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遗传和功能证据表明,在神经病理性疼痛的小鼠模型中,gp130/IL6ST 诱导未损伤神经元而非损伤神经元中的瞬时受体电位锚蛋白 1 的上调。

Genetic and functional evidence for gp130/IL6ST-induced transient receptor potential ankyrin 1 upregulation in uninjured but not injured neurons in a mouse model of neuropathic pain.

机构信息

Institute of Physiology, DPMP, Medical University of Innsbruck, Innsbruck, Austria.

Institute of Pathophysiology, Biocenter, Medical University of Innsbruck, Innsbruck, Austria.

出版信息

Pain. 2022 Mar 1;163(3):579-589. doi: 10.1097/j.pain.0000000000002402.

Abstract

Peripheral nerve injuries result in pronounced alterations in dorsal root ganglia, which can lead to the development of neuropathic pain. Although the polymodal mechanosensitive transient receptor potential ankyrin 1 (TRPA1) ion channel is emerging as a relevant target for potential analgesic therapies, preclinical studies do not provide unequivocal mechanistic insight into its relevance for neuropathic pain pathogenesis. By using a transgenic mouse model with a conditional depletion of the interleukin-6 (IL-6) signal transducer gp130 in Nav1.8 expressing neurons (SNS-gp130-/-), we provide a mechanistic regulatory link between IL-6/gp130 and TRPA1 in the spared nerve injury (SNI) model. Spared nerve injury mice developed profound mechanical hypersensitivity as indicated by decreased withdrawal thresholds in the von Frey behavioral test in vivo, as well as a significant increase in mechanosensitivity of unmyelinated nociceptive primary afferents in ex vivo skin-nerve recordings. In contrast to wild type and control gp130fl/fl animals, SNS-gp130-/- mice did not develop mechanical hypersensitivity after SNI and exhibited low levels of Trpa1 mRNA in sensory neurons, which were partially restored by adenoviral gp130 re-expression in vitro. Importantly, uninjured but not injured neurons developed increased responsiveness to the TRPA1 agonist cinnamaldehyde, and neurons derived from SNS-gp130-/- mice after SNI were significantly less responsive to cinnamaldehyde. Our study shows for the first time that TRPA1 upregulation is attributed specifically to uninjured neurons in the SNI model, and this depended on the IL-6 signal transducer gp130. We provide a solution to the enigma of TRPA1 regulation after nerve injury and stress its significance as an important target for neuropathic pain disorders.

摘要

周围神经损伤导致背根神经节明显改变,这可能导致神经性疼痛的发生。尽管多模式机械敏感瞬时受体电位锚蛋白 1(TRPA1)离子通道作为潜在的镇痛治疗靶点已经出现,但临床前研究并未提供明确的机制见解,说明其与神经性疼痛发病机制的相关性。通过使用 Nav1.8 表达神经元条件性缺失白细胞介素 6(IL-6)信号转导物 gp130 的转基因小鼠模型(SNS-gp130-/-),我们提供了 IL-6/gp130 与 spared nerve injury(SNI)模型中 TRPA1 之间的机制调节联系。 spared nerve injury 小鼠表现出明显的机械性超敏反应,体内 von Frey 行为测试中撤回阈值降低,以及体外皮肤-神经记录中无髓伤害性初级传入纤维的机械敏感性显著增加。与野生型和对照 gp130fl/fl 动物相比,SNS-gp130-/-小鼠在 SNI 后不会发展为机械性超敏反应,并且感觉神经元中的 Trpa1 mRNA 水平较低,体外通过腺病毒 gp130 再表达部分恢复。重要的是,未受伤但未受伤的神经元对 TRPA1 激动剂肉桂醛的反应性增加,并且源自 SNS-gp130-/-小鼠的 SNI 后神经元对肉桂醛的反应性明显降低。我们的研究首次表明,TRPA1 的上调专门归因于 SNI 模型中的未受伤神经元,这取决于 IL-6 信号转导物 gp130。我们为神经损伤后 TRPA1 调节的谜团提供了解决方案,并强调了它作为神经性疼痛疾病的重要靶点的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4030/8832546/086352f7015b/jop-163-0579-g001.jpg

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