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GPR55 有助于小鼠脊髓压迫后中性粒细胞的募集和机械性疼痛的诱导。

GPR55 contributes to neutrophil recruitment and mechanical pain induction after spinal cord compression in mice.

机构信息

Department of Molecular and System Pharmacology, Graduate School of Pharmaceutical Sciences, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan; Department of Orthopedic Surgery, Graduate School of Medical Sciences, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

Department of Drug Discovery Structural Biology, Graduate School of Pharmaceutical Sciences, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

出版信息

Brain Behav Immun. 2023 May;110:276-287. doi: 10.1016/j.bbi.2023.03.008. Epub 2023 Mar 8.

Abstract

Pain transmission and processing in the nervous system are modulated by various biologically active substances, including lysophospholipids, through direct and indirect actions on the somatosensory pathway. Lysophosphatidylglucoside (LysoPtdGlc) was recently identified as a structurally unique lysophospholipid that exerts biological actions via the G protein-coupled receptor GPR55. Here, we demonstrated that GPR55-knockout (KO) mice show impaired induction of mechanical pain hypersensitivity in a model of spinal cord compression (SCC) without the same change in the models of peripheral tissue inflammation and peripheral nerve injury. Among these models, only SCC recruited peripheral inflammatory cells (neutrophils, monocytes/macrophages, and CD3 T-cells) in the spinal dorsal horn (SDH), and GPR55-KO blunted these recruitments. Neutrophils were the first cells recruited to the SDH, and their depletion suppressed the induction of SCC-induced mechanical hypersensitivity and inflammatory responses in compressed SDH. Furthermore, we found that PtdGlc was present in the SDH and that intrathecal administration of an inhibitor of secretory phospholipase A (an enzyme required for producing LysoPtdGlc from PtdGlc) reduced neutrophil recruitment to compressed SDH and suppressed pain induction. Finally, by screening compounds from a chemical library, we identified auranofin as a clinically used drug with an inhibitory effect on mouse and human GPR55. Systemically administered auranofin to mice with SCC effectively suppressed spinal neutrophil infiltration and pain hypersensitivity. These results suggest that GPR55 signaling contributes to the induction of inflammatory responses and chronic pain after SCC via the recruitment of neutrophils and may provide a new target for reducing pain induction after spinal cord compression, such as spinal canal stenosis.

摘要

神经系统中的疼痛传递和处理受到各种生物活性物质的调节,包括通过对躯体感觉通路的直接和间接作用的溶血磷脂。溶血磷脂酰葡萄糖苷(LysoPtdGlc)最近被鉴定为一种结构独特的溶血磷脂,通过 G 蛋白偶联受体 GPR55 发挥生物学作用。在这里,我们证明 GPR55 敲除(KO)小鼠在脊髓压迫(SCC)模型中表现出机械性疼痛过敏的诱导受损,而在外周组织炎症和周围神经损伤模型中没有相同的变化。在这些模型中,只有 SCC 在脊髓背角(SDH)募集外周炎性细胞(中性粒细胞、单核细胞/巨噬细胞和 CD3 T 细胞),而 GPR55-KO 则削弱了这些募集。中性粒细胞是首先募集到 SDH 的细胞,其耗竭抑制了 SCC 诱导的机械性超敏反应和压缩 SDH 中的炎症反应。此外,我们发现 PtdGlc 存在于 SDH 中,鞘内给予分泌型磷脂酶 A 的抑制剂(产生 LysoPtdGlc 所需的酶)可减少中性粒细胞募集到压缩的 SDH,并抑制疼痛诱导。最后,通过筛选化学文库中的化合物,我们鉴定出金诺芬是一种具有抑制作用的临床药物,对小鼠和人 GPR55 均有抑制作用。全身性给予 SCC 小鼠金诺芬可有效抑制脊髓中性粒细胞浸润和疼痛过敏。这些结果表明,GPR55 信号通过招募中性粒细胞参与 SCC 后炎症反应和慢性疼痛的诱导,并可能为减少脊髓压迫(如椎管狭窄)后疼痛诱导提供新的靶点。

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