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Central opioid receptors mediate morphine-induced itch and chronic itch via disinhibition

机译:中枢阿片受体通过谴责介导吗啡诱导的瘙痒和慢性痒

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摘要

Opioids such as morphine are mainstay treatments for clinical pain conditions. Itch is a common side effect of opioids, particularly as a result of epidural or intrathecal administration. Recent progress has advanced our understanding of itch circuits in the spinal cord. However, the mechanisms underlying opioid-induced itch are not fully understood, although an interaction between m-opioid receptor (MOR) and gastrin-releasing peptide receptor (GRPR) in spinal GRPR-expressing neurons has been implicated. In this study we investigated the cellular mechanisms of intrathecal opioid-induced itch by conditional deletion of MOR-encoding Oprm1 in distinct populations of interneurons and sensory neurons. We found that intrathecal injection of the MOR agonists morphine or DAMGO elicited dose-dependent scratching as well as licking and biting, but this pruritus was totally abolished in mice with a specific Oprm1 deletion in Vgat(+) neurons [Oprm1-Vgat (Slc32a1)]. Loss of MOR in somatostatin(+) interneurons and TRPV1(+) sensory neurons did not affect morphine-induced itch but impaired morphine-induced antinociception. In situ hybridization revealed Oprm1 expression in 30% of inhibitory and 20% of excitatory interneurons in the spinal dorsal horn. Whole-cell recordings from spinal cord slices showed that DAMGO induced outward currents in 9 of 19 Vgat(+) interneurons examined. Morphine also inhibited action potentials in Vgat(+) interneurons. Furthermore, morphine suppressed evoked inhibitory postsynaptic currents in postsynaptic Vgat-excitatory neurons, suggesting a mechanism of disinhibition by MOR agonists. Notably, morphine-elicited itch was suppressed by intrathecal administration of NPY and abolished by spinal ablation of GRPR(+) neurons with intrathecal injection of bombesin-saporin, whereas intrathecal GRP-induced itch response remained intact in mice lacking Oprm1-Vgat. Intrathecal bombesin-saporin treatment reduced the number of GRPR(+) neurons by 97% in the lumber spinal cord and 91% in the cervical spinal cord, without changing the number of Oprm1(+) neurons. Additionally, chronic itch from DNFB-induced allergic contact dermatitis was decreased by Oprm1-Vgat deletion. Finally, naloxone, but not peripherally restricted naloxone methiodide, inhibited chronic itch in the DNFB model and the CTCL model, indicating a contribution of central MOR signalling to chronic itch. Our findings demonstrate that intrathecal morphine elicits itch via acting on MOR on spinal inhibitory interneurons, leading to disinhibition of the spinal itch circuit. Our data also provide mechanistic insights into the current treatment of chronic itch with opioid receptor antagonist such as naloxone.
机译:诸如吗啡的阿片类药物是临床疼痛条件的主干处理。瘙痒是阿片类药物的常见副作用,特别是由于硬膜外或鞘内给药。最近的进展在脊髓中对射线电路的理解进行了高兴。然而,表述诱导的瘙痒的机制尚不完全理解,尽管M-ApioID受体(MOR)和胃泌素释放肽受体(GRPR)在脊柱克隆的神经元中的相互作用已经涉及。在这项研究中,我们研究了在不同群体的中间核和感官神经元的不同群体中的有条件缺失的鞘内阿片类药物诱导的瘙痒的细胞机制。我们发现,鞘内注射Mor Agonists吗啡或该算子引发剂量依赖的刮擦以及舔和咬,但是在Vgat(+)神经元的特定OPRM1缺失的小鼠中,这种瘙痒症完全被废除[OPRM1-VGAT(SLC32A1) ]。在生长抑制素(+)中的Mor失去(+)中间核和TRPV1(+)感觉神经元不会影响吗啡诱导的瘙痒,但吗啡诱导的抗妇科患者受损。原位杂交揭示了30%的抑制性和20%的脊髓背角中的兴奋性中间核表达的OPRM1表达。来自脊髓切片的全部细胞录音显示,该算型诱导19 VGAT(+)中间核的9个向外电流。吗啡还抑制了VGAT(+)中间核心的动作潜力。此外,吗啡抑制了突触后vgat-兴奋神经元的诱发抑制突触延迟电流,暗示了Mor激动剂的谴责机制。值得注意的是,通过鞘内给予NPY和通过鞘内注射BombesIn-saporin的鞘内施用和通过鞘内注射脊髓(+)神经元的脊柱烧蚀而被抑制了吗啡引发的瘙痒,而陷入困难的GRP诱导的瘙痒症仍然是缺乏OPRM1-VGAT的小鼠的完整性。鞘内轰炸素-SAPORIN治疗将GRPR(+)神经元的数量减少了宫颈脊髓中的97%,颈脊髓中的91%,而不改变OPRM1(+)神经元的数量。此外,来自DNFB诱导的过敏性接触皮炎的慢性瘙痒通过OPRM1-VGAT缺失降低。最后,纳洛酮,但未围绕纳尔昔酮甲碘化物,抑制DNFB模型和CTCL模型中的慢性瘙痒,表明中部Mor信号传导至慢性瘙痒的贡献。我们的研究结果表明,鞘内的吗啡通过在脊柱抑制性的中间核上作用来引发瘙痒,导致缺失脊柱速度。我们的数据还提供了机械洞察力进入当前用阿罗西酮的阿片受体拮抗剂的慢性瘙痒的治疗方法。

著录项

  • 来源
    《Brain: A journal of neurology》 |2021年第2期|共17页
  • 作者单位

    Duke Univ Ctr Translat Pain Med Dept Anesthesiol Med Ctr Durham NC 27710 USA;

    Duke Univ Ctr Translat Pain Med Dept Anesthesiol Med Ctr Durham NC 27710 USA;

    Duke Univ Ctr Translat Pain Med Dept Anesthesiol Med Ctr Durham NC 27710 USA;

    Duke Univ Ctr Translat Pain Med Dept Anesthesiol Med Ctr Durham NC 27710 USA;

    Duke Univ Ctr Translat Pain Med Dept Anesthesiol Med Ctr Durham NC 27710 USA;

    Duke Univ Ctr Translat Pain Med Dept Anesthesiol Med Ctr Durham NC 27710 USA;

    Duke Univ Ctr Translat Pain Med Dept Anesthesiol Med Ctr Durham NC 27710 USA;

    Duke Univ Ctr Translat Pain Med Dept Anesthesiol Med Ctr Durham NC 27710 USA;

    Duke Univ Ctr Translat Pain Med Dept Anesthesiol Med Ctr Durham NC 27710 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学;
  • 关键词

    inhibitory interneurons; itch; lymphoma; opioid; spinal cord;

    机译:抑制性型;瘙痒;淋巴瘤;阿片类药物;脊髓;

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