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人类周围神经性疼痛的局部分子特征。

The local molecular signature of human peripheral neuropathic pain.

作者信息

Sandy-Hindmarch Oliver P, Chang Pao-Sheng, Scheuren Paulina S, De Schoenmacker Iara, Hubli Michèle, Loizou Constantinos, Wirth Stephan, Mahadevan Devendra, Wiberg Akira, Furniss Dominic, Calvo Margarita, Bennett David L H, Denk Franziska, Baskozos Georgios, Schmid Annina B

机构信息

Nuffield Department of Clinical Neuroscience, John Radcliffe Hospital, University of Oxford, Oxford, United Kingdom.

Spinal Cord Injury Center, Balgrist University Hospital, University of Zurich, Zurich, Switzerland.

出版信息

Pain. 2025 May 1;166(5):1143-1156. doi: 10.1097/j.pain.0000000000003472. Epub 2024 Nov 25.

Abstract

Focal nerve injuries are often associated with neuropathic pain. Preclinical research suggests altered neuroimmune signalling underlies such neuropathic pain; however, its cause remains poorly understood in humans. In this multicentre cohort study, we describe the local cellular and molecular signature of neuropathic pain at the lesion site, using Morton's neuroma as a human model system of neuropathic pain (n = 22; 18 women) compared with nerves from participants without nerve injury (n = 11; 4 women). Immunofluorescent staining revealed demyelination and chronic infiltration of immune cells in Morton's neuroma. RNA bulk sequencing identified 3349 differentially expressed genes between Morton's neuroma and controls. Gene ontology enrichment analysis and weighted gene co-expression network analyses revealed modules specific for host defence and neurogenesis. Deconvolution analysis confirmed higher densities of macrophages and B cells in Morton's neuroma than control samples. Modules associated with defence response, neurogenesis, and muscle system development as well as macrophage cell populations identified by deconvolution correlated with patients' paroxysmal or evoked pain. Of note, we identified a consistently differentially expressed gene signature ( MARCO, CD163, STAB1 ) , indicating the presence of a specific M(GC) subset of macrophages. MARCO gene expression correlated with paroxysmal pain. Targeted immunofluorescent analyses confirmed higher densities of intraneural CD163 + MARCO + macrophage subsets in Morton's neuroma. Our findings provide detailed insight into the local molecular signature in the context of human focal nerve injury. There is clear evidence for an ongoing role of the immune system in chronic peripheral neuropathic pain in humans, with macrophages and specifically the M(GC) MARCO + subset implicated.

摘要

局灶性神经损伤常与神经性疼痛相关。临床前研究表明,神经免疫信号改变是此类神经性疼痛的基础;然而,其病因在人类中仍知之甚少。在这项多中心队列研究中,我们以 Morton 神经瘤作为神经性疼痛的人体模型系统(n = 22;18 名女性),与无神经损伤参与者的神经(n = 11;4 名女性)进行比较,描述了病变部位神经性疼痛的局部细胞和分子特征。免疫荧光染色显示 Morton 神经瘤中存在脱髓鞘和免疫细胞慢性浸润。RNA 批量测序确定了 Morton 神经瘤与对照组之间 3349 个差异表达基因。基因本体富集分析和加权基因共表达网络分析揭示了宿主防御和神经发生特有的模块。反卷积分析证实 Morton 神经瘤中巨噬细胞和 B 细胞的密度高于对照样本。与防御反应、神经发生和肌肉系统发育相关的模块以及通过反卷积确定的巨噬细胞群体与患者的阵发性或诱发性疼痛相关。值得注意的是,我们确定了一个始终差异表达的基因特征(MARCO、CD163、STAB1),表明存在特定亚型的 M(GC)巨噬细胞。MARCO 基因表达与阵发性疼痛相关。靶向免疫荧光分析证实 Morton 神经瘤中神经内 CD163 + MARCO + 巨噬细胞亚群的密度更高。我们的研究结果为人类局灶性神经损伤背景下的局部分子特征提供了详细的见解。有明确证据表明免疫系统在人类慢性周围神经性疼痛中持续发挥作用,其中巨噬细胞尤其是 M(GC) MARCO + 亚群与之相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e338/12004989/92d2f5454c9a/jop-166-1143-g001.jpg

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