collateral function in other CNS regions are not easily applied to PNs because of their scarcity relative to spinal interneurons (INs), and the lack of cellular organization in the dorsal horn. Finally, we emphasize how the rapid development of techniques such as viral expression of optogenetic or chemogenetic probes can overcome these challenges and allow characterization of PN axon collateral function. Obtaining detailed information of this type is a necessary first step for incorporation of PN collateral system function into models of spinal sensory processing.

摘要

疼痛体验取决于伤害性信号从脊髓背角向更高脑区的传递。这一功能最终由一小群称为投射神经元(PNs)的高度特化神经元的输出实现。与其他中枢神经系统(CNS)区域的输出神经元一样,PNs具有一个庞大的轴突侧支系统,该系统在局部回路中广泛分支。这些轴突侧支在脊髓节段内和节段间广泛分布。自 Cajal 时代起就有关于 PN 轴突侧支的解剖学数据,然而,它们在脊髓疼痛信号传导中的功能仍不清楚,且当前的脊髓疼痛处理模型中也未涉及。尽管存在这些遗漏,但可以从其他 CNS 区域(如海马体、杏仁核、嗅觉皮层和脊髓腹角)的主要或输出神经元的轴突侧支系统中,对 PN 轴突侧支的潜在作用获得一些见解。这些系统中轴突侧支的连接性和作用已得到明确界定,并分别用于证实其在记忆、恐惧、嗅觉和运动控制中的关键作用。我们在此回顾这些信息,并提出一个用于描述背角中 PN 轴突侧支功能的框架。我们强调,传统上用于描绘其他 CNS 区域轴突侧支功能的实验方法,由于 PN 相对于脊髓中间神经元(INs)数量稀少,以及背角缺乏细胞组织,不容易应用于 PNs。最后,我们强调诸如光遗传学或化学遗传学探针的病毒表达等技术的快速发展如何能够克服这些挑战,并允许对 PN 轴突侧支功能进行表征。获得此类详细信息是将 PN 侧支系统功能纳入脊髓感觉处理模型的必要第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a07a/7779806/fd3c72cf91b8/fphys-11-560802-g001.jpg

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