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瞬时受体电位 M3 通道在神经损伤后热过敏和自发性疼痛中发挥作用。

TRPM3 Channels Play Roles in Heat Hypersensitivity and Spontaneous Pain after Nerve Injury.

机构信息

Department of Pharmacology, Physiology & Neuroscience, New Jersey Medical School, Rutgers University, Newark, New Jersey 07101.

Department of Anatomy, College of Basic Medicine, Zhengzhou University, Zhengzhou 450001, Henan, China.

出版信息

J Neurosci. 2021 Mar 17;41(11):2457-2474. doi: 10.1523/JNEUROSCI.1551-20.2020. Epub 2021 Jan 21.

Abstract

Transient receptor potential melastatin 3 (TRPM3) is a heat-activated ion channel in primary sensory neurons of the dorsal root ganglia (DRGs). Pharmacological and genetic studies implicated TRPM3 in various pain modalities, but TRPM3 inhibitors were not validated in TRPM3 mice. Here we tested two inhibitors of TRPM3 in male and female wild-type and TRPM3 mice in nerve injury-induced neuropathic pain. We found that intraperitoneal injection of either isosakuranetin or primidone reduced heat hypersensitivity induced by chronic constriction injury (CCI) of the sciatic nerve in wild-type, but not in TRPM3 mice. Primidone was also effective when injected locally in the hindpaw or intrathecally. Consistently, intrathecal injection of the TRPM3 agonist CIM0216 reduced paw withdrawal latency to radiant heat in wild-type, but not in TRPM3 mice. Intraperitoneal injection of 2 mg/kg, but not 0.5 mg/kg isosakuranetin, inhibited cold and mechanical hypersensitivity in CCI, both in wild-type and TRPM3 mice, indicating a dose-dependent off-target effect. Primidone had no effect on cold sensitivity, and only a marginal effect on mechanical hypersensitivity. Genetic deletion or inhibitors of TRPM3 reduced the increase in the levels of the early genes c-Fos and pERK in the spinal cord and DRGs in CCI mice, suggesting spontaneous activity of the channel. Intraperitoneal isosakuranetin also inhibited spontaneous pain related behavior in CCI in the conditioned place preference assay, and this effect was eliminated in TRPM3 mice. Overall, our data indicate a role of TRPM3 in heat hypersensitivity and in spontaneous pain after nerve injury. Neuropathic pain is a major unsolved medical problem. The heat-activated TRPM3 ion channel is a potential target for novel pain medications, but the pain modalities in which it plays a role are not clear. Here we used a combination of genetic and pharmacological tools to assess the role of this channel in spontaneous pain, heat, cold, and mechanical hypersensitivity in a nerve injury model of neuropathic pain in mice. Our findings indicate a role for TRPM3 in heat hyperalgesia, and spontaneous pain, but not in cold and mechanical hypersensitivity. We also find that not only TRPM3 located in the peripheral nerve termini, but also TRPM3 in the spinal cord or proximal segments of DRG neurons are important for heat hypersensitivity.

摘要

瞬时受体电位 melastatin 3 (TRPM3) 是背根神经节 (DRG) 初级感觉神经元中的一种热激活离子通道。药理学和遗传学研究表明 TRPM3 参与了各种疼痛模式,但 TRPM3 抑制剂在 TRPM3 小鼠中未得到验证。在这里,我们在雄性和雌性野生型和 TRPM3 小鼠中测试了两种 TRPM3 抑制剂在神经损伤诱导的神经性疼痛中的作用。我们发现,腹腔注射异sakuranetin 或苯巴比妥可减轻坐骨神经慢性缩窄损伤 (CCI) 引起的热过敏,而在 TRPM3 小鼠中则没有。苯巴比妥局部注射到后足或鞘内也同样有效。一致地,鞘内注射 TRPM3 激动剂 CIM0216 可降低野生型小鼠,但不降低 TRPM3 小鼠对辐射热的足底退缩潜伏期。腹腔注射 2mg/kg,但不是 0.5mg/kg 的异sakuranetin,可抑制 CCI 中野生型和 TRPM3 小鼠的冷和机械过敏,表明存在剂量依赖性的脱靶效应。苯巴比妥对冷敏无影响,对机械过敏只有轻微影响。TRPM3 的基因缺失或抑制剂可降低 CCI 小鼠脊髓和 DRG 中早期基因 c-Fos 和 pERK 水平的升高,表明通道的自发活动。腹腔内异sakuranetin 还可抑制 CCI 中条件性位置偏好试验中与自发性疼痛相关的行为,而在 TRPM3 小鼠中则消除了这种作用。总的来说,我们的数据表明 TRPM3 在热过敏和神经损伤后的自发性疼痛中起作用。神经性疼痛是一个主要的未解决的医学问题。热激活的 TRPM3 离子通道是新型疼痛药物的潜在靶点,但它在哪些疼痛模式中发挥作用尚不清楚。在这里,我们使用基因和药理学工具的组合来评估该通道在小鼠神经损伤性疼痛模型中的自发性疼痛、热、冷和机械过敏中的作用。我们的发现表明,TRPM3 在热过敏和自发性疼痛中起作用,但在冷和机械过敏中不起作用。我们还发现,不仅位于外周神经末梢的 TRPM3,而且位于脊髓或 DRG 神经元近端节段的 TRPM3 对热过敏也很重要。

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