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快速 A 型电流塑造了兴奋性表面背角神经元的一种快速适应延迟短潜伏期发射形式,这些神经元表达神经肽 Y Y1 受体。

Fast A-type currents shape a rapidly adapting form of delayed short latency firing of excitatory superficial dorsal horn neurons that express the neuropeptide Y Y1 receptor.

机构信息

Department of Anesthesiology and Perioperative Medicine, Pittsburgh Center for Pain Research, and the Pittsburgh Project to end Opioid Misuse, University of Pittsburgh, Pittsburgh, PA, USA.

Department of Neuroscience, University of Kentucky, Lexington, KY, USA.

出版信息

J Physiol. 2021 May;599(10):2723-2750. doi: 10.1113/JP281033. Epub 2021 Apr 18.

Abstract

KEY POINTS

Neuropeptide Y Y1 receptor-expressing neurons in the dorsal horn of the spinal cord contribute to chronic pain. For the first time, we characterized the firing patterns of Y1-expressing neurons in Y1eGFP reporter mice. Under hyperpolarized conditions, most Y1eGFP neurons exhibited fast A-type potassium currents and delayed, short-latency firing (DSLF). Y1eGFP DSLF neurons were almost always rapidly adapting and often exhibited rebound spiking, characteristics of spinal pain neurons under the control of T-type calcium channels. These results will inspire future studies to determine whether tissue or nerve injury downregulates the channels that underlie A-currents, thus unmasking membrane hyperexcitability in Y1-expressing dorsal horn neurons, leading to persistent pain.

ABSTRACT

Neuroanatomical and behavioural evidence indicates that neuropeptide Y Y1 receptor-expressing interneurons (Y1-INs) in the superficial dorsal horn (SDH) are predominantly excitatory and contribute to chronic pain. Using an adult ex vivo spinal cord slice preparation from Y1eGFP reporter mice, we characterized firing patterns in response to steady state depolarizing current injection of GFP-positive cells in lamina II, the great majority of which expressed Y1 mRNA (88%). Randomly sampled (RS) and Y1eGFP neurons exhibited five firing patterns: tonic, initial burst, phasic, delayed short-latency <180 ms (DSLF) and delayed long-latency >180 ms (DLLF). When studied at resting membrane potential, most RS neurons exhibited delayed firing, while most Y1eGFP neurons exhibited phasic firing. A preconditioning membrane hyperpolarization produced only subtle changes in the firing patterns of RS neurons, but dramatically shifted Y1eGFP neurons to DSLF (46%) and DLLF (24%). In contrast to RS DSLF neurons, which rarely exhibited spike frequency adaptation, Y1eGFP DSLF neurons were almost always rapidly adapting, a characteristic of nociceptive-responsive SDH neurons. Rebound spiking was more prevalent in Y1eGFP neurons (6% RS vs. 32% Y1eGFP), indicating enrichment of T-type calcium currents. Y1eGFP DSLF neurons exhibited fast A-type potassium currents that are known to delay or limit action potential firing and exhibited smaller current density as compared to RS DSLF neurons. Our results will inspire future studies to determine whether tissue or nerve injury downregulates channels that contribute to A-currents, thus potentially unmasking T-type calcium channel activity and membrane hyperexcitability in Y1-INs, leading to persistent pain.

摘要

要点

脊髓背角中表达神经肽 Y Y1 受体的神经元有助于慢性疼痛。我们首次对 Y1eGFP 报告小鼠中表达 Y1 的神经元的放电模式进行了特征描述。在超极化条件下,大多数 Y1eGFP 神经元表现出快速 A 型钾电流和延迟、短潜伏期(DSLF)放电。Y1eGFP DSLF 神经元几乎总是快速适应,并且经常表现出反弹尖峰,这是 T 型钙通道控制下的脊髓疼痛神经元的特征。这些结果将激发未来的研究,以确定组织或神经损伤是否下调了构成 A 电流的通道,从而使 Y1 表达的背角神经元的膜过度兴奋,导致持续性疼痛。

摘要

神经解剖学和行为学证据表明,浅层背角(SDH)中表达神经肽 Y Y1 受体的中间神经元(Y1-INs)主要是兴奋性的,并有助于慢性疼痛。我们使用来自 Y1eGFP 报告小鼠的成年离体脊髓切片制备物,对 GFP 阳性细胞在 II 层对稳定态去极化电流注入的反应中的放电模式进行了特征描述,其中绝大多数细胞表达 Y1 mRNA(88%)。随机采样(RS)和 Y1eGFP 神经元表现出五种放电模式:持续型、初始爆发型、相变型、延迟短潜伏期(DSLF)<180ms 和延迟长潜伏期(DLLF)>180ms。当在静息膜电位下研究时,大多数 RS 神经元表现出延迟放电,而大多数 Y1eGFP 神经元表现出相变型放电。预条件膜超极化仅对 RS 神经元的放电模式产生细微变化,但将 Y1eGFP 神经元显著转变为 DSLF(46%)和 DLLF(24%)。与 RS DSLF 神经元很少表现出频率适应性不同,Y1eGFP DSLF 神经元几乎总是快速适应,这是伤害感受性 SDH 神经元的特征。反弹尖峰在 Y1eGFP 神经元中更为常见(6%RS 与 32%Y1eGFP),表明 T 型钙电流丰富。Y1eGFP DSLF 神经元表现出快速 A 型钾电流,已知该电流延迟或限制动作电位的发射,并表现出比 RS DSLF 神经元更小的电流密度。我们的结果将激发未来的研究,以确定组织或神经损伤是否下调有助于 A 电流的通道,从而可能揭示 Y1-INs 中的 T 型钙通道活性和膜过度兴奋,导致持续性疼痛。

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